PDF
Abstract
Despite advancements in research and technology, breast cancer remains the second leading cause of cancer-related mortality affecting women worldwide. Radiation therapy is a widely recommended adjunct to surgery due to its significant role in reducing loco-regional recurrence. Its use, however, is not without consequences. Radiation triggers a series of pathophysiologic events leading to tissue injury; reactive oxygen species incites (1) vascular damage and chronic hypoxia; (2) an inflammatory response; and (3) activation of myofibroblasts to induce fibrosis. As a result, radiotherapy interferes with wound healing and negatively impacts the quality of the skin. These pathophysiologic consequences complicate the sequence of breast reconstruction and require surgeons to consider timing and the type of reconstruction (autologous vs. implant), with respect to radiotherapy to improve patient outcomes. In this article, we briefly review radiation-induced tissue effects and their impact on breast reconstruction. More specifically, we comment on the traditional use of autologous tissue, microsurgical technical pearls for irradiated fields, reconstructive timing paradigms, and lymphedema prevention. With continued progress, derivation, and innovation, plastic and reconstructive surgery has consistently advanced and revolutionized both medicine and surgery. This review considers the future implications of breast reconstruction and how it will impact patients, healthcare, and the field. While not an exhaustive review, we aim to provide a comprehensive discussion and insights. In summary, the authors discuss the possibilities of a paradigm shift in breast reconstruction, emphasizing the need for surgeons to have an armamentarium capable of all breast reconstruction options for the best possible patient outcomes.
Keywords
Breast reconstruction
/
autologous reconstruction
/
radiation
/
radiated field
/
radiotherapy
Cite this article
Download citation ▾
Jane N. Ewing, Zachary Gala, Mehdi S. Lemdani, Stephen J. Kovach III, Said C. Azoury.
The radiated breast and autologous reconstruction: benefits and alternatives.
Plastic and Aesthetic Research, 2024, 11(1): 22 DOI:10.20517/2347-9264.2024.11
| [1] |
Alkabban FM. Breast cancer. Available from: https://www.ncbi.nlm.nih.gov/books/NBK482286/ [Last accessed on 21 Jun 2024]
|
| [2] |
Bertozzi N,Santi PL.Oncoplastic breast surgery: comprehensive review.Eur Rev Med Pharmacol Sci2017;21:2572-85.
|
| [3] |
Castaneda SA.Updates in the treatment of breast cancer with radiotherapy.Surg Oncol Clin N Am2017;26:371-82
|
| [4] |
Classen J,Wallwiener D.Fibrotic changes after postmastectomy radiotherapy and reconstructive surgery in breast cancer. A retrospective analysis in 109 patients.Strahlenther Onkol2010;186:630-6
|
| [5] |
Supakalin N,Thamronganantasakul K,Supaadirek C.Comparision of different radiotherapy planning techniques for breast cancer after breast conserving surgery.Asian Pac J Cancer Prev2018;19:2929-34 PMCID:PMC6291061
|
| [6] |
Kim CS. Radiation therapy for early-stage breast cancer. Available from: https://www.ncbi.nlm.nih.gov/books/NBK459174/ [Last accessed on 21 Jun 2024]
|
| [7] |
Najafi M,Shirazi A.Mechanisms of inflammatory responses to radiation and normal tissues toxicity: clinical implications.Int J Radiat Biol2018;94:335-56
|
| [8] |
Nepon H,Reece EM,Vorstenbosch J.Radiation-induced tissue damage: clinical consequences and current treatment options.Semin Plast Surg2021;35:181-8 PMCID:PMC8432995
|
| [9] |
Straub JM,Hamilton CD,Shnayder Y.Radiation-induced fibrosis: mechanisms and implications for therapy.J Cancer Res Clin Oncol2015;141:1985-94 PMCID:PMC4573901
|
| [10] |
Wang B,Meng L.Advances in pathogenic mechanisms and management of radiation-induced fibrosis.Biomed Pharmacother2020;121:109560
