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Dosimetric Outcomes of Deep Inspiration Breath-Hold (DIBH) Technique in Terms of Normal Tissue Sparing for Right-Sided Breast Cancer Irradiation: A Single-Institution Experience

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This study demonstrates that the deep inspiration breath-hold technique in right-sided breast cancer radiotherapy significantly reduces doses to critical organs, including the lungs, liver, and heart, without compromising target coverage, suggesting its potential for routine clinical use.

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Abstract Introduction Deep inspiration breath-hold (DIBH) technique is commonly used in left breast cancer irradiation as it has shown to reduce cardiac and pulmonary doses. DIBH technique has also shown to reduce critical organ doses in right-sided breast cancer patients. This study aimed to demonstrate the single-institution experience of dosimetric benefits of DIBH technique in irradiation of right breast carcinoma patients. Materials and Method Twenty consecutive patients who underwent adjuvant locoregional radiotherapy by DIBH technique for right-sided breast carcinoma were included retrospectively for analysis. Indications for use of DIBH for right-sided disease in our institution included presence of breast implant or need for irradiation of axillary and/or internal mammary nodal basin. For all these patients, planning computed tomography (CT) was obtained in both free breathing (FB) and deep inspiration breath hold (DIBH) using indexed breast board. Treatment was replanned in the FB planning CT slices, and dosimetric endpoints in terms of differences in PTV coverage and doses to lungs, heart, liver, and contralateral breast were compared. Radiation was delivered using either volumetric modulated arc therapy or intensity-modulated radiotherapy technique. Results There was no significant difference in PTV coverage between FB and DIBH scans showing similar plan qualities. The ipsilateral lung volume showed significant increase with subsequent decrease in the mean dose with DIBH compared to FB (from 14 Gy in the FB plan to 12 Gy with DIBH, p -value 0.01). Technique of DIBH significantly lowered the mean hepatic dose compared to FB technique (3.8 vs. 7.9 Gy, p -value: 0.0001). Contralateral lung mean dose also showed reduction of statistical significance in DIBH. There was significant difference in the mean dose to the heart between the two techniques, as well as in the max dose, which was reduced significantly with DIBH. Contralateral breast mean dose was also reduced with DIBH, though the difference was not statistically significant. Conclusion DIBH technique showed significant dosimetric benefit in terms of reduced critical organ doses, providing a potential for incorporation into radiotherapy of right-sided breast carcinoma.

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  • Research Article
  • 10.1118/1.4957001
SU-G-TeP1-11: Predictors of Cardiac and Lung Dose Sparing in DIBH for Left Breast Treatment
  • Jun 1, 2016
  • Medical Physics
  • N Cao + 10 more

Purpose: This retrospective study of left sided whole breast radiation therapy (RT) patients investigates possible predictive parameters correlating to cardiac and left lung dose sparing by deep inspiration breath-hold (DIBH) technique compared to free-breathing (FB). Methods: Thirty-one patients having both DIBH and FB CT scans were included in the study. All patients were planned with a standard step-and-shoot tangential technique using MV photons, with prescription of 50Gy or 50.4Gy. The displacement of the breath hold sternal mark during DIBH, the cardiac contact distances of the axial (CCDax) and parasagittal (CCDps) planes, and lateral-heart-to-chest (LHC) distance on FB CT scans were measured. Lung volumes, mean dose and dose-volume histograms (V5, V10 and V20) were analyzed and compared for heart and left lung for both FB and DIBH techniques. Correlation analysis was performed to identify the predictors for heart and left lung dose sparing. Two-tailed Student's t-test and linear regression were used for data analysis with significance level of P≤0.05. Results: All dosimetric metrics for the heart and left lung were significantly reduced (P<0.01) with DIBH. Breath hold sternal mark displacement ranged from 0.4–1.8 cm and correlated with mean (P=0.05) and V5 (P=0.02) of heart dose reduction by DIBH. FB lung volume showed correlation with mean lung dose reduction by DIBH (P<0.01). The FB-CCDps and FB-LHC distance had strong positive and negative correlation with FB mean heart dose (P<0.01) and mean heart dose reduction by DIBH (P<0.01), respectively. FB-CCDax showed no correlation with dosimetric changes. Conclusion: DIBH technique has been shown to reduce dose to the heart and left lung. In this patient cohort, FB-CCDps, FB-LHC distance, and FB lung volume served as significant predictors for heart and left lung. These parameters can be further investigated to be used as a tool to better select patients who will benefit from DIBH.

