Hardware Exposure After Mandibular Reconstruction: Bone Versus Soft Tissue Free Flap Comparison.
Hardware exposure after microvascular free tissue transfer (MFTT) for mandibular reconstruction is a significant complication. While osteocutaneous MFTTs are the preferred option, some patients require soft tissue-only MFTTs due to medical or anatomic limitations. Data comparing hardware exposure risk between these approaches are limited. This study compares the rate and timing of hardware exposure between osteocutaneous and soft tissue MFTTs. We conducted a retrospective review of patients undergoing MFTT for mandibular defects at a tertiary care center (11/2011-6/2023). Patients with non-mandibular defects or under age 18 were excluded. The primary exposure was flap type (osteocutaneous vs. soft tissue). The primary outcome was time to hardware exposure; the secondary outcome was exposure rate at defined follow-up intervals. One hundred and seventy-eight patients met inclusion criteria. At 1 year, hardware exposure occurred in 5.2% of osteocutaneous and 8.7% of soft tissue MFTT patients. At 3 years, exposure increased to 14.2% and 17.4%, respectively. After adjustment, there was no significant difference in time to hardware exposure between flap types at 1 year [HR 1.69 (95% CI 0.34-8.37), p = 0.520] or 3 years [HR 1.69 (95% CI 0.59-4.43), p = 0.346]. Adjuvant radiation and/or chemoradiation was associated with increased hazard of hardware exposure at 1 year [HR 7.72 (95% CI 0.97-61.4), p = 0.053] and at 3 years [HR 3.68 (95% CI 1.38-9.78), p = 0.009]. Flap type was not associated with differences in hardware exposure timing, but adjuvant therapy significantly increased exposure risk. Exposure rates rose by ~10% from 1 to 3 years postoperatively.
- Research Article
3
- 10.1002/hed.27728
- Mar 6, 2024
- Head & neck
Complications following head and neck microvascular free tissue transfer (MFTT) are common. Less is known about when they occur. Retrospective study of patients with primary or recurrent head and neck cancer undergoing MFTT reconstruction at a tertiary care institution. MFTT reconstructions with inpatient postoperative complications were included. The Kruskal-Wallis test was used to compare median postoperative day (POD) onset of complication by flap type. Of 1090 patients undergoing MFTT reconstruction, 126 (11.6%) patients experienced inpatient complications including fibula (n = 35), anterolateral thigh (n = 60), or radial forearm (n = 31) MFTTs. POD onset was shortest for surgical site hematoma (median = 1 [IQR 1-5]), and longest for donor site infection (median = 11.5 [IQR 8-15]). There was no significant difference between flap types and POD onset of complications (p > 0.05). Hematoma formation and flap failure occur earliest during hospitalization, while dehiscence, infection, and fistula occur later. There is no difference in complication timing between flap types.
- Research Article
5
- 10.1177/2473974x211070258
- Jan 1, 2022
- OTO Open
ObjectivesOsseous microvascular free tissue transfer (MFTT) is the gold standard for reconstruction for most segmental mandibulectomy defects. The most common osseous MFTT utilized in reconstruction is the fibular, scapular, and osteocutaneous radial forearm (OCRF) free flap. We evaluated postoperative bone union as well as clinical complications following MFTT and the impact of various patient and reconstructive characteristics, including type of osseous MFTT.Study DesignRetrospective cohort study.SettingTertiary care academic hospital.MethodsThis study examined patients who underwent osseous MFTT for mandibular defects from January 2017 to January 2019.ResultsAn overall 144 osteotomies in 58 patients were evaluated. Of the 144 junctions, 28 (19.4%) showed radiographic nonunion. Patients who underwent preoperative (odds ratio [OR] = 0.30, P = .027) and postoperative (OR = 0.28, P = .003) radiation had a significantly lower bone union score. Time from surgery to postoperative imaging was associated with higher bone union scores (OR = 1.07, P = .024). When bone union scores were compared among types of MFTT, fibular (OR = 5.62, P = .008) and scapular (OR = 4.69, P = .043) MFTT had significantly higher scores than OCRF MFTT. Twelve (20.7%) patients had postoperative complications. There was no statistically significant correlation between clinical complications and various variables, including type of osseous MFTT.ConclusionPre- and postoperative radiation and time from surgery have an impact on bone union. Regarding the type of MFTT, fibular and scapular MFTT appeared to have higher bone union when compared with OCRF. There was no impact of bone union or type of osseous MFTT on clinical complications.