|
| [11] |
Yarnold J.Pathogenetic mechanisms in radiation fibrosis.Radiother Oncol2010;97:149-61
|
| [12] |
Hymes SR,Fife C.Radiation dermatitis: clinical presentation, pathophysiology, and treatment 2006.J Am Acad Dermatol2006;54:28-46
|
| [13] |
Mendelsohn FA,Reis ED.Wound care after radiation therapy.Adv Skin Wound Care2002;15:216-24
|
| [14] |
Ho AY,Ohri N.Bilateral implant reconstruction does not affect the quality of postmastectomy radiation therapy.Med Dosim2014;39:18-22
|
| [15] |
Clemens MW.Current perspectives on radiation therapy in autologous and prosthetic breast reconstruction.Gland Surg2015;4:222-31 PMCID:PMC4461707
|
| [16] |
Javaid M,Leinster S,James NK.Radiation effects on the cosmetic outcomes of immediate and delayed autologous breast reconstruction: an argument about timing.J Plast Reconstr Aesthet Surg2006;59:16-26
|
| [17] |
See MS.Radiation therapy and immediate breast reconstruction: novel approaches and evidence base for radiation effects on the reconstructed breast.Clin Plast Surg2018;45:13-24
|
| [18] |
Ho AL,Macadam SA,Giang J.Postmastectomy radiation therapy after immediate two-stage tissue expander/implant breast reconstruction: a University of British Columbia perspective.Plast Reconstr Surg2014;134:1e-10e
|
| [19] |
Tallet AV,Moutardier V.Radiotherapy and immediate two-stage breast reconstruction with a tissue expander and implant: complications and esthetic results.Int J Radiat Oncol Biol Phys2003;57:136-42
|
| [20] |
Krueger EA,Strawderman M.Complications and patient satisfaction following expander/implant breast reconstruction with and without radiotherapy.Int J Radiat Oncol Biol Phys2001;49:713-21
|
| [21] |
Rogers NE.Radiation effects on breast reconstruction with the deep inferior epigastric perforator flap.Plast Reconstr Surg2002;109:1919-24; discussion 1925
|
| [22] |
Spear SL,Low M.The effect of radiation on pedicled TRAM flap breast reconstruction: outcomes and implications.Plast Reconstr Surg2005;115:84-95
|
| [23] |
Berbers J,Houben R.'Reconstruction: before or after postmastectomy radiotherapy?' ? A systematic review of the literature.Eur J Cancer2014;50:2752-62
|
| [24] |
Whitfield GA,Irwin MS,Wishart GC.Incidence of severe capsular contracture following implant-based immediate breast reconstruction with or without postoperative chest wall radiotherapy using 40 Gray in 15 fractions.Radiother Oncol2009;90:141-7
|
| [25] |
Cordeiro PG,Heerdt A.Immediate tissue expander/implast breast reconstruction after salvage mastectomy for cancer recurrence following lumpectomy/irradiation.Plast Reconstr Surg2012;129:341-50
|
| [26] |
Ricci JA,Momoh AO,Singhal D.A meta-analysis of implant-based breast reconstruction and timing of adjuvant radiation therapy.J Surg Res2017;218:108-16
|
| [27] |
Agrawal A.Oncoplastic breast surgery and radiotherapy-adverse aesthetic outcomes, proposed classification of aesthetic components, and causality attribution.Breast J2019;25:207-18
|
| [28] |
Barnett GC,Dunning AM.Normal tissue reactions to radiotherapy: towards tailoring treatment dose by genotype.Nat Rev Cancer2009;9:134-42 PMCID:PMC2670578
|
| [29] |
Tachi M.Choice of flaps for breast reconstruction.Int J Clin Oncol2005;10:289-97
|
| [30] |
Fracol ME,Nelson JA.Bilateral free flap breast reconstruction after unilateral radiation: comparing intraoperative vascular complications and postoperative outcomes in radiated versus nonradiated breasts.Ann Plast Surg2016;76:311-4
|
| [31] |
El-Sabawi B,Carey JN,Patel KM.Breast reconstruction and adjuvant therapy: a systematic review of surgical outcomes.J Surg Oncol2015;112:458-64
|
| [32] |
