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REFERENCES
1. Agale SV. Chronic leg ulcers: epidemiology, aetiopathogenesis, and management. Ulcers 2013;2013:1-9. DOI
2. Järbrink K, Ni G, Sönnergren H, et al. Prevalence and incidence of chronic wounds and related complications: a protocol for a
systematic review. Syst Rev 2016;5:152. DOI PubMed PMC
3. Mekkes JR, Loots MA, Van Der Wal AC, Bos JD. Causes, investigation and treatment of leg ulceration. Br J Dermatol 2003;148:388-
401. DOI PubMed
4. Chatterjee SS. Venous ulcers of the lower limb: where do we stand? Indian J Plast Surg 2012;45:266-74. DOI PubMed PMC
5. Lee ZH, Daar DA, Stranix JT, et al. Free-flap reconstruction for diabetic lower extremity limb salvage. J Surg Res 2020;248:165-70.
DOI PubMed
6. Pecoraro RE, Reiber GE, Burgess EM. Pathways to diabetic limb amputation. Basis for prevention. Diabetes Care 1990;13:513-21.
DOI PubMed
7. Narres M, Kvitkina T, Claessen H, et al. Incidence of lower extremity amputations in the diabetic compared with the non-diabetic
population: a systematic review. PLoS One 2017;12:e0182081. DOI PubMed PMC
8. Armstrong DG, Swerdlow MA, Armstrong AA, Conte MS, Padula WV, Bus SA. Five year mortality and direct costs of care for
people with diabetic foot complications are comparable to cancer. J Foot Ankle Res 2020;13:16. DOI PubMed PMC
9. Bekeny JC, Zolper EG, Steinberg JS, Attinger CE, Fan KL, Evans KK. Free tissue transfer for patients with chronic lower extremity
wounds. Clin Plast Surg 2021;48:321-9. DOI PubMed
10. Ducic I, Attinger CE. Foot and ankle reconstruction: pedicled muscle flaps versus free flaps and the role of diabetes. Plast Reconstr
Surg 2011;128:173-80. DOI PubMed
11. Ecker ML, Jacobs BS. Lower extremity amputation in diabetic patients. Diabetes 1970;19:189-95. DOI PubMed
12. Kucan JO, Robson MC. Diabetic foot infections: fate of the contralateral foot. Plast Reconstr Surg 1986;77:439-41. DOI PubMed
13. Endara M, Masden D, Goldstein J, Gondek S, Steinberg J, Attinger C. The role of chronic and perioperative glucose management in
high-risk surgical closures: a case for tighter glycemic control. Plast Reconstr Surg 2013;132:996-1004. DOI PubMed
14. Bollig CA, Spradling CS, Dooley LM, Galloway TL, Jorgensen JB. Impact of perioperative hyperglycemia in patients undergoing
microvascular reconstruction. Head Neck 2018;40:1196-206. DOI PubMed
15. Yu J, Hong JP, Suh HP, et al. Prognostic nutritional index is a predictor of free flap failure in extremity reconstruction. Nutrients
2020;12:562. DOI PubMed PMC
16. Stechmiller JK. Understanding the role of nutrition and wound healing. Nutr Clin Pract 2010;25:61-8. DOI PubMed
17. Margarson MP, Soni N. Serum albumin: touchstone or totem? Anaesthesia 1998;53:789-803. DOI PubMed
18. Kim KG, Mishu M, Zolper EG, et al. Nutritional markers for predicting lower extremity free tissue transfer outcomes in the chronic
wound population. Microsurgery 2021. DOI PubMed
19. Shum J, Markiewicz MR, Park E, et al. Low prealbumin level is a risk factor for microvascular free flap failure. J Oral Maxillofac
Surg 2014;72:169-77. DOI PubMed
20. Ehrl D, Heidekrueger PI, Haas EM, et al. Does cigarette smoking harm microsurgical free flap reconstruction? J Reconstr Microsurg
2018;34:492-8. DOI PubMed
21. Wang TY, Serletti JM, Cuker A, et al. Free tissue transfer in the hypercoagulable patient: a review of 58 flaps. Plast Reconstr Surg
2012;129:443-53. DOI PubMed
22. DeFazio MV, Economides JM, Anghel EL, Tefera EA, Evans KK. Lower extremity free tissue transfer in the setting of thrombophilia:
analysis of perioperative anticoagulation protocols and predictors of flap failure. J Reconstr Microsurg 2019;35:270-86. DOI PubMed
23. DeFazio MV, Hung RW, Han KD, Bunting HA, Evans KK. Lower extremity flap salvage in thrombophilic patients: managing
expectations in the setting of microvascular thrombosis. J Reconstr Microsurg 2016;32:431-44. DOI PubMed
24. Anghel EL, DeFazio MV, Barker JC, Janis JE, Attinger CE. Current concepts in debridement: science and strategies. Plast Reconstr
Surg 2016;138:82S-93S. DOI PubMed
25. Siddiqui AR, Bernstein JM. Chronic wound infection: facts and controversies. Clin Dermatol 2010;28:519-26. DOI PubMed
26. Kotha VS, Fan KL, Schwitzer JA, et al. Amputation versus free flap: long-term outcomes of microsurgical limb salvage and risk
factors for amputation in the diabetic population. Plast Reconstr Surg 2021;147:742-50. DOI PubMed
27. Kanuri A, O'Kelly ND, Shuck J, Kim P, Evans KK, Attinger CE. The effect of positive postdebridement cultures on local muscle flap
reconstruction of the lower extremity. Plast Reconstr Surg Glob Open 2018;6:e1864. DOI PubMed PMC
28. Carroll AM, Kim KG, Walters ET, et al. Glove and instrument changing to prevent bacterial contamination in infected wound
debridement and closure procedures: a prospective observational study. Int Wound J 2021;18:664-9. DOI PubMed PMC
29. Reiber GE, Vileikyte L, Boyko EJ, et al. Causal pathways for incident lower-extremity ulcers in patients with diabetes from two
settings. Diabetes Care 1999;22:157-62. DOI PubMed
30. Boyko EJ, Ahroni JH, Stensel V, Forsberg RC, Davignon DR, Smith DG. A prospective study of risk factors for diabetic foot ulcer.
The Seattle Diabetic Foot Study. Diabetes Care 1999;22:1036-42. DOI PubMed
31. Fernando M, Crowther R, Lazzarini P, et al. Biomechanical characteristics of peripheral diabetic neuropathy: a systematic review and
meta-analysis of findings from the gait cycle, muscle activity and dynamic barefoot plantar pressure. Clin Biomech (Bristol, Avon)
2013;28:831-45. DOI PubMed
32. Shenoy AM. Guidelines in practice: treatment of painful diabetic neuropathy. Continuum (Minneap Minn) 2012;18:192-8. DOI
PubMed
33. Andersen H. Motor dysfunction in diabetes. Diabetes Metab Res Rev 2012;28 Suppl 1:89-92. DOI PubMed