- Research Article
17
- 10.1002/jso.24321
- Aug 22, 2016
- Journal of Surgical Oncology
Osteoradionecrosis may develop on the residual mandible or reconstructed fibula because of inadequate soft tissue coverage and compromised tissue perfusion post mandibular reconstruction, and radiation. This study was to investigate the incidence of osteoradionecrosis following class III mandibular defect reconstructions with an OPAC flap versus a fibula OSC flap. A retrospective review of a consecutive series of mandibular reconstructions between 1999 and 2010 was performed. Mandibular defects and corresponding flap types were analyzed with emphasis on outcome, complications, and rates of osteoradionecrosis among the two subgroups. A total of 121 fibula flaps were performed, consisting of 53 OPAC and 68 fibula OSC flaps. Complications trended higher for OPAC flaps in partial and total flap loss rates as well as venous congestion when compared with the OSC flap cohort. The OPAC group had statistically significant lower rates of osteoradionecrosis and plate exposure than the OSC group (P = 0.04). The OPAC flap may be preferable to fibula OSC flap in mandibular reconstruction given its lower rates of osteoradionecrosis and plate exposure. This flap type may be the flap of choice for class III defects where additional vascularized tissue may be critical for addressing significant soft tissue deficiency. J. Surg. Oncol. 2016;114:399-404. © 2016 Wiley Periodicals, Inc.
- Research Article
- 10.14228/jprjournal.v12i1.362
- Feb 15, 2025
- Jurnal Plastik Rekonstruksi
Background: Over the past years, microvascular free tissue transfer has become increasingly popular in the field of plastic surgery. Our center has also been actively performing these complex surgeries for extensive defect closure. In this study spanning five years, our objective is to examine the challenges commonly encountered in free flap reconstruction and identify factors that contribute to the failure of such flaps, with the ultimate goal of enhancing our learning curve.Methods: This article presents a retrospective analysis of all patients who underwent microvascular free tissue transfer procedures performed by a single surgeon (PA) and teams of Plastic Reconstructive and Aesthetic Surgery residents from 2014 to 2018. Multivariate analysis was conducted to identify the factors associated with free flap failure.Results: Between 2014 and 2018, a total of 203 microvascular free tissue transfers were performed to reconstruct defects at various anatomical sites. The overall viable flap rate for microvascular free flap reconstructions, irrespective of the indication or anatomical location, was found to be 90.6%. The type of flap, whether it was a perforator or non-perforator flap, emerged as the main significant factor influencing free flap viability.Conclusion: Microvascular free tissue transfer represents an excellent reconstructive option for addressing large defects requiring extensive or composite flaps. By acknowledging the factors contributing to free flap failure, we can optimize outcomes and provide the best possible results for our patients.
- Research Article
2
- 10.1177/00034894241250177
- Apr 27, 2024
- The Annals of otology, rhinology, and laryngology
This study aims to evaluate the factors most associated with early and late complications following microvascular free tissue transfer (MVFTT) after mandibulectomy. A retrospective review of patients undergoing MVFTT after segmental mandibulectomy from September 2016 to February 2021 was performed across a single academic institution. Surgical variables were collected, including the location of the resultant mandibular defect (anterior vs posterior) and flap type (osseous or non-osseous). The primary outcome variables included postoperative complications (early, <90 days; and late, >90 days) and the patients' functional status (return to oral intake). Descriptive statistics, chi-square test, Fischer's exact test, and 2-sample t tests were used to analyze differences among variables. We analyzed a cohort of 114 consecutive patients with mandibular defects, comprising 57 anterior and 57 posterior defects. Bony free flaps with hardware were used to reconstruct 98% of anterior defects compared to 58% of posterior defects (P < .001). All soft tissue only flaps did not utilize any hardware during the reconstruction. Anterior defects demonstrated more late complications requiring additional surgery (30% vs 9%, P = .04). A secondary analysis of posterior mandibular reconstructions compared soft tissue only flaps and bony free flaps with hardware and showed equivalent rates of early (12% vs 13%, P > .99) and late (9% vs 8%, P > .99) complications requiring additional surgery while demonstrating a similar return to full oral competence (55% vs 46%, P = .52) and recovery of a 100% oral diet (67% vs 54%, P = .53). Osseous free tissue transfer for segmental mandibular defects remains the gold standard in reconstruction. In our patient cohort, anterior mandibular defects are associated with greater late (>90 day) complications requiring additional surgery. Comparable outcomes may be achieved with soft tissue only versus osseous free flap reconstruction of posterior mandibular defects.