Tsoi B,Thoma A,O'Reilly D.Safety of tissue expander/implant versus autologous abdominal tissue breast reconstruction in postmastectomy breast cancer patients: a systematic review and meta-analysis.Plast Reconstr Surg2014;133:234-49
|
| [33] |
Saksornchai K,Rongkavilit S.Impact of radiation on immediate breast reconstruction: a retrospective single institution cohort study.Gland Surg2023;12:1050-9 PMCID:PMC10493629
|
| [34] |
Kronowitz SJ.Delayed-immediate breast reconstruction: technical and timing considerations.Plast Reconstr Surg2010;125:463-74
|
| [35] |
Coriddi M,Kenworthy E.Autologous breast reconstruction after failed implant-based reconstruction: evaluation of surgical and patient-reported outcomes and quality of life.Plast Reconstr Surg2019;143:373-9 PMCID:PMC6352728
|
| [36] |
Antony AK.An algorithmic approach to prepectoral direct-to-implant breast reconstruction: version 2.0.Plast Reconstr Surg2019;143:1311-9
|
| [37] |
Sigalove S,Sigalove NM.Prepectoral implant-based breast reconstruction and postmastectomy radiotherapy: short-term outcomes.Plast Reconstr Surg Glob Open2017;5:e1631 PMCID:PMC5889451
|
| [38] |
Elswick SM,Bishop SN.Prepectoral implant-based breast reconstruction with postmastectomy radiation therapy.Plast Reconstr Surg2018;142:1-12
|
| [39] |
Turner A,Davis MJ,Hanson SE.Fat grafting in breast reconstruction.Semin Plast Surg2020;34:17-23 PMCID:PMC7023975
|
| [40] |
Kolasinski J.Total breast reconstruction with fat grafting combined with internal tissue expansion.Plast Reconstr Surg Glob Open2019;7:e2009 PMCID:PMC6554159
|
| [41] |
Borrelli MR,Sokol J.Fat chance: the rejuvenation of irradiated skin.Plast Reconstr Surg Glob Open2019;7:e2092 PMCID:PMC6416118
|
| [42] |
Serra-Renom JM,Serra-Mestre JM.Fat grafting in postmastectomy breast reconstruction with expanders and prostheses in patients who have received radiotherapy: formation of new subcutaneous tissue.Plast Reconstr Surg2010;125:12-8
|
| [43] |
Sood R,Konopka G.Latissimus dorsi flap in breast reconstruction: recent innovations in the workhorse flap.Cancer Control2018;25:1073274817744638 PMCID:PMC5933575
|
| [44] |
Jeong EC,Eo SR.Vascular augmentation in renal transplantation: supercharging and turbocharging.Arch Plast Surg2017;44:238-42 PMCID:PMC5447535
|
| [45] |
Bachleitner K,Amr A.Autologous unilateral breast reconstruction with venous supercharged imap-flaps: a step by step guide of the split breast technique.J Clin Med2020;9:3030 PMCID:PMC7563292
|
| [46] |
Huang TC.One-vein vs. two-vein anastomoses utilizing the retrograde limb of the internal mammary vein as supercharge recipient vessel in free DIEP flap breast reconstruction: a meta-analysis of comparative studies.J Plast Reconstr Aesthet Surg2020;73:184-99
|
| [47] |
El-Mrakby HH,McLean NR.Supercharged pedicled TRAM flap in breast reconstruction: is it a worthwhile procedure.Ann Plast Surg2002;49:252-7
|
| [48] |
Kroll SS.Bilateral breast reconstruction in very thin patients with extended free TRAM flaps.Br J Plast Surg1998;51:535-7
|
| [49] |
Le ELH,Constantine R.Extended venous thromboembolism chemoprophylaxis following microsurgical breast reconstruction: analysis of trends in postoperative anticoagulation.Plast Reconstr Surg2023;152:20-7
|
| [50] |
Ballestín A. Basic and advanced microvascular anastomotic techniques. In: Nikkhah D, Rawlins J, Pafitanis G, eds. Core techniques in flap reconstructive microsurgery: A stepwise guide. Springer International Publishing; 2023:11-18.
|
| [51] |
Jakobsson S,Edsander Nord Å,Halle M.Free flap surgery outcome related to antithrombotic treatment regime: an analysis of 1000 cases.Plast Reconstr Surg Glob Open2021;9:e3961 PMCID:PMC8647881
|
| [52] |
Lee CC,Lorenz FJ,Johnson TS.Use of thromboprophylaxis after autologous breast reconstruction: a cost-effective break-even analysis.Plast Reconstr Surg2023;Online ahead of print.