  • Research Article
  • Cite Count Icon 3
  • 10.1515/pjmpe-2017-0018
Comparison of cardiac and lung doses for breast cancer patients with free breathing and deep inspiration breath hold technique in 3 dimensional conformal radiotherapy - a dosimetric study
  • Dec 1, 2017
  • Polish Journal of Medical Physics and Engineering
  • Karthick Raj Mani + 2 more

Purpose: To investigate the cardio-pulmonary doses between Deep Inspiration Breath Hold (DIBH) and Free Breathing (FB) technique in left sided breast irradiation. Materials &amp; Methods: DIBH CT and FB CT were acquired for 10 left sided breast patients who underwent whole breast irradiation with or without nodal irradiation. Three fields single isocenter technique were used for patients with node positive patients along with two tangential conformal fields whereas only two tangential fields were used in node negative patients. All the critical structures like lungs, heart, esophagus, thyroid, etc., were delineated in both DIBH and FB scan. Both DIBH and FB scans were fused with the Dicom origin as they were acquired with the same Dicom coordinates. Plans were created in the DIBH scan for a dose range between 50 Gy in 25 fractions. Critical structures doses were recorded from the Dose Volume Histogram for both the DIBH and FB data set for evaluation. Results: The average mean heart dose in DIBH vs FB was 13.18 Gy vs 6.97 Gy, (p = 0.0063) significantly with DIBH as compared to FB technique. The relative reduction in average mean heart dose was 47.12%. The relative V5 reduced by 14.70% (i.e. 34.42% vs 19.72%, p = 0.0080), V10 reduced by 13.83% (i.e. 27.79 % vs 13.96%, p = 0.0073). V20 reduced by 13.19% (i.e. 24.54 % vs 11.35%, p = 0.0069), V30 reduced by 12.38% (i.e. 22.27 % vs 9.89 %, p = 0.0073) significantly with DIBH as compared to FB. The average mean left lung dose reduced marginally by 1.43 Gy (13.73 Gy vs 12.30 Gy, p = 0.4599) but insignificantly with DIBH as compared to FB. Other left lung parameters (V5, V10, V20 and V30) shows marginal decreases in DIBH plans compare to FB plans. Conclusion: DIBH shows a substantial reduction of cardiac doses but slight and insignificant reduction of pulmonary doses as compared with FB technique. Using the simple DIBH technique, we can effectively reduce the cardiac morbidity and at the same time radiation induced lung pneumonitis is unlikely to increase.

  • Research Article
  • Cite Count Icon 116
  • 10.1016/j.ijrobp.2011.05.015
Dosimetric Benefits of Intensity-Modulated Radiotherapy Combined With the Deep-Inspiration Breath-Hold Technique in Patients With Mediastinal Hodgkin's Lymphoma
  • Jun 24, 2011
  • International Journal of Radiation Oncology*Biology*Physics
  • Amaury Paumier + 9 more

Dosimetric Benefits of Intensity-Modulated Radiotherapy Combined With the Deep-Inspiration Breath-Hold Technique in Patients With Mediastinal Hodgkin's Lymphoma

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  • Cite Count Icon 1
  • 10.1016/j.ijrobp.2020.07.788
Early Experiences of Deep Inspiration Breath Hold Technique in Stereotactic Body Radiotherapy for Localized Lung Tumor
  • Oct 23, 2020
  • International Journal of Radiation Oncology*Biology*Physics
  • K.R Mani + 10 more