- Research Article
19
- 10.1097/scs.0000000000005320
- May 1, 2019
- Journal of Craniofacial Surgery
Hemifacial microsomia is the most common congenital disorder of the face after cleft lip and palate. While treatment of the bony abnormalities has been well documented, less attention has been paid to correction of the soft tissue deformity. This study aimed to systematically review the literature addressing the techniques utilized to correct the soft tissue deformity in hemifacial microsomia. A comprehensive review of peer-reviewed literature regarding the management of soft tissue reconstruction in patients with hemifacial microsomia was performed according to the Preferred Reporting Items for Systematic Reviews and Meta-analyses statement. Odds ratio was used to assess differences in complication rates between reconstructions performed with free tissue transfer and fat grafting. The literature search yielded 38 articles that were fully reviewed for data extraction. Articles were grouped into one of 5 reconstructive modalities-pedicled flap, microvascular free tissue transfer, structural fat grafting, alloplastic implant, and functional reconstruction. Microvascular free tissue transfer had a complication rate of 27.1%, while structural fat grafting had a complication rate of 4.2% (odds ratio 6.7, P = 0.0003). Microvascular free tissue transfer likely provides greater volume than fat grafting at the cost of a higher complication rate. Mild to moderate soft tissue deformity can be corrected with serial fat grafting. However, severe soft tissue deformity is better corrected with microvascular free tissue transfer. When performing free tissue transfer, one should be prepared for recipient vessel anomalies. To provide adequate augmentation with isolated fat grafting, multiple sessions are likely required.
- Research Article
13
- 10.1002/lary.24681
- May 2, 2014
- The Laryngoscope
To assess the feasibility of microvascular free tissue transfer in the multiply irradiated patient. Retrospective cohort analysis of 48 patients in a tertiary care, private practice setting. Inclusion criteria were defined as patients who received multiple courses of radiation and underwent subsequent free tissue reconstruction to manage treatment-related complications (n = 24) or defects following additional oncologic surgery (n = 24). The main outcome measures included total and partial flap necrosis, hardware exposure, and pharyngocutaneous fistula. The minimum follow-up was 6 months. One case of total flap failure, two cases of partial skin paddle necrosis, one case of poor wound healing of the surrounding tissue to the flap, six cases of hardware exposure, 11 cases of fistula with eight requiring operative intervention, three cases requiring and additional free flap to supplement reconstruction, and one stroke. Microvascular free tissue transfer to the head and neck is expected to provide a successful reconstruction in patients who have received multiple courses of radiation and who develop second primary tumors, recurrence of disease, or who suffer from late complications of their radiation therapy.