|
| [53] |
Ambani SW,Varelas LJ.Standard fixed enoxaparin dosing for venous thromboembolism prophylaxis leads to low peak anti-factor Xa levels in both head and neck and breast free flap patients.J Reconstr Microsurg2022;38:749-56
|
| [54] |
Tuaño KR,Fisher MH.Venous thromboembolism after deep inferior epigastric perforator flap breast reconstruction: review of outcomes after a postoperative prophylaxis protocol.Plast Reconstr Surg2023;
|
| [55] |
Muto M,Masuda Y.Absent Internal mammary recipient vein in autologous breast reconstruction.Plast Reconstr Surg Glob Open2020;8:e2660 PMCID:PMC7159964
|
| [56] |
Feng LJ.Recipient vessels in free-flap breast reconstruction: a study of the internal mammary and thoracodorsal vessels.Plast Reconstr Surg1997;99:405-16
|
| [57] |
Moran SL,Behnam AB.An outcome analysis comparing the thoracodorsal and internal mammary vessels as recipient sites for microvascular breast reconstruction: a prospective study of 100 patients.Plast Reconstr Surg2003;111:1876-82
|
| [58] |
Casey WJ 3rd,Smith AA,Buchel EW.The cephalic and external jugular veins: important alternative recipient vessels in left-sided microvascular breast reconstruction.Microsurgery2007;27:465-9
|
| [59] |
Barnett GR,Gianoutsos MP.The cephalic vein: an aid in free TRAM flap breast reconstruction. Report of 12 cases.Plast Reconstr Surg1996;97:71-6; discussion 77
|
| [60] |
Mehrara BJ,Smith A.Alternative venous outflow vessels in microvascular breast reconstruction.Plast Reconstr Surg2003;112:448-55
|
| [61] |
Ragaz J,Spinelli JJ.Locoregional radiation therapy in patients with high-risk breast cancer receiving adjuvant chemotherapy: 20-year results of the British Columbia randomized trial.J Natl Cancer Inst2005;97:116-26
|
| [62] |
Ayoub Z,Ovalle V.A 10-year experience with mastectomy and tissue expander placement to facilitate subsequent radiation and reconstruction.Ann Surg Oncol2017;24:2965-71
|
| [63] |
Fertsch S,Hagouan M.Immediate-DElayed AutoLogous (IDEAL) breast reconstruction with the DIEP flap.Chirurgia2017;112:387-93
|
| [64] |
Marquez JL,Kuo K.A comparison of postoperative outcomes between immediate, delayed immediate, and delayed autologous free flap breast reconstruction: analysis of 2010-2020 NSQIP data.J Reconstr Microsurg2023;39:664-70
|
| [65] |
Cuffolo G,Windle R,Dunne N.Delayed-immediate breast reconstruction: An assessment of complications and outcomes in the context of anticipated post-mastectomy radiotherapy.J Plast Reconstr Aesthet Surg2023;77:319-27
|
| [66] |
Carlson GW,Peters K,Schaefer T.Effects of radiation therapy on pedicled transverse rectus abdominis myocutaneous flap breast reconstruction.Ann Plast Surg2008;60:568-72
|
| [67] |
Koesters EC.Radiation and free flaps: what is the optimal timing?.Gland Surg2023;12:1122-30 PMCID:PMC10493623
|
| [68] |
Kronowitz SJ,Kuerer HM.Delayed-immediate breast reconstruction.Plast Reconstr Surg2004;113:1617-28
|
| [69] |
Bazan J,Kuhn K.Likelihood of unacceptable normal tissue doses in breast cancer patients undergoing regional nodal irradiation in routine clinical practice.Pract Radiat Oncol2017;7:154-60
|
| [70] |
Hershenhouse KS,Shauly O."Systematic review and meta-analysis of immediate versus delayed autologous breast reconstruction in the setting of post-mastectomy adjuvant radiation therapy".J Plast Reconstr Aesthet Surg2021;74:931-44
|
| [71] |
Liew B,Kanapathy M.Does post-mastectomy radiation therapy worsen outcomes in immediate autologous breast flap reconstruction? A systematic review and meta-analysis.J Plast Reconstr Aesthet Surg2021;74:3260-80
|
| [72] |
Heiman AJ,Kotamarti VS.A meta-analysis of autologous microsurgical breast reconstruction and timing of adjuvant radiation therapy.J Reconstr Microsurg2021;37:336-45
|
| [73] |
Billig J,Qi J.Should immediate autologous breast reconstruction be considered in women who require postmastectomy radiation therapy? A prospective analysis of outcomes.Plast Reconstr Surg2017;139:1279-88 PMCID:PMC5676536
|
| [74] |
Mirzabeigi MN,Nelson JA,Serletti JM.An assessment of the risks and benefits of immediate autologous breast reconstruction in patients undergoing postmastectomy radiation therapy.Ann Plast Surg2013;71:149-55
|
| [75] |
Al-Ghazal SK,Fallowfield L.The psychological impact of immediate rather than delayed breast reconstruction.Eur J Surg Oncol2000;26:17-19.