Early Experiences of Deep Inspiration Breath Hold Technique in Stereotactic Body Radiotherapy for Localized Lung Tumor

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  • Research Article
  • Cite Count Icon 6
  • 10.1186/s12885-022-09784-x
Incidental irradiation of the regional lymph nodes during deep inspiration breath-hold radiation therapy in left-sided breast cancer patients: a dosimetric analysis
  • Jun 21, 2022
  • BMC Cancer
  • Jule Wolf + 13 more

BackgroundRadiotherapy using the deep inspiration breath-hold (DIBH) technique compared with free breathing (FB) can achieve substantial reduction of heart and lung doses in left-sided breast cancer cases. The anatomical organ movement in deep inspiration also cause unintended exposure of locoregional lymph nodes to the irradiation field.MethodsFrom 2017–2020, 148 patients with left-sided breast cancer underwent breast conserving surgery (BCS) or mastectomy (ME) with axillary lymph node staging, followed by adjuvant irradiation in DIBH technique. Neoadjuvant or adjuvant systemic therapy was administered depending on hormone receptor and HER2-status.CT scans in FB and DIBH position with individual coaching and determination of the breathing amplitude during the radiation planning CT were performed for all patients. Intrafractional 3D position monitoring of the patient surface in deep inspiration and gating was performed using Sentinel and Catalyst HD 3D surface scanning systems (C-RAD, Catalyst, C-RAD AB, Uppsala, Sweden). Three-dimensional treatment planning was performed using standard tangential treatment portals (6 or 18 MV). The delineation of ipsilateral locoregional lymph nodes was done on the FB and the DIBH CT-scan according to the RTOG recommendations.ResultsThe mean doses (Dmean) in axillary lymph node (AL) level I, II and III in DIBH were 32.28 Gy (range 2.87–51.7), 20.1 Gy (range 0.44–53.84) and 3.84 Gy (range 0.25–39.23) vs. 34.93 Gy (range 10.52–50.40), 16.40 Gy (range 0.38–52.40) and 3.06 Gy (range 0.21–40.48) in FB (p < 0.0001). Accordingly, in DIBH the Dmean for AL level I were reduced by 7.59%, whereas for AL level II and III increased by 22.56% and 25.49%, respectively.The Dmean for the supraclavicular lymph nodes (SC) in DIBH was 0.82 Gy (range 0.23–4.11), as compared to 0.84 Gy (range 0.22–10.80) with FB (p = 0.002). This results in a mean dose reduction of 2.38% in DIBH.The Dmean for internal mammary lymph nodes (IM) was 12.77 Gy (range 1.45–39.09) in DIBH vs. 11.17 Gy (range 1.34–44.24) in FB (p = 0.005). This yields a mean dose increase of 14.32% in DIBH.ConclusionsThe DIBH technique may result in changes in the incidental dose exposure of regional lymph node areas.

  • Abstract
  • Cite Count Icon 3
  • 10.1016/j.ejmp.2018.06.478
P178] Dosimetric evaluation of DIBH and FB techniques by using vmat for left breast cancer
  • Aug 1, 2018
  • Physica Medica
  • Bora Tas + 1 more

P178] Dosimetric evaluation of DIBH and FB techniques by using vmat for left breast cancer

  • Abstract
  • 10.1016/j.ejmp.2018.04.016
6. Deep Inspiration Breath Hold of Left-sided Breast cancer radiotherapy: predictive parameters for patient selection
  • Dec 1, 2018
  • Physica Medica
  • S Naccarato + 10 more

6. Deep Inspiration Breath Hold of Left-sided Breast cancer radiotherapy: predictive parameters for patient selection

  • Research Article
  • Cite Count Icon 64
  • 10.3857/roj.2013.31.4.239
The deep inspiration breath hold technique using Abches reduces cardiac dose in patients undergoing left-sided breast irradiation
  • Dec 1, 2013
  • Radiation Oncology Journal
  • Ha Yoon Lee + 7 more

