REFERENCES

1. Byrd HS, Cierny G 3rd, Tebbetts JB. The management of open tibial fractures with associated soft-tissue loss: external pin fixation with early flap coverage. Plast Reconstr Surg 1981;68:73-82.

2. Colen DL, Colen LB, Levin LS, Kovach SJ. Godina’s Principles in the Twenty-First Century and the Evolution of Lower Extremity Trauma Reconstruction. J Reconstr Microsurg 2018;34:563-71.

3. Godina M. Early microsurgical reconstruction of complex trauma of the extremities. Plast Reconstr Surg 1986;78:285-92.

4. Gopal S, Majumder S, Batchelor AG, Knight SL, De Boer P, Smith RM. Fix and flap: the radical orthopaedic and plastic treatment of severe open fractures of the tibia. J Bone Joint Surg Br 2000;82:959-66.

5. Gustilo RB. Use of antimicrobials in the management of open fractures. Arch Surg 1979;114:805-8.

6. Gustilo RB, Anderson JT. Prevention of infection in the treatment of one thousand and twenty-five open fractures of long bones: retrospective and prospective analyses. J Bone Joint Surg Am 1976;58(4):453-8.

7. Leland HA, Rounds AD, Burtt KE, et al. Soft tissue reconstruction and salvage of infected fixation hardware in lower extremity trauma. Microsurgery 2018;38:259-63.

8. Fang F, Chung KC. An evolutionary perspective on the history of flap reconstruction in the upper extremity. Hand Clin 2014;30:109-22, v.

9. Manring MM, Hawk A, Calhoun JH, Andersen RC. Treatment of war wounds: a historical review. Clin Orthop Relat Res 2009;467:2168-91.

10. Sabino JM, Slater J, Valerio IL. Plastic surgery challenges in war wounded I: flap-based extremity reconstruction. Adv Wound Care (New Rochelle) 2016;5:403-11.

11. Acland RD, Schusterman M, Godina M, Eder E, Taylor GI, Carlisle I. The saphenous neurovascular free flap. Plast Reconstr Surg 1981;67:763-74.

12. Anthony JP, Mathes SJ, Alpert BS. The muscle flap in the treatment of chronic lower extremity osteomyelitis: results in patients over 5 years after treatment. Plast Reconstr Surg 1991;88:311-8.

13. Arnež ZM, Kersnič M, Smith RW, Godina M. Free lateral arm osteocutaneous neurosensory flap for thumb reconstruction. Journal of Hand Surgery 1991;16:395-9.

14. Brumberg RS, Kaelin LD, Derosier LC, Hutchinson H. Early results of supporting free flap coverage of mangled lower extremities with long saphenous arteriovenous loop grafts. Ann Vasc Surg 2021;71:181-90.

15. Khouri RK, Shaw WW. Reconstruction of the lower extremity with microvascular free flaps: a 10-year experience with 304 consecutive cases. J Trauma 1989;29:1086-94.

16. Mathes SJ. The muscle flap for management of osteomyelitis. N Engl J Med 1982;306:294-5.

17. Mathes SJ, Alpert BS, Chang N. Use of the muscle flap in chronic osteomyelitis: experimental and clinical correlation. Plast Reconstr Surg 1982;69:815-29.

18. Parrett BM, Matros E, Pribaz JJ, Orgill DP. Lower extremity trauma: trends in the management of soft-tissue reconstruction of open tibia-fibula fractures. Plast Reconstr Surg 2006;117:1315-22; discussion 1323.

19. Samaha FJ, Oliva A, Buncke GM, Buncke HJ, Siko PP. A clinical study of end-to-end versus end-to-side techniques for microvascular anastomosis. Plast Reconstr Surg 1997;99:1109-11.

20. Gustilo RB, Mendoza RM, Williams DN. Problems in the management of type III (severe) open fractures: a new classification of type III open fractures. J Trauma 1984;24:742-6.

21. Yim GH, Hardwicke JT. The Evolution and interpretation of the gustilo and anderson classification. J Bone Joint Surg Am 2018;100:e152.

22. Bhattacharyya T, Mehta P, Smith M, Pomahac B. Routine use of wound vacuum-assisted closure does not allow coverage delay for open tibia fractures. Plast Reconstr Surg 2008;121:1263-6.

23. Byrd HS, Spicer TE, Cierney G 3rd. Management of open tibial fractures. Plast Reconstr Surg 1985;76:719-30.

24. Chummun S, Wigglesworth TA, Young K, et al. Does vascular injury affect the outcome of open tibial fractures? Plast Reconstr Surg 2013;131:303-9.

25. Dickson KF, Katzman S, Paiement G. The importance of the blood supply in the healing of tibial fractures. Contemp Orthop 1995;30(6):489-93.

26. Stranix JT, Lee ZH, Jacoby A, et al. Not all gustilo type IIIB fractures are created equal: arterial injury impacts limb salvage outcomes. Plast Reconstr Surg 2017;140:1033-41.

27. Trabulsy PP, Kerley SM, Hoffman WY. A prospective study of early soft tissue coverage of grade IIIB tibial fractures. J Trauma 1994;36:661-8.

28. Godina M. Preferential use of end-to-side arterial anastomoses in free flap transfers. Plast Reconstr Surg 1979;64(5):673-82.

29. Kosutic D. The life and work of Marko Godina: in memory of a pioneer in reconstructive microsurgery. J