|
| [76] |
Metcalfe KA,Narod SA.A prospective study of mastectomy patients with and without delayed breast reconstruction: long-term psychosocial functioning in the breast cancer survivorship period.J Surg Oncol2015;111:258-64
|
| [77] |
Tran NV,Gupta A,Robb GL.Comparison of immediate and delayed free TRAM flap breast reconstruction in patients receiving postmastectomy radiation therapy.Plast Reconstr Surg2001;108:78-82
|
| [78] |
Chang EI,Smith ML.Combining autologous breast reconstruction and vascularized lymph node transfer.Semin Plast Surg2018;32:36-41 PMCID:PMC5891653
|
| [79] |
Ribeiro Pereira ACP,Bergmann A.Incidence and risk factors of lymphedema after breast cancer treatment: 10 years of follow-up.Breast2017;36:67-73
|
| [80] |
Chang DW,Skoracki R.A prospective analysis of 100 consecutive lymphovenous bypass cases for treatment of extremity lymphedema.Plast Reconstr Surg2013;132:1305-14
|
| [81] |
Raju A.Vascularized lymph node transfer for treatment of lymphedema: a comprehensive literature review.Ann Surg2015;261:1013-23
|
| [82] |
Maldonado AA,Chang DW.The use of supraclavicular free flap with vascularized lymph node transfer for treatment of lymphedema: a prospective study of 100 consecutive cases.J Surg Oncol2017;115:68-71
|
| [83] |
Tzou CH,Ines T.Surgical anatomy of the vascularized submental lymph node flap: anatomic study of correlation of submental artery perforators and quantity of submental lymph node.J Surg Oncol2017;115:54-9
|
| [84] |
Tinhofer IE,Steinbacher J.The surgical anatomy of the vascularized lateral thoracic artery lymph node flap-A cadaver study.J Surg Oncol2017;116:1062-8
|
| [85] |
Cheng MH,Henry SL,Chia-Yu Lin M.Vascularized groin lymph node flap transfer for postmastectomy upper limb lymphedema: flap anatomy, recipient sites, and outcomes.Plast Reconstr Surg2013;131:1286-98
|
| [86] |
Nguyen AT,Suami H.An algorithmic approach to simultaneous vascularized lymph node transfer with microvascular breast reconstruction.Ann Surg Oncol2015;22:2919-24
|
| [87] |
Nguyen AT,Hanasono MM,Wong FC.Long-term outcomes of the minimally invasive free vascularized omental lymphatic flap for the treatment of lymphedema.J Surg Oncol2017;115:84-9
|
| [88] |
Crowley JS,Rizk NM.Concurrent management of lymphedema and breast reconstruction with single-stage omental vascularized lymph node transfer and autologous breast reconstruction: a case series.Microsurgery2024;44:e31017
|
| [89] |
Akita S,Yamaji Y.Contribution of simultaneous breast reconstruction by deep inferior epigastric artery perforator flap to the efficacy of vascularized lymph node transfer in patients with breast cancer-related lymphedema.J Reconstr Microsurg2017;33:571-8
|
| [90] |
Di Taranto G,Hardwicke J,Skillman J.A comparative study between deep inferior epigastric artery perforator flap breast reconstruction and DIEP flap breast reconstruction coupled with vascularized lymph node transfer: Improving the quality of life of patients with breast cancer related lymphedema without affecting donor site outcomes.Microsurgery2023;43:213-21
|
| [91] |
Liu FC,Navarro Y.Current research on the use of the omental flap in breast reconstruction and post-mastectomy lymphedema: a focus on omental-vascularized lymph node transfer.Life2023;13:1380 PMCID:PMC10305136
|
| [92] |
Schaverien MV,Patel KM,Cheng MH.Vascularized lymph node transfer for lymphedema.Semin Plast Surg2018;32:28-35 PMCID:PMC5891655
|
| [93] |
Ciudad P,Perez Coca JJ.Comparison of long-term clinical outcomes among different vascularized lymph node transfers: 6-year experience of a single center's approach to the treatment of lymphedema.J Surg Oncol2017;116:671-82
|
| [94] |