- Research Article
- 10.21608/ejsur.2004.373751
- Jul 1, 2004
- The Egyptian Journal of Surgery
Introduction and aim of the work: In the last 20 years, microvascular free tissue transfer has been established, worldwide, as the method of choice in reconstructing oral and oropharyngeal defects. In this study we present our experience in using microvascular free flaps in oral and oropharyngeal cavity and outline the different flaps used. This is to evaluate the success and complications rates and the functional outcome. Material and methods: This is a prospective study, included patients who had underwent immediate free tissue transfer for reconstruction of defects following resection of locally advanced oral and oropharyngeal cancer and treated at Sohag University and Kasr El-Ainy Hospitals, in the period from March 2002 to October 2003. The following data had been registered: surgical procedure; type of flap used for reconstruction; success rate; and local complications. Functional outcome was evaluated 6 months postoperatively. Results: A total of 19 patients with age range from 35-72 years were included in this study. Free flaps used for reconstruction included: 13 free radial forearm flap; 2 free latismus dorsi flap; 3 free fibula flap; and 1 vascularised iliac crest flap. Flaps were successful in 17 cases , one totally lost and one was partially lost. 2 cases developed Orocutaneous fistula, 2 cases developed wound sepsis and wound dehiscence occurred in one case. Functional outcome assessment revealed good or acceptable results in most of the domains used for evaluation. Conclusions: These findings suggested that microvascular free tissue transfer is the optimum method of reconstructing major defects after extirpation of locally advanced oral cancer. Apart from providing a good bulk of tissues for closure of the defect, but also, helps in minimising the complications of such major surgery, and improving the functional and aesthetic outcome.
- Research Article
50
- 10.1097/scs.0b013e31820f3730
- May 1, 2011
- Journal of Craniofacial Surgery
Defects of the scalp and lateral temporal bone (LTB) represent a unique challenge to the reconstructive surgeon. Simple reconstructive methods such as skin grafts, locoregional flaps, or tissue expanders are often not feasible owing to a myriad of reasons. Vascularized free tissue transfer coverage offers distinct advantages in managing these defects. A retrospective case series was performed on all patients at the University of Washington Medical Center who had scalp or LTB defects reconstructed with free tissue transfer from May 1996 to July 2009. Cases were analyzed for defect characteristics, flap type, vessel selection, radiation status, dural exposure, complications, and outcomes. A total of 68 free flap reconstructions were performed in 65 patients with scalp or LTB defects. A total of 22 resections included craniotomy, and 48 patients had preoperative or postoperative radiation. Defects ranged from 6 to 836 cm(2). All flaps (46 latissimus, 11 rectus, 4 radial forearm, 6 anterolateral thigh, and 1 omental) were transferred successfully. Vein grafts were required in 5 cases. Complications included delayed flap failure requiring secondary reconstruction, neck hematoma, venous thrombosis, skull base infection, large wound dehiscence, small wound dehiscence, donor site hematoma and seroma, and cerebrospinal fluid leak. Cosmetic results were consistent and durable. Microvascular free tissue transfer is a safe and reliable method of reconstructing scalp and LTB defects while offering favorable cosmetic results. We favor the use of latissimus muscle-only flap with skin graft coverage for large scalp defects and rectus or anterolateral thigh free flaps for lateral temporal bone defects.
- Research Article
48
- 10.1016/j.bjps.2007.03.029
- May 23, 2007
- Journal of Plastic, Reconstructive & Aesthetic Surgery
Microvascular free tissue transfer in reconstruction of the lower limb
- Research Article
44
- 10.1055/s-0031-1286119
- Dec 1, 2011
- Craniomaxillofacial Trauma & Reconstruction
Defects of the scalp and lateral temporal bone (LTB) represent a unique challenge to the reconstructive surgeon. Simple reconstructive methods such as skin grafts, locoregional flaps, or tissue expanders are often not feasible due to a myriad of reasons. Vascularized free tissue transfer coverage offers distinct advantages in managing these defects. A retrospective case series was performed on all patients at the University of Washington Medical Center who had scalp or LTB defects reconstructed with free tissue transfer from May 1996 to July 2009. Cases were analyzed for defect characteristics, flap type, vessel selection, radiation status, dural exposure, complications, and outcomes. Sixty-eight free flaps were performed in 65 patients with scalp or LTB defects. Twenty-two resections included craniotomy, and 48 patients had pre- or postoperative radiation. Defects ranged from 6 to 836 cm(2). All flaps (46 latissimus, 11 rectus, 4 radial forearm, 6 anterolateral thigh, and 1 omental) were transferred successfully. Vein grafts were required in five cases. Complications included delayed flap failure requiring secondary reconstruction, neck hematoma, venous thrombosis, skull base infection, large wound dehiscence, small wound dehiscence, donor site hematoma and seroma, and cerebrospinal fluid leak. Cosmetic results were consistent and durable. Microvascular free tissue transfer is a safe, reliable method of reconstructing scalp and LTB defects and offers favorable cosmetic results. We favor the use of latissimus muscle-only flap with skin graft coverage for large scalp defects and rectus or anterolateral thigh free flaps for lateral temporal bone defects.