PurposeWe explored whether the deep inspiration breath hold (DIBH) technique using Abches during left-sided breast irradiation was effective for minimizing the amount of radiation to the heart and lung compared to free breathing (FB).Materials and MethodsBetween February and July 2012, a total of 25 patients with left-sided breast cancer underwent two computed tomography scans each with the DIBH using Abches and using FB after breast-conserving surgery. The scans were retrospectively replanned using standardized criteria for the purpose of this study. The DIBH plans for each patient were compared with FB plans using dosimetric parameters.ResultsAll patients were successfully treated with the DIBH technique using Abches. Significant differences were found between the DIBH and FB plans for mean heart dose (2.52 vs. 4.53 Gy), heart V30 (16.48 vs. 45.13 cm3), V20 (21.35 vs. 54.55 cm3), mean left anterior descending coronary artery (LAD) dose (16.01 vs. 26.26 Gy, all p < 0.001), and maximal dose to 0.2 cm3 of the LAD (41.65 vs. 47.27 Gy, p = 0.017). The mean left lung dose (7.53 vs. 8.03 Gy, p = 0.073) and lung V20 (14.63% vs. 15.72%, p = 0.060) of DIBH using Abches were not different significantly compared with FB.ConclusionWe report that the use of a DIBH technique using Abches in breathing adapted radiotherapy for left-sided breast cancer is easily feasible in daily practice and significantly reduces the radiation doses to the heart and LAD, therefore potentially reducing cardiac risk.

  • Research Article
  • Cite Count Icon 22
  • 10.1259/bjro.20200067
Deep inspiration breath hold versus free breathing technique in mediastinal radiotherapy for lymphoma.
  • Jan 1, 2021
  • BJR|Open
  • Orla Anne Houlihan + 8 more

Objective:Radiotherapy plays an important role in the management of lymphoma and many patients with lymphoma are cured with treatment. Risk of secondary malignancy and long-term cardiac and pulmonary toxicity from mediastinal radiotherapy exists. Delivery of radiotherapy using a deep inspiration breath-hold (DIBH) technique increases lung volume and has the potential to reduce dose to heart and lungs. We undertook a prospective study to assess the dosimetric differences in DIBH and free breathing (FB) plans in patients requiring mediastinal radiotherapy in clinical practice.Methods:We performed both FB and DIBH planning scans on 35 consecutive patients with mediastinal lymphoma needing radiotherapy. Contours and plans were generated for both data sets and dosimetric data were compared. All patients were planned using volumetric modulated arc therapy (VMAT). Data were compared for FB and DIBH plans with each patient acting as their own control using the related-samples Wilcoxon signed rank test.Results:DIBH significantly reduced lung doses (mean 10.6 vs 11.4Gy, p < 0.0005; V20 16.8 vs 18.3%, p = 0.001) and spinal cord maximum dose (20.6 vs 22.8Gy, p = 0.001). DIBH increased breast V4 (38.5% vs 31.8%, p = 0.006) and mean right breast dose (4.2 vs 3.6Gy, p = 0.010). There was no significant difference in heart doses when the entire study cohort was considered, however, mean heart dose tended to be lower with DIBH for upper mediastinal (UM) tumours (4.3 vs 4.9Gy, p = 0.05).Conclusion:Our study describes the potential benefit of DIBH in a population reflective of clinical practice. DIBH can decrease radiation dose to lungs, heart and spinal cord, however, may increase dose to breasts. DIBH is not always superior to FB, and the clinical significance of differences in dose to organs at risk in addition to the time required to treat patients with DIBH must be considered when deciding the most appropriate radiotherapy technique for each patient.Advances in knowledge:To our knowledge, this is the largest study comparing DIBH and FB planning for patients with lymphoma receiving mediastinal radiotherapy in clinical practice. It demonstrates the impact of an increasingly common radiotherapy technique on dose to organs at risk and the subsequent potential for long-term radiotherapy side-effects.