Shimbo K,Koshima I.Comparative study of conservative treatment and lymphaticovenular anastomosis with compression therapy for early-stage breast cancer-related lymphoedema.J Plast Reconstr Aesthet Surg2024;88:390-6
|
| [95] |
Ciudad P,Kaciulyte J.The breast cancer-related lymphedema multidisciplinary approach: algorithm for conservative and multimodal surgical treatment.Microsurgery2023;43:427-36
|
| [96] |
Palma G,Conson M,Cella L.Normal tissue complication probability (NTCP) models for modern radiation therapy.Semin Oncol2019;46:210-8
|
| [97] |
Huang H,Hou W.NTCP model for hypothyroidism after supraclavicular-directed radiation therapy for breast cancer.Radiother Oncol2021;154:87-92
|
| [98] |
Lilla C,Kropp S.Predictive factors for late normal tissue complications following radiotherapy for breast cancer.Breast Cancer Res Treat2007;106:143-50
|
| [99] |
Siettmann JM,Gasparini J.Personalized breast cancer risk assessment: incorporation of genetic and high-risk factorson breast cancer risk and management.Chirurgia2021;116:S22-34
|
| [100] |
Román M,Domingo L,Louro J.Personalized breast cancer screening strategies: a systematic review and quality assessment.PLoS One2019;14:e0226352 PMCID:PMC6913984
|
| [101] |
Chowdhury M,Arun B,Biswas S.Validation of a personalized risk prediction model for contralateral breast cancer.Breast Cancer Res Treat2018;170:415-23 PMCID:PMC6331647
|
| [102] |
Stark GF,Nartowt BJ.Predicting breast cancer risk using personal health data and machine learning models.PLoS One2019;14:e0226765 PMCID:PMC6934281
|
| [103] |
Pesapane F,Pellegrino G.Advances in breast cancer risk modeling: integrating clinics, imaging, pathology and artificial intelligence for personalized risk assessment.Future Oncol2023;19:2547-64
|
| [104] |
Williams NR,Kanapathy M,Vavourakis V.Radiation-induced fibrosis in breast cancer: a protocol for an observational cross-sectional pilot study for personalised risk estimation and objective assessment.Int J Surg Protoc2019;14:9-13 PMCID:PMC6913559
|
| [105] |
Tang H,Liang Z,Dong Z.The therapeutic effect of adipose-derived stem cells on soft tissue injury after radiotherapy and their value for breast reconstruction.Stem Cell Res Ther2022;13:493 PMCID:PMC9531407
|
| [106] |
Lindegren A,Sinha I.Autologous fat transplantation alters gene expression patterns related to inflammation and hypoxia in the irradiated human breast.Br J Surg2019;106:563-73
|
| [107] |
Gentilucci M,Alfano C.Effects of prophylactic lipofilling after radiotherapy compared to non-fat injected breasts: a randomized, objective study.Aesthet Surg J2020;40:NP597-607
|
| [108] |
Vaia N,Marcasciano M.From the "fat capsule" to the "fat belt": limiting protective lipofilling on irradiated expanders for breast reconstruction to selective key areas.Aesthetic Plast Surg2018;42:986-94
|
| [109] |
Kim IK,Chang H.Inhibition mechanism of acellular dermal matrix on capsule formation in expander-implant breast reconstruction after postmastectomy radiotherapy.Ann Surg Oncol2018;25:2279-87
|
| [110] |
Masià J.The largest multicentre data collection on prepectoral breast reconstruction: The iBAG study.J Surg Oncol2020;122:848-60 PMCID:PMC7540676
|
| [111] |
Wei J,Hou X.Radiation-induced skin reactions: mechanism and treatment.Cancer Manag Res2019;11:167-77 PMCID:PMC6306060
|
| [112] |
Wasiak J,Campbell F.Dressings for superficial and partial thickness burns.Cochrane Database Syst Rev2013;2013:CD002106 PMCID:PMC7065523
|
| [113] |
Speck NE,Farhadi J.Trends and innovations in autologous breast reconstruction.Arch Plast Surg2023;50:240-7 PMCID:PMC10226796
|
| [114] |
Elver AA,Cullom ME.A paradigm shift: outcomes of early autologous breast reconstruction after radiation therapy.J Reconstr Microsurg2023;39:111-9
|