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Urbanization Inequalities on the Incidence of Intraocular Cancers in Iran: An 11-Year Nationwide Retrospective Ecological Study

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PurposeTo report the relationship between urbanization and the incidence of intraocular cancers in Iran.MethodsIn this retrospective ecological study, data were extracted from the Statistical Center of Iran, the Meteorological Organization, and the Iranian National Population-based Cancer Registry (INPCR, 2006–2016). The urbanization index (UI) was calculated using principal component analysis, and weighted multiple linear regression was used to assess the relationship between the UI and the age-standardized incidence rate (ASIR) of intraocular cancers.ResultsSix hundred and fifty-four intraocular cancer cases with a gender ratio (male-to-female) of 1:13 were recorded. The mean total 11-year ASIR of intraocular cancers was 0.093 per 100,000 population. The mean ASIR showed a decrease of 0.051 per 100,000 from 2006 to 2016 (P = 0.022). Retinoblastoma (66.1%) and uveal melanoma (24.6%) were the most commonly diagnosed intraocular cancers, and their ASIR declined between 2006 and 2016. Once adjusted for environmental pollutants, an increase in the area-based UI was significantly associated with lower total ASIR of intraocular cancers in males ( = –0.14).ConclusionUrbanization was associated with a reduction in ASIR of intraocular cancers, which can be attributed to improved access to eye care facilities for timely diagnosis. However, given that the INPCR cases were verified only by histology, future research should be conducted on hospital-based registries using multiple data sources to address confounders and exposure factors and prevent underestimation of incidence rates.

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  • Research Article
  • Cite Count Icon 2
  • 10.1136/annrheumdis-2020-eular.2602
FRI0552 GLOBAL, REGIONAL, AND NATIONAL BURDEN OF LOW BACK PAIN, 1990-2019: A SYSTEMATIC ANALYSIS FOR THE GLOBAL BURDEN OF DISEASE STUDY 2019
  • Jun 1, 2020
  • Annals of the Rheumatic Diseases
  • D Wu + 4 more

FRI0552 GLOBAL, REGIONAL, AND NATIONAL BURDEN OF LOW BACK PAIN, 1990-2019: A SYSTEMATIC ANALYSIS FOR THE GLOBAL BURDEN OF DISEASE STUDY 2019

  • Research Article
  • Cite Count Icon 13
  • 10.3325/cmj.2012.53.93
Trends in lung cancer incidence and mortality in Croatia, 1988 to 2008
  • Apr 1, 2012
  • Croatian Medical Journal
  • Mateja Janković + 4 more

AimTo describe and interpret lung cancer incidence and mortality trends in Croatia between 1988 and 2008.MethodsIncidence data on lung cancer for the period 1988-2008 were obtained from the Croatian National Cancer Registry, while mortality data were obtained from the World Health Organization mortality database. Population estimates for Croatia were obtained from the Population Division of the Department of Economic and Social Affairs of the United Nations. We also calculated and analyzed age-standardized incidence and mortality rates. To describe time incidence and mortality trends, we used joinpoint regression analysis.ResultsLung cancer incidence and mortality rates in men decreased significantly in all age groups younger than 70 years. Age-standardized incidence rates in men decreased significantly by -1.3% annually. Joinpoint analysis of mortality in men identified three trends, and average annual percent change (AAPC) decreased significantly by -1.1%. Lung cancer incidence and mortality rates in women increased significantly in all age groups older than 40 years and decreased in younger women (30-39- years). Age-standardized incidence rates increased significantly by 1.7% annually. Joinpoint analysis of age-standardized mortality rates in women identified two trends, and AAPC increased significantly by 1.9%.ConclusionDespite the overall decreasing trend, Croatia is still among the European countries with the highest male lung cancer incidence and mortality. Although the incidence trend in women is increasing, their age standardized incidence rates are still 5-fold lower than in men. These trends follow the observed decrease and increase in the prevalence of male and female smokers, respectively. These findings indicate the need for further introduction of smoking prevention and cessation policies targeting younger population, particularly women.

  • Research Article
  • Cite Count Icon 141
  • 10.4143/crt.2009.41.3.122
Nationwide cancer incidence in Korea, 2003-2005.
  • Jan 1, 2009
  • Cancer Research and Treatment
  • Young-Joo Won + 19 more

To estimate the current cancer burden in Korea, newly diagnosed cancer cases and cancer incidence rates were calculated for the years 2003~2005. The cancer incidence cases and rates were calculated from the Korea National Cancer Incidence Database. Crude and age-standardized incidence rates were calculated by gender for specified cancer sites in 5-year age groups. From 2003 to 2005, 398,824 cases of cancer were newly diagnosed in Korea (218,856 in men and 179,968 in women). For all sites combined, the crude incidence rate (CR) was 300.0 and 248.2 for men and women and the age-standardized incidence rate (ASR) was 297.0 and 191.2 per 100,000, respectively. Among men, five leading cancers were stomach (CR 66.0, ASR 64.2), lung (CR 48.5, ASR 50.3), liver (CR 44.9, ASR 42.1), colon and rectum (CR 37.9, ASR 37.2), and prostate cancer (CR 12.7, ASR 13.8). Among women, five leading cancers were breast (CR 37.3, ASR 29.0), thyroid (CR 36.2, ASR 28.8), stomach (CR 34.1, ASR 25.4), colon and rectum (CR 28.0, ASR 21.1), and lung cancer (CR 17.9, ASR 12.8). In the 0~14-year-old group, leukemia was the most common in both sexes; in the 15~34 group, the most common cancer was stomach cancer for men and thyroid cancer for women; in the 35~64 group, stomach cancer for men and breast cancer for women; among those 65 and over, lung cancer for men and stomach cancer, for women, respectively. The cancer incidence rates have increased in recent years, and more cancers are expected to develop as Korea is quickly becoming an aged society. The cancer incidence statistics in this report can be used as an important source to effectively plan and evaluate the cancer control program in Korea.