  • Research Article
  • 10.1016/j.ijrobp.2017.06.707
Three-Year Outcome Evaluation of Deep Inspiration Breath Hold Technique in Post–Radiation Therapy Patients After Left-Sided Breast-Conserving Surgery by Echocardiography With Quantitative Tissue Velocity Imaging
  • Oct 1, 2017
  • International Journal of Radiation Oncology*Biology*Physics
  • X Sun + 5 more

Three-Year Outcome Evaluation of Deep Inspiration Breath Hold Technique in Post–Radiation Therapy Patients After Left-Sided Breast-Conserving Surgery by Echocardiography With Quantitative Tissue Velocity Imaging

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  • Research Article
  • Cite Count Icon 3
  • 10.3390/cancers16040690
Dosimetric Impact of Voluntary Deep Inspiration Breath Hold (DIBH) in Mediastinal Hodgkin Lymphomas: A Comparative Evaluation of Three Different Intensity Modulated Radiation Therapy (IMRT) Delivery Methods Using Voluntary DIBH and Free Breathing Techniques.
  • Feb 6, 2024
  • Cancers
  • Samarpita Mohanty + 11 more

Hodgkin lymphomas are radiosensitive and curable tumors that often involve the mediastinum. However, the application of radiation therapy to the mediastinum is associated with late effects including cardiac and pulmonary toxicities and secondary cancers. The adoption of conformal IMRT and deep inspiration breath- hold (DIBH) can reduce the dose to healthy normal tissues (lungs, heart and breast). We compared the dosimetry of organs at risk (OARs) using different IMRT techniques for two breathing conditions, i.e., deep inspiration breath hold (DIBH) and free breathing. Twenty-three patients with early-stage mediastinal Hodgkin lymphomas were accrued in the prospective study. The patients were given treatment plans which utilized full arc volumetric modulated arc therapy (F-VMAT), Butterfly VMAT (B-VMAT), and fixed field IMRT (FF-IMRT) techniques for both DIBH and free breathing methods, respectively. All the plans were optimized to deliver 95% of the prescription dose which was 25.2 Gy to 95% of the PTV volume. The mean dose and standard error of the mean for each OAR, conformity index (CI), and homogeneity index (HI) for the target using the three planning techniques were calculated and compared using Student's t-test for parametric data and Wilcoxon signed-rank test for non-parametric data. The HI and CI of the target was not compromised using the DIBH technique for mediastinal lymphomas. The mean values of CI and HI for both DIBH and FB were comparable. The mean heart doses were reduced by 2.1 Gy, 2.54 Gy, and 2.38 Gy in DIBH compared to FB for the F-VMAT, B-VMAT, and IMRT techniques, respectively. There was a significant reduction in V5Gy, V10Gy, and V15Gy to the heart (p < 0.005) with DIBH. DIBH reduced the mean dose to the total lung by 1.19 Gy, 1.47 Gy, and 1.3 Gy, respectively. Among the 14 female patients, there was a reduction in the mean right breast dose with DIBH compared to FB (4.47 Gy vs. 3.63 Gy, p = 0.004). DIBH results in lower heart, lung, and breast doses than free breathing in mediastinal Hodgkin Lymphoma. Among the different IMRT techniques, FF-IMRT, B-VMAT, and F-VMAT showed similar PTV coverage, with similar conformity and homogeneity indices. However, the time taken for FF-IMRT was much longer than for the F-VMAT and B-VMAT techniques for both breathing methods. B-VMAT and F-VMAT emerged as the optimal planning techniques able to achieve the best target coverage and lower doses to the OARs, with less time required to deliver the prescribed dose.