- Research Article
52
- 10.1001/jamaoto.2021.1563
- Jul 22, 2021
- JAMA Otolaryngology–Head & Neck Surgery
Aesthetic outcomes are key determinants of psychosocial functioning among surgically treated patients with head and neck cancer (HNC); however, long-term aesthetic outcomes after microvascular free tissue transfer (MFTT) are not well described. To examine risk factors for impaired long-term aesthetic satisfaction and appearance-related psychosocial functioning after HNC ablation with MFTT. A cross-sectional, web-based survey was conducted at an academic tertiary care center. A total of 228 individuals who underwent MFTT between January 1, 2015, and December 31, 2019, for treatment of HNC were included. The study was conducted from November 1, 2020, through January 15, 2021. Head and neck cancer ablation with MFTT. Patient-reported outcomes were assessed via Aesthetic FACE-Q scales. The primary objective was aesthetic satisfaction determined by the Satisfaction With Facial Appearance scale. Secondarily, the Appearance-Related Psychosocial Distress, Psychological Function, and Social Function scales were used to assess appearance-related psychosocial functioning. Patients were stratified by demographic, disease, surgical, and postoperative characteristics. Survey scores on a 100-point scale were compared and subjected to univariable and multivariable linear regression. A total of 124 of 228 patients (54.4%) completed surveys a median of 34.4 months after MFTT (interquartile range, 22.6-48.8). Most responders (79 [63.7%]) were men with advanced cancer of the oral cavity or skin, reconstructed with anterolateral thigh or osteocutaneous fibula free flaps. Nonresponders had no significant differences in baseline characteristics. The Satisfaction With Facial Appearance score was independently lower among patients who received osteocutaneous flaps (regression coefficient, -10.6 points, 95% CI, -20.4 to -0.8 points) and/or adjuvant (chemo)radiotherapy (regression coefficient, -6.9 points; 95% CI, -13.8 to -0.1 points). Impaired appearance-related psychosocial functioning was independently associated with female sex, a history of anxiety or depression, osteocutaneous flaps, prolonged tube feeding requirements, and any recurrent or persistent disease. After adjustment for covariates, each 1-point increase in the Satisfaction With Facial Appearance score independently estimated improved appearance-related psychosocial functioning as determined by the Appearance-Related Psychosocial Distress scale (regression coefficient, -0.5 points; 95% CI, -0.7 to -0.4 points), Psychological Function scale (regression coefficient, 0.4 points; 95% CI, 0.3 to 0.5 points), and Social Function scale (regression coefficient, 0.4 points; 95% CI, 0.3 to 0.6 points). The findings of this cross-sectional, web-based survey study suggest that osteocutaneous reconstruction and adjuvant therapy independently increase the risk of poor patient-reported long-term aesthetic satisfaction, which correlated with impaired appearance-related psychosocial functioning. Aesthetic outcomes appear to be a priority to address in patients with HNC undergoing MFTT.