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  • Research Article
  • Cite Count Icon 5
  • 10.1038/s41598-025-07361-3
Global trends in testicular and prostate cancer among adolescents and young adult males aged 15–49 years, 1990–2021: insights from the GBD study
  • Jul 2, 2025
  • Scientific Reports
  • Xinyu Zhang + 8 more

Malignant reproductive system tumors significantly impact the physical and mental health of adolescent and young adult males (AYAMs, aged 15–49 years), particularly their fertility. In recent years, the incidence of testicular and prostate cancer in this population has risen, while early diagnosis and treatment remain challenging. However, global epidemiological data on AYAMs are limited. This study aims to evaluate global trends in the incidence and burden of testicular and prostate cancers among AYAMs from 1990 to 2021, using data from the Global Burden of Disease (GBD) 2021 study, to address the research gap and inform public health strategies. We extracted data on the incidence and disability-adjusted life years (DALYs) for testicular and prostate cancer in adolescents and young adult males (AYAMs) aged 15–49 years from the 2021 Global Burden of Disease (GBD) database, covering 204 countries and territories from 1990 to 2021. As the GBD 2021 database only includes data for testicular cancer (ICD-10 code C62) and prostate cancer (ICD-10 code C61), other male reproductive system cancers, such as penile and epididymal cancer, were excluded. To analyze temporal trends, we applied the estimated annual percentage change (EAPC) method using linear regression models to calculate age-standardized incidence and DALY rates. Additionally, Spearman’s rank correlation was used to assess the relationship between age-standardized rates and the Socio-Demographic Index (SDI) for each country and region in 2021. In 2021, a total of 94,229 new cases of male reproductive system cancers were reported globally among AYAMs. From 1990 to 2021, the global age-standardized incidence rate significantly increased (EAPC = 1.38), while the age-standardized DALY rate exhibited a downward trend (EAPC = -0.26). Both testicular cancer and prostate cancer showed a consistent increase in age-standardized incidence rates, while their age-standardized DALY rates declined. Testicular cancer represented a significantly higher proportion of male reproductive system cancers in AYAMs globally compared to prostate cancer, with regional variations in the cancer burden. Additionally, the age-standardized incidence rates of both testicular and prostate cancers were positively correlated with the SDI, while the age-standardized DALY rate displayed a hill-shaped relationship with SDI. Over the past three decades, the incidence of testicular and prostate cancers among adolescents and young adult males (AYAMs) has steadily increased, accompanied by significant regional disparities in DALYs. To reduce the global burden of these cancers, particularly for AYAMs, targeted prevention strategies are crucial. These should include early screening, timely treatment, and public health education tailored to the unique needs of young males. In low- and middle-income countries, efforts should focus on improving health management, promoting physical activity, fostering healthy dietary habits, and enhancing access to early cancer screening for AYAMs. Early detection and intervention are essential for improving survival rates and minimizing the long-term effects of cancer, such as fertility issues and psychological impacts. Collaboration between governments, public health organizations, and social institutions is critical for advancing cancer prevention and control, with a focus on the specific health needs of AYAMs.

  • Research Article
  • Cite Count Icon 15
  • 10.3906/sag-1510-145
Incidence of cancer in the Turkish Republic of Northern Cyprus.
  • Jan 1, 2017
  • TURKISH JOURNAL OF MEDICAL SCIENCES
  • Ruqiya Pervaiz + 3 more

This study analyzed the incidence, trends, and common types of cancer in the Turkish Republic of Northern Cyprus (TRNC). This study is based on data collected from the office of the North Cyprus Cancer Registry, Ministry of Health, for 2007-2012. Data were arranged on the basis of age group, sex, and cancer site. Age standardized incidence rates (ASRs) were estimated with the world standard population. EVIEWS (version 9) software was used for statistical analysis. Of 1395 registered cases, 52.33% (730) were reported in men and 47.67% (665) in women. The crude incidence rate was 96.41 in men and 101.74 in women. The average annual ASR was 88.88 in men and 87.76 in women with the cumulative rate of 21.47% and 14.69% in men and women, respectively. The most common cancers in men were skin (ASR 15.62), prostate (ASR 11.23), bladder (ASR 11.71), lung (ASR 8.01), and colorectal cancer (ASR 7.61), while in women these were breast (ASR 24.07), thyroid (ASR 14.93), skin (ASR 10.75), colorectal (ASR 6.05), and lymphoma (ASR 4.79). Linear regression analysis confirmed rising trends for both men's (10.79, P ≤ 0.03) and women's (14.67, P ≤ 0.04) cancers. Our findings revealed an increasing trend of cancer incidence in the TRNC. For control and prevention, public awareness of the risk factors and proper screening programs should be recommended.