  • Abstract
  • Cite Count Icon 1
  • 10.1016/j.ejmp.2016.07.670
DIBH technique guided by an optical system in left breast irradiation
  • Aug 26, 2016
  • Physica Medica
  • S Russo + 12 more

DIBH technique guided by an optical system in left breast irradiation

  • Research Article
  • Cite Count Icon 1
  • 10.5603/rpor.96867
Can we predict who will benefit from the deep inspiration breath hold (DIBH) technique for breast cancer irradiation?
  • Aug 10, 2023
  • Reports of Practical Oncology & Radiotherapy
  • Silvia Radwanski Stuart + 4 more

Can we predict who will benefit from the deep inspiration breath hold (DIBH) technique for breast cancer irradiation?

  • Abstract
  • Cite Count Icon 2
  • 10.1016/j.ijrobp.2014.05.849
Evaluation of Cardiac Dose Reduction With Deep Inspiration Breath Hold in Patients With Left-Sided Breast Cancer Receiving Adjuvant Radiation Therapy
  • Sep 1, 2014
  • International Journal of Radiation Oncology*Biology*Physics
  • R Yeung + 5 more

Evaluation of Cardiac Dose Reduction With Deep Inspiration Breath Hold in Patients With Left-Sided Breast Cancer Receiving Adjuvant Radiation Therapy

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  • Research Article
  • Cite Count Icon 28
  • 10.1007/s00066-022-01998-z
Deep inspiration breath-hold radiation therapy in left-sided breast cancer patients: a single-institution retrospective dosimetric analysis of organs at risk doses
  • Sep 8, 2022
  • Strahlentherapie Und Onkologie
  • Jule Wolf + 14 more

BackgroundRadiotherapy can induce cardiac injury in left-sided breast cancer cases. Cardiac-sparing irradiation using the deep inspiration breath-hold (DIBH) technique can achieve substantial dose reduction to vulnerable cardiac substructures compared with free breathing (FB). This study evaluated the dosimetric differences between both techniques at a single institution.MethodsFrom 2017 to 2019, 130 patients with left-sided breast cancer underwent breast-conserving surgery (BCS; n = 121, 93.1%) or mastectomy (ME; n = 9, 6.9%) along with axillary lymph node staging (n = 105, 80.8%), followed by adjuvant irradiation in DIBH technique; adjuvant systemic therapy was included if applicable. 106 (81.5%) patients received conventional and 24 (18.5%) hypofractionated irradiation. Additionally, 12 patients received regional nodal irradiation. Computed tomography (CT) scans in FB and DIBH position were performed for all patients. Intrafractional 3D position monitoring of the patient surface in deep inspiration and breath gating was performed using Sentinel and Catalyst HD 3D surface scanning systems (C-RAD, Catalyst, C‑RAD AB, Uppsala, Sweden). Individual coaching and determination of breathing amplitude during the radiation planning CT was performed. Three-dimensional treatment planning was performed using standard tangential treatment portals (6 or 18 MV). The delineation of cardiac structures and both lungs was done in both the FB and the DIBH scan.ResultsAll dosimetric parameters for cardiac structures were significantly reduced (p < 0.01 for all). The mean heart dose (Dmean) in the DIBH group was 1.3 Gy (range 0.5–3.6) vs. 2.2 Gy (range 0.9–8.8) in the FB group (p < 0.001). The Dmean for the left ventricle (LV) in DIBH was 1.5 Gy (range 0.6–4.5), as compared to 2.8 Gy (1.1–9.5) with FB (p < 0.001). The parameters for LV (V10 Gy, V15 Gy, V20 Gy, V23 Gy, V25 Gy, V30 Gy) were reduced by about 100% (p < 0.001). The LAD Dmean in the DIBH group was 4.1 Gy (range 1.2–33.3) and 14.3 Gy (range 2.4–37.5) in the FB group (p < 0.001). The median values for LAD such as V15 Gy, V20 Gy, V25 Gy, V30 Gy, and V40 Gy decreased by roughly 100% (p < 0.001). An increasing volume of left lung in the DIBH position resulted in dose sparing of cardiac structures.ConclusionFor all ascertained dosimetric parameters, a significant dose reduction could be achieved in DIBH technique.

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