- Research Article
10
- 10.1016/j.joms.2022.10.015
- Nov 1, 2022
- Journal of Oral and Maxillofacial Surgery
Supplemental Regional Block Anesthesia Reduces Opioid Utilization Following Free Flap Reconstruction of the Oral Cavity: A Prospective, Randomized Clinical Trial
- Research Article
- 10.18060/27787
- Jan 11, 2024
- Proceedings of IMPRS
Background and Hypothesis:Mandibulectomy is often required in the management of tumors, infection, or trauma of the head and neck. Reconstruction of the defect is accomplished via osteocutaneous free flaps and the use of titanium plates for fixation of the bone segments. Postoperative exposure of the mandibular hardware is an unfortunate outcome which results in significant quality of life detriment and often requires substantial revision surgery and reconstruction. We hypothesize that individuals with vasculopathic conditions and other circumstances that contribute to poor wound healing are more likely to experience hardware plate exposure following mandibular reconstruction. Methods:A single-institution, retrospective cohort study was performed on all adults undergoing mandibulectomy and osteocutaneous free flap reconstruction from 2010-2020. Demographics, patient history, surgical parameters, and follow-up data were collected. Comparisons and logistic regression were used to determine factors associated with postoperative hardware exposure. Results:The cohort consisted of 134 predominantly white (92.5%) male (65.7%) patients with mean age 58.4±13.0 years, 32 (23.9%) of whom had postoperative plate exposure. Between patients with and without exposure, there were no differences observed in demographics, substance use, surgical indications, or reconstructive techniques, neoadjuvant or adjuvant chemoradiation, nor 30-day major surgical site infection. The comorbidities of peripheral vascular disease, hypothyroidism, and immunosuppression were significantly more common in the plate exposure group. In multivariate logistic regression, peripheral vascular disease (OR [95%CI] = 18.8 [1.8-196.3]), hypothyroidism (OR [95%CI] – 3.5 [1.1-10.6]), and immunosuppression (OR [95%CI] =11.3 [2.4-54.1]) remained significant predictors of post-mandibulectomy hardware exposure. Conclusion and Potential Impact:Patients with pre-existing peripheral vascular disease, hypothyroidism, and/or immunosuppression have an increased risk of post-mandibulectomy hardware exposure. Understanding these risk factors can improve shared patient-surgeon decision making and counseling, as well as guide practitioners to focus on mitigating these comorbidities prior to surgery.
- Research Article
4
- 10.3390/ani13111755
- May 25, 2023
- Animals : an Open Access Journal from MDPI
Simple SummaryThe muscular adaptations that facilitate the differing biomechanical functions of the leading (Ld) and trailing (Tr) limbs during canter in horses remains largely unknown. We conducted the first comparative study of muscle activation and movement within the leading and trailing fore- (F) and hindlimbs (H) during overground canter. Surface electromyography and three-dimensional motion capture data were collected from the right fore- and hindlimbs, as well as the splenius muscle, of ten horses ridden in left- and right-lead canter, when the limbs functioned as TrF/TrH and LdF/LdH, respectively. The TrH is first to make ground contact and exhibited significantly greater gluteal activation than LdH to stabilize the more extended hip joint and to generate greater limb retraction and a strong forward push-off during stance. Then, during TrF and LdH diagonal support, bilateral splenius activation occurred, possibly to counteract downward head and neck movement. The LdF was the last to make contact and was more protracted than the TrF through greater elbow flexion during swing, but triceps activity did not significantly differ between forelimbs. Inter-limb differences in movement and muscle activity provide an objective justification for working the horse equally on both canter leads to promote balanced muscular development.This study compared muscle activity and movement between the leading (Ld) and trailing (Tr) fore- (F) and hindlimbs (H) of horses cantering overground. Three-dimensional kinematic and surface electromyography (sEMG) data were collected from right triceps brachii, biceps femoris, middle gluteal, and splenius from 10 ridden horses during straight left- and right-lead canter. Statistical parametric mapping evaluated between-limb (LdF vs. TrF, LdH vs. TrH) differences in time- and amplitude-normalized sEMG and joint angle–time waveforms over the stride. Linear mixed models evaluated between-limb differences in discrete sEMG activation timings, average rectified values (ARV), and spatio-temporal kinematics. Significantly greater gluteal ARV and activity duration facilitated greater limb retraction, hip extension, and stifle flexion (p < 0.05) in the TrH during stance. Earlier splenius activation during the LdF movement cycle (p < 0.05), reflected bilateral activation during TrF/LdH diagonal stance, contributing to body pitching mechanisms in canter. Limb muscles were generally quiescent during swing, where significantly greater LdF/H protraction was observed through greater elbow and hip flexion (p < 0.05), respectively. Alterations in muscle activation facilitate different timing and movement cycles of the leading and trailing limbs, which justifies equal training on both canter leads to develop symmetry in muscular strength, enhance athletic performance, and mitigate overuse injury risks.