  • Research Article
  • Cite Count Icon 2
  • 10.3760/cma.j.issn.0253-3766.2019.05.014
Cancer incidence and mortality in Pearl River Delta Area, 2009-2013
  • May 23, 2019
  • Zhonghua zhong liu za zhi [Chinese journal of oncology]
  • Ling Xia + 4 more

Objective: To estimate the incidence, mortality and characteristics of cancer in Pearl River Delta Area of Guangdong Province between 2009-2013. Methods: Based on five population-based cancer registration data from Guangzhou, Shenzhen, Zhongshan, Jiangmen and Sihui spanning from 2009 to 2013, along with those corresponding population data, the incidence and mortality rates were estimated by gender and age groups. Chinese standard population derived from the 2000 Population Census and Segi's standard population were used for age-standardized incidence and mortality rates. Results: Between 2009 and 2013, the crude cancer incidence rate was 262.50/100 000, 274.76/100 000 in male and 249.49/100 000 in female. After adjusting for Chinese and Segi's standard population, the age-standardized incidence rates were 225.63/100 000 and 219.88/100 000, respectively. The crude mortality rate was 175.51/100 000, 222.92/100 000 in male and 127.46/100 000 in female, respectively. After adjusting for Chinese and Segi's standard population, the age-standardized mortality rates were 116.02 /100 000 and 114.31/100 000, respectively. The incidence rates were at low levels in the population less than 40 years old, thereafter went up rapidly with age especially in male, and then reached the peak in the population aged 80 and above. As with incidence, the mortality rates kept at low levels in the population before their 50 s and then rose up steadily with age until peaking in the 85+ age group. The most common cancers were female breast cancer, lung cancer, colorectal cancer, liver cancer and nasopharyngeal cancer with descending incidence rate. Lung cancer, liver cancer, colorectal cancer, female breast cancer and nasopharyngeal cancer were the top five cancer-attributable causes of death. Conclusions: Currently, Pearl River Delta Area were faced with huge cancer burden. Lung cancer, colorectal cancer, nasopharyngeal cancer, female breast cancer and male liver cancer are predominant cancers and more efforts should be made to fight against them.

  • Research Article
  • Cite Count Icon 1
  • 10.3760/cma.j.cn112152-20241228-00595
Epidemiological characteristics of liver cancer in China and worldwide
  • Sep 23, 2025
  • Zhonghua zhong liu za zhi [Chinese journal of oncology]
  • Y S Chen + 4 more

Objective: To describe and analyze the incidence, mortality and epidemiological trends of liver cancer in China and selected regions worldwide, providing data references for liver cancer prevention and control. Methods: Data on the incidence, mortality, historical trends, and projected estimates for 2050 of liver cancer were extracted from the GLOBOCAN 2022 database. Epidemiological characteristics of liver cancer in China and other region were described and compared by region, age, sex and human development index (HDI). Spearman's test was used to examine the relationships between HDI and age-standardized incidence rate (ASIR) or age-standardized mortality rate (ASMR) across regions. The average annual percentage change (AAPC) in ASIR was calculated using Joinpoint regression analysis. Results: In 2022, the number of new cases and deaths of liver cancer in the global were 866 000 and 759 000 respectively, and the ASIR and ASMR were 8.6/105 and 7.4/105, respectively. Both ASIR and ASMR were higher in males than in females. In China, there were 368 000 new cases and 317 000 deaths in 2022, with an ASIR of 15.0/105 and an ASMR of 12.6/105. Globally, the incidence of liver cancer in males peaked in the 65-69 age group, while in Chinese males, two incidence peaks were observed in the 50-54 and 65-69 age groups. Among the elderly (≥65 years), the global ASIR and ASMR were 7.4 and 8.1 times higher, respectively, than those in the working-age population (15-64 years). In China, the ratios of ASIR and ASMR between the elderly and working-age populations were 5.9 and 7.0, respectively. Both ASIR and ASMR were negatively correlated with HDI (ASIR: r=-0.18, P=0.018; ASMR: r=-0.31, P<0.001). From 2002 to 2017, ASIR of liver cancer showed a declining trend in both males and females in China, Japan, and South Korea (all P<0.001), with AAPCs of -1.96% for Chinese males and -2.75% for Chinese females. In contrast, the United States experienced an increasing trend in ASIR, with AAPCs of 3.13% for males and 3.12% for females (both P<0.001). Projections indicate that by 2050, the number of new cases and deaths globally will reach 1.564 million and 1.421 million, representing increases of 80.6% and 87.2% compared to 2022, respectively. In China, the number of new cases and deaths are projected to be 560 000 and 514 000, increases of 52.2% and 62.1% from 2022, respectively. Conclusions: The burden of liver cancer varies significantly across regions, sexes, and age groups worldwide. Incidence and mortality rates are negatively correlated with HDI. The global burden of liver cancer is expected to continue increasing, underscoring the need for enhanced comprehensive prevention and control strategies.

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  • Research Article
  • Cite Count Icon 6
  • 10.3390/cancers13235894
Differences in Uveal Melanoma Age-Standardized Incidence Rates in Two Eastern States of Australia Are Driven by Differences in Rurality and Ultraviolet Radiation.
  • Nov 23, 2021
  • Cancers
  • Melissa Chalada + 6 more

Simple SummaryUveal melanoma (UM) is a rare form of melanoma originating in the eye. Unlike cutaneous melanoma (CM), the role of ultraviolet radiation (UVR) in UM aetiology is still unresolved. UM has a high incidence in Australia. Epidemiological analyses revealed heterogeneity in UM incidence between two eastern Australian states, Queensland (QLD) and Victoria (VIC). It was found that QLD has a 21% higher incidence of UM than VIC and, in fact, has one of the highest incidences in the world. A weak south-to-north trend in incidence along the eastern Australian coast is seen, and rural areas have a 24% greater burden than major city areas in both the states. The two states are similar demographically, but differ socially, industrially and latitudinally. This is important because it could indicate a minor UVR role in UM incidence, especially in QLD. Preventative measures by sun-protective behaviours may be important, especially in the northeastern Australian demographic. Uveal melanoma (UM) is the second-most-common melanoma in humans and has a high age-standardized incidence rate (ASR) in Australia. Regional patterns of UM ASRs in Australia are unknown. The aim of this study was to determine and compare UM ASRs in two geographically disparate eastern states, Queensland (QLD) and Victoria (VIC), by using cancer registry data that was obtained from 2001 to 2013. World-standardized UM ASRs and incidence-rate ratios (IRRs) were calculated. Higher UM ASR was also observed in anterior UM compared to posterior UM ASR. UM ASR remained unchanged from 2001 to 2013 in QLD but decreased in VIC. A south-to-north latitude trend in UM ASR along the east of Australia is weakly evident, and rural populations have higher UM ASRs than major city populations in both states. Differences in ultraviolent radiation (UVR) susceptibility, indigenous populations, social behaviours, chemical exposure, and socioeconomic status could all be contributing to differences in UM rates between QLD and VIC and between rural compared to major city areas. It is possible that a minority of cases in QLD and VIC might be prevented by sun-protective behaviours. This is important, because these findings suggest that QLD, which is already known to have one of the highest cutaneous melanoma (CM) ASRs in the world, also has one of the highest UM ASRs.

  • Research Article
  • Cite Count Icon 4
  • 10.1186/s12884-025-07722-w
Maternal sepsis and other maternal infections: Global Burden from 1990 to 2021
  • May 26, 2025
  • BMC Pregnancy and Childbirth
  • Jianghong Cao + 3 more

BackgroundMaternal sepsis and other maternal infections (MSMIs) pose significant global health challenges, leading to considerable morbidity and mortality. Understanding the global burden of MSMIs is essential for resource allocation and the development of targeted prevention and treatment strategies.ObjectivesTo analyse the global burden of MSMIs from 1990 to 2021, and identify disparities across age groups, regions, countries, and socio-demographic indexes (SDIs).MethodsData were sourced from the Global Burden of Disease Study (GBD) 2021, stratified by age, SDI level, region, and country. The age-standardized incidence and death rates in 2021, along with their estimated annual percentage changes (EAPCs) from 1990 to 2021, were used to measure the current burden and temporal trends.ResultsIn 2021, the numbers of MSMIs incidence and deaths were estimated at 19.05 million (95% [uncertainty interval] UI: 14.61 to 24.09 million) and 17.67 thousand (95% UI: 14.63 to 21.19 thousand), respectively, with age-standardized incidence and death rates of 243.51 (95% UI: 186.01 to 307.48) and 0.22 (95% UI: 0.18 to 0.27) per 100,000 populations. Age-standardized incidence and death rates peaked in the 20–24 age group. From 1990 to 2021, the age-standardized incidence and death rates of MSMIs decreased, with EAPCs of -1.20 (95% [confidence interval] CI: -1.26 to -1.13) and -2.49 (95% CI: -2.95 to -2.03) respectively. The largest increase in the age-standardized incidence rate in 21 GBD regions was found in Australasia (EAPC: 0.70; 95%CI:0.52 to 0.89), and the largest increase in the age-standardized death rate was found in Oceania (EAPC:0.70; 95%CI: 0.51 to 0.88). The largest increase in the age-standardized incidence rate in 204 countries was found in Australia (EAPC:1.80; 95%CI:1.40 to 2.20), and the largest increase in the age-standardized death rate was found in Kazakhstan (EAPC:3.42; 95%CI: 2.56 to 4.29). Both the age-standardized incidence (R = -0.76, P < 0.001) and death rates (R = -0.65, P < 0.001) show a negative correlation with SDI levels.ConclusionsThis study reveals a decreasing trend in the global burden of MSMIs, yet disparities persist, particularly in 20–24 age group, lower SDI regions,and regions and countries with increasing burdens. These findings underscore the need for targeted interventions to address the remaining challenges in MSMIs, especially in more vulnerable populations.

  • Research Article
  • Cite Count Icon 17
  • 10.21147/j.issn.1000-9604.2020.01.01
Incidence and mortality of oral and oropharyngeal cancer in China, 2015.
  • Jan 1, 2020
  • Chinese Journal of Cancer Research
  • Lin Lei + 8 more

ObjectiveTo report the incidence and mortality rates of oral and oropharyngeal cancer in Chinese population.MethodsData were taken from a population-based cancer registry collected by the National Central Cancer Registry of China (NCCRC) in 2015. The data collected from 501 local cancer registries in China were assessed using NCCRC screening methods and criteria. Incidence and mortality rates of oral and oropharyngeal cancer were stratified by age group, gender, and area. Age-standardized incidence and mortality rates were adjusted using the Chinese standard population in 2000 and Segi’s world population.ResultsIn 2015, it was estimated that there were 51,765 oral and oropharyngeal cancer incident cases and 23,830 deaths in China. The crude incidence rate of oral and oropharyngeal cancer was 3.77/100,000, and the age-standardized incidence rate by Chinese standard population and by Segi’s world standard population were 2.55/100,000 and 2.49/100,000, respectively. The crude mortality rate and the age-standardized mortality rates by Chinese standard population and by Segi’s world standard population were 1.73/100,000, 1.09/100,000 and 1.08/100,000, respectively. Both incidence and mortality rates of oral and oropharyngeal cancer were higher in males and in urban areas. Residents in eastern areas had the highest incidence and mortality rates, followed by those from middle areas and western areas. The rates of oral and oropharyngeal cancer increased greatly with age, especially after the age of 40 years.ConclusionsThis study reports the latest incidence and mortality rates of oral and oropharyngeal cancer in China. Prevention intervention including early detection, treatment, and regular follow-ups is encouraged to be set up to reduce incidence and mortality rates of oral and oropharyngeal cancer in the future.

  • Preprint Article
  • 10.1158/1055-9965.22438699
Supplementary Materials from Global Cancer in Women: Burden and Trends
  • Mar 31, 2023
  • Lindsey A Torre + 4 more

&lt;p&gt;Supplementary Table S1. Leading causes of death among females worldwide, 2012 Number of deaths for top ten causes of death among females worldwide Supplementary Table S2. Leading causes of death among females by world region, 2012 Number of deaths for top ten causes of death among females by world region Supplementary Table S3. Estimated number of new cancer cases and deaths among females by world area, 2012 Number of cancer cases and deaths for all cancer sites combined among females by world region Supplementary Figure S1. Female breast cancer incidence and mortality rates, age-standardized rate (world), 2012 Two world maps: age-standardized breast cancer incidence rates among females and age-standardized breast cancer mortality rates among females Supplementary Figure S2. Female breast cancer incidence trends, age-standardized rate (world), select countries, 1973-2012 Observed age-standardized female breast cancer incidence rates, select countries, all ages, 1973-2012 Supplementary Figure S3. Female breast cancer survivors diagnosed in last five years (through 2012 or latest available) World map: number of breast cancer survivors diagnosed within the last five years, per 100,000 population Supplementary Figure S4. Cervical cancer incidence and mortality rates, age-standardized rate (world), 2012 Two world maps: age-standardized cervical cancer incidence rates and age-standardized cervical cancer mortality rates Supplementary Figure S5. Prevalence (%) of cervical HPV infection among women by region, all types combined, 1995-2009 World map of HPV prevalence (%) among women by world region Supplementary Table S6. Cervical cancer incidence trends, age-standardized rate (world), select countries, 1975-2007 Observed age-standardized cervical cancer incidence rates with a five-year moving average, select countries, all ages, 1975-2007 Supplementary Figure S7. Cervical cancer survivors diagnosed in last five years (through 2012 or latest available) World map: number of cervical cancer survivors diagnosed within the last five years, per 100,000 population Supplementary Figure S8. Uterine corpus cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized uterine corpus cancer incidence rates and age-standardized uterine corpus cancer mortality rates Supplementary Figure S9. Uterine corpus cancer mortality trends, age-standardized rate (world), select countries, 1990-2014 Observed age-standardized uterine corpus cancer mortality rates with a five-year moving average, select countries, all ages, 1990-2014 Supplementary Figure S10. Ovarian cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized ovarian cancer incidence rates and age-standardized ovarian cancer mortality rates Supplementary Figure S11. Ovarian cancer mortality trends, age-standardized rate (world), select countries, 1980-2014 Observed age-standardized ovarian cancer mortality rates with a five-year moving average, select countries, all ages, 1980-2014 Supplementary Figure S12. Colorectal cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized liver cancer incidence rates among females and age-standardized liver cancer mortality rates among females Supplementary Figure S13. Colorectal cancer incidence trends, females, select countries, 1980-2014 Observed age-standardized colorectal cancer incidence rates among females with a five-year moving average, select countries, all ages, 1980-2014 Supplementary Figure S14. Colorectal cancer mortality trends, females, age-standardized rate (world), select countries, 1975-2014 Observed age-standardized colorectal cancer mortality rates among females with a five-year moving average, select countries, all ages, 1975-2014 Supplementary Figure S15. Lung cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized lung cancer incidence rates among females and age-standardized lung cancer mortality rates among females Supplementary Figure S16. Population using solid fuels for heating and/or cooking, 2013 World map: percent of the population using solid fuels by country Supplementary Figure S17. Adult female smoking prevalence, age 15+ years, 2013 World map: percent of adult females (age 15+ years) who smoke by country, 2013 Supplementary Figure S18. Female youth smoking prevalence, age 13-15 years, 2011 or latest available data World map: percent of female youth (age 13-15 years) who smoke by country, 2011 or latest available data Supplementary Figure S19. Liver cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized liver cancer incidence rates among females and age-standardized liver cancer mortality rates among females Supplementary Figure S20. Hepatitis B virus prevalence, both sexes, from systematic review of studies 1957-2013 World map of HBV prevalence (%) among both sexes combined by country Supplementary Figure S21. Estimated hepatitis C virus prevalence, both sexes, 2005 World map of HCV prevalence (%) among both sexes combined by country Supplementary Figure S22. Liver cancer mortality trends, females, age-standardized rate (world), select countries, 1995-2014 Observed age-standardized liver cancer mortality rates among females with a five-year moving average, select countries, all ages, 1995-2014&lt;/p&gt;

  • Preprint Article
  • 10.1158/1055-9965.22438699.v1
Supplementary Materials from Global Cancer in Women: Burden and Trends
  • Mar 31, 2023
  • Lindsey A Torre + 4 more

&lt;p&gt;Supplementary Table S1. Leading causes of death among females worldwide, 2012 Number of deaths for top ten causes of death among females worldwide Supplementary Table S2. Leading causes of death among females by world region, 2012 Number of deaths for top ten causes of death among females by world region Supplementary Table S3. Estimated number of new cancer cases and deaths among females by world area, 2012 Number of cancer cases and deaths for all cancer sites combined among females by world region Supplementary Figure S1. Female breast cancer incidence and mortality rates, age-standardized rate (world), 2012 Two world maps: age-standardized breast cancer incidence rates among females and age-standardized breast cancer mortality rates among females Supplementary Figure S2. Female breast cancer incidence trends, age-standardized rate (world), select countries, 1973-2012 Observed age-standardized female breast cancer incidence rates, select countries, all ages, 1973-2012 Supplementary Figure S3. Female breast cancer survivors diagnosed in last five years (through 2012 or latest available) World map: number of breast cancer survivors diagnosed within the last five years, per 100,000 population Supplementary Figure S4. Cervical cancer incidence and mortality rates, age-standardized rate (world), 2012 Two world maps: age-standardized cervical cancer incidence rates and age-standardized cervical cancer mortality rates Supplementary Figure S5. Prevalence (%) of cervical HPV infection among women by region, all types combined, 1995-2009 World map of HPV prevalence (%) among women by world region Supplementary Table S6. Cervical cancer incidence trends, age-standardized rate (world), select countries, 1975-2007 Observed age-standardized cervical cancer incidence rates with a five-year moving average, select countries, all ages, 1975-2007 Supplementary Figure S7. Cervical cancer survivors diagnosed in last five years (through 2012 or latest available) World map: number of cervical cancer survivors diagnosed within the last five years, per 100,000 population Supplementary Figure S8. Uterine corpus cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized uterine corpus cancer incidence rates and age-standardized uterine corpus cancer mortality rates Supplementary Figure S9. Uterine corpus cancer mortality trends, age-standardized rate (world), select countries, 1990-2014 Observed age-standardized uterine corpus cancer mortality rates with a five-year moving average, select countries, all ages, 1990-2014 Supplementary Figure S10. Ovarian cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized ovarian cancer incidence rates and age-standardized ovarian cancer mortality rates Supplementary Figure S11. Ovarian cancer mortality trends, age-standardized rate (world), select countries, 1980-2014 Observed age-standardized ovarian cancer mortality rates with a five-year moving average, select countries, all ages, 1980-2014 Supplementary Figure S12. Colorectal cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized liver cancer incidence rates among females and age-standardized liver cancer mortality rates among females Supplementary Figure S13. Colorectal cancer incidence trends, females, select countries, 1980-2014 Observed age-standardized colorectal cancer incidence rates among females with a five-year moving average, select countries, all ages, 1980-2014 Supplementary Figure S14. Colorectal cancer mortality trends, females, age-standardized rate (world), select countries, 1975-2014 Observed age-standardized colorectal cancer mortality rates among females with a five-year moving average, select countries, all ages, 1975-2014 Supplementary Figure S15. Lung cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized lung cancer incidence rates among females and age-standardized lung cancer mortality rates among females Supplementary Figure S16. Population using solid fuels for heating and/or cooking, 2013 World map: percent of the population using solid fuels by country Supplementary Figure S17. Adult female smoking prevalence, age 15+ years, 2013 World map: percent of adult females (age 15+ years) who smoke by country, 2013 Supplementary Figure S18. Female youth smoking prevalence, age 13-15 years, 2011 or latest available data World map: percent of female youth (age 13-15 years) who smoke by country, 2011 or latest available data Supplementary Figure S19. Liver cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized liver cancer incidence rates among females and age-standardized liver cancer mortality rates among females Supplementary Figure S20. Hepatitis B virus prevalence, both sexes, from systematic review of studies 1957-2013 World map of HBV prevalence (%) among both sexes combined by country Supplementary Figure S21. Estimated hepatitis C virus prevalence, both sexes, 2005 World map of HCV prevalence (%) among both sexes combined by country Supplementary Figure S22. Liver cancer mortality trends, females, age-standardized rate (world), select countries, 1995-2014 Observed age-standardized liver cancer mortality rates among females with a five-year moving average, select countries, all ages, 1995-2014&lt;/p&gt;

  • Preprint Article
  • 10.1158/1055-9965.22438705.v1
Supplementary Materials from Global Cancer in Women: Burden and Trends
  • Mar 31, 2023
  • Lindsey A Torre + 4 more

&lt;p&gt;Supplementary Table S1. Leading causes of death among females worldwide, 2012 Number of deaths for top ten causes of death among females worldwide Supplementary Table S2. Leading causes of death among females by world region, 2012 Number of deaths for top ten causes of death among females by world region Supplementary Table S3. Estimated number of new cancer cases and deaths among females by world area, 2012 Number of cancer cases and deaths for all cancer sites combined among females by world region Supplementary Figure S1. Female breast cancer incidence and mortality rates, age-standardized rate (world), 2012 Two world maps: age-standardized breast cancer incidence rates among females and age-standardized breast cancer mortality rates among females Supplementary Figure S2. Female breast cancer incidence trends, age-standardized rate (world), select countries, 1973-2012 Observed age-standardized female breast cancer incidence rates, select countries, all ages, 1973-2012 Supplementary Figure S3. Female breast cancer survivors diagnosed in last five years (through 2012 or latest available) World map: number of breast cancer survivors diagnosed within the last five years, per 100,000 population Supplementary Figure S4. Cervical cancer incidence and mortality rates, age-standardized rate (world), 2012 Two world maps: age-standardized cervical cancer incidence rates and age-standardized cervical cancer mortality rates Supplementary Figure S5. Prevalence (%) of cervical HPV infection among women by region, all types combined, 1995-2009 World map of HPV prevalence (%) among women by world region Supplementary Table S6. Cervical cancer incidence trends, age-standardized rate (world), select countries, 1975-2007 Observed age-standardized cervical cancer incidence rates with a five-year moving average, select countries, all ages, 1975-2007 Supplementary Figure S7. Cervical cancer survivors diagnosed in last five years (through 2012 or latest available) World map: number of cervical cancer survivors diagnosed within the last five years, per 100,000 population Supplementary Figure S8. Uterine corpus cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized uterine corpus cancer incidence rates and age-standardized uterine corpus cancer mortality rates Supplementary Figure S9. Uterine corpus cancer mortality trends, age-standardized rate (world), select countries, 1990-2014 Observed age-standardized uterine corpus cancer mortality rates with a five-year moving average, select countries, all ages, 1990-2014 Supplementary Figure S10. Ovarian cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized ovarian cancer incidence rates and age-standardized ovarian cancer mortality rates Supplementary Figure S11. Ovarian cancer mortality trends, age-standardized rate (world), select countries, 1980-2014 Observed age-standardized ovarian cancer mortality rates with a five-year moving average, select countries, all ages, 1980-2014 Supplementary Figure S12. Colorectal cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized liver cancer incidence rates among females and age-standardized liver cancer mortality rates among females Supplementary Figure S13. Colorectal cancer incidence trends, females, select countries, 1980-2014 Observed age-standardized colorectal cancer incidence rates among females with a five-year moving average, select countries, all ages, 1980-2014 Supplementary Figure S14. Colorectal cancer mortality trends, females, age-standardized rate (world), select countries, 1975-2014 Observed age-standardized colorectal cancer mortality rates among females with a five-year moving average, select countries, all ages, 1975-2014 Supplementary Figure S15. Lung cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized lung cancer incidence rates among females and age-standardized lung cancer mortality rates among females Supplementary Figure S16. Population using solid fuels for heating and/or cooking, 2013 World map: percent of the population using solid fuels by country Supplementary Figure S17. Adult female smoking prevalence, age 15+ years, 2013 World map: percent of adult females (age 15+ years) who smoke by country, 2013 Supplementary Figure S18. Female youth smoking prevalence, age 13-15 years, 2011 or latest available data World map: percent of female youth (age 13-15 years) who smoke by country, 2011 or latest available data Supplementary Figure S19. Liver cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized liver cancer incidence rates among females and age-standardized liver cancer mortality rates among females Supplementary Figure S20. Hepatitis B virus prevalence, both sexes, from systematic review of studies 1957-2013 World map of HBV prevalence (%) among both sexes combined by country Supplementary Figure S21. Estimated hepatitis C virus prevalence, both sexes, 2005 World map of HCV prevalence (%) among both sexes combined by country Supplementary Figure S22. Liver cancer mortality trends, females, age-standardized rate (world), select countries, 1995-2014 Observed age-standardized liver cancer mortality rates among females with a five-year moving average, select countries, all ages, 1995-2014&lt;/p&gt;

  • Preprint Article
  • 10.1158/1055-9965.22438696
Supplementary Materials from Global Cancer in Women: Burden and Trends
  • Mar 31, 2023
  • Lindsey A Torre + 4 more

&lt;p&gt;Supplementary Table S1. Leading causes of death among females worldwide, 2012 Number of deaths for top ten causes of death among females worldwide Supplementary Table S2. Leading causes of death among females by world region, 2012 Number of deaths for top ten causes of death among females by world region Supplementary Table S3. Estimated number of new cancer cases and deaths among females by world area, 2012 Number of cancer cases and deaths for all cancer sites combined among females by world region Supplementary Figure S1. Female breast cancer incidence and mortality rates, age-standardized rate (world), 2012 Two world maps: age-standardized breast cancer incidence rates among females and age-standardized breast cancer mortality rates among females Supplementary Figure S2. Female breast cancer incidence trends, age-standardized rate (world), select countries, 1973-2012 Observed age-standardized female breast cancer incidence rates, select countries, all ages, 1973-2012 Supplementary Figure S3. Female breast cancer survivors diagnosed in last five years (through 2012 or latest available) World map: number of breast cancer survivors diagnosed within the last five years, per 100,000 population Supplementary Figure S4. Cervical cancer incidence and mortality rates, age-standardized rate (world), 2012 Two world maps: age-standardized cervical cancer incidence rates and age-standardized cervical cancer mortality rates Supplementary Figure S5. Prevalence (%) of cervical HPV infection among women by region, all types combined, 1995-2009 World map of HPV prevalence (%) among women by world region Supplementary Table S6. Cervical cancer incidence trends, age-standardized rate (world), select countries, 1975-2007 Observed age-standardized cervical cancer incidence rates with a five-year moving average, select countries, all ages, 1975-2007 Supplementary Figure S7. Cervical cancer survivors diagnosed in last five years (through 2012 or latest available) World map: number of cervical cancer survivors diagnosed within the last five years, per 100,000 population Supplementary Figure S8. Uterine corpus cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized uterine corpus cancer incidence rates and age-standardized uterine corpus cancer mortality rates Supplementary Figure S9. Uterine corpus cancer mortality trends, age-standardized rate (world), select countries, 1990-2014 Observed age-standardized uterine corpus cancer mortality rates with a five-year moving average, select countries, all ages, 1990-2014 Supplementary Figure S10. Ovarian cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized ovarian cancer incidence rates and age-standardized ovarian cancer mortality rates Supplementary Figure S11. Ovarian cancer mortality trends, age-standardized rate (world), select countries, 1980-2014 Observed age-standardized ovarian cancer mortality rates with a five-year moving average, select countries, all ages, 1980-2014 Supplementary Figure S12. Colorectal cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized liver cancer incidence rates among females and age-standardized liver cancer mortality rates among females Supplementary Figure S13. Colorectal cancer incidence trends, females, select countries, 1980-2014 Observed age-standardized colorectal cancer incidence rates among females with a five-year moving average, select countries, all ages, 1980-2014 Supplementary Figure S14. Colorectal cancer mortality trends, females, age-standardized rate (world), select countries, 1975-2014 Observed age-standardized colorectal cancer mortality rates among females with a five-year moving average, select countries, all ages, 1975-2014 Supplementary Figure S15. Lung cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized lung cancer incidence rates among females and age-standardized lung cancer mortality rates among females Supplementary Figure S16. Population using solid fuels for heating and/or cooking, 2013 World map: percent of the population using solid fuels by country Supplementary Figure S17. Adult female smoking prevalence, age 15+ years, 2013 World map: percent of adult females (age 15+ years) who smoke by country, 2013 Supplementary Figure S18. Female youth smoking prevalence, age 13-15 years, 2011 or latest available data World map: percent of female youth (age 13-15 years) who smoke by country, 2011 or latest available data Supplementary Figure S19. Liver cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized liver cancer incidence rates among females and age-standardized liver cancer mortality rates among females Supplementary Figure S20. Hepatitis B virus prevalence, both sexes, from systematic review of studies 1957-2013 World map of HBV prevalence (%) among both sexes combined by country Supplementary Figure S21. Estimated hepatitis C virus prevalence, both sexes, 2005 World map of HCV prevalence (%) among both sexes combined by country Supplementary Figure S22. Liver cancer mortality trends, females, age-standardized rate (world), select countries, 1995-2014 Observed age-standardized liver cancer mortality rates among females with a five-year moving average, select countries, all ages, 1995-2014&lt;/p&gt;

  • Preprint Article
  • 10.1158/1055-9965.22438705
Supplementary Materials from Global Cancer in Women: Burden and Trends
  • Mar 31, 2023
  • Lindsey A Torre + 4 more

&lt;p&gt;Supplementary Table S1. Leading causes of death among females worldwide, 2012 Number of deaths for top ten causes of death among females worldwide Supplementary Table S2. Leading causes of death among females by world region, 2012 Number of deaths for top ten causes of death among females by world region Supplementary Table S3. Estimated number of new cancer cases and deaths among females by world area, 2012 Number of cancer cases and deaths for all cancer sites combined among females by world region Supplementary Figure S1. Female breast cancer incidence and mortality rates, age-standardized rate (world), 2012 Two world maps: age-standardized breast cancer incidence rates among females and age-standardized breast cancer mortality rates among females Supplementary Figure S2. Female breast cancer incidence trends, age-standardized rate (world), select countries, 1973-2012 Observed age-standardized female breast cancer incidence rates, select countries, all ages, 1973-2012 Supplementary Figure S3. Female breast cancer survivors diagnosed in last five years (through 2012 or latest available) World map: number of breast cancer survivors diagnosed within the last five years, per 100,000 population Supplementary Figure S4. Cervical cancer incidence and mortality rates, age-standardized rate (world), 2012 Two world maps: age-standardized cervical cancer incidence rates and age-standardized cervical cancer mortality rates Supplementary Figure S5. Prevalence (%) of cervical HPV infection among women by region, all types combined, 1995-2009 World map of HPV prevalence (%) among women by world region Supplementary Table S6. Cervical cancer incidence trends, age-standardized rate (world), select countries, 1975-2007 Observed age-standardized cervical cancer incidence rates with a five-year moving average, select countries, all ages, 1975-2007 Supplementary Figure S7. Cervical cancer survivors diagnosed in last five years (through 2012 or latest available) World map: number of cervical cancer survivors diagnosed within the last five years, per 100,000 population Supplementary Figure S8. Uterine corpus cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized uterine corpus cancer incidence rates and age-standardized uterine corpus cancer mortality rates Supplementary Figure S9. Uterine corpus cancer mortality trends, age-standardized rate (world), select countries, 1990-2014 Observed age-standardized uterine corpus cancer mortality rates with a five-year moving average, select countries, all ages, 1990-2014 Supplementary Figure S10. Ovarian cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized ovarian cancer incidence rates and age-standardized ovarian cancer mortality rates Supplementary Figure S11. Ovarian cancer mortality trends, age-standardized rate (world), select countries, 1980-2014 Observed age-standardized ovarian cancer mortality rates with a five-year moving average, select countries, all ages, 1980-2014 Supplementary Figure S12. Colorectal cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized liver cancer incidence rates among females and age-standardized liver cancer mortality rates among females Supplementary Figure S13. Colorectal cancer incidence trends, females, select countries, 1980-2014 Observed age-standardized colorectal cancer incidence rates among females with a five-year moving average, select countries, all ages, 1980-2014 Supplementary Figure S14. Colorectal cancer mortality trends, females, age-standardized rate (world), select countries, 1975-2014 Observed age-standardized colorectal cancer mortality rates among females with a five-year moving average, select countries, all ages, 1975-2014 Supplementary Figure S15. Lung cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized lung cancer incidence rates among females and age-standardized lung cancer mortality rates among females Supplementary Figure S16. Population using solid fuels for heating and/or cooking, 2013 World map: percent of the population using solid fuels by country Supplementary Figure S17. Adult female smoking prevalence, age 15+ years, 2013 World map: percent of adult females (age 15+ years) who smoke by country, 2013 Supplementary Figure S18. Female youth smoking prevalence, age 13-15 years, 2011 or latest available data World map: percent of female youth (age 13-15 years) who smoke by country, 2011 or latest available data Supplementary Figure S19. Liver cancer incidence and mortality rates, females, age-standardized rate (world), 2012 Two world maps: age-standardized liver cancer incidence rates among females and age-standardized liver cancer mortality rates among females Supplementary Figure S20. Hepatitis B virus prevalence, both sexes, from systematic review of studies 1957-2013 World map of HBV prevalence (%) among both sexes combined by country Supplementary Figure S21. Estimated hepatitis C virus prevalence, both sexes, 2005 World map of HCV prevalence (%) among both sexes combined by country Supplementary Figure S22. Liver cancer mortality trends, females, age-standardized rate (world), select countries, 1995-2014 Observed age-standardized liver cancer mortality rates among females with a five-year moving average, select countries, all ages, 1995-2014&lt;/p&gt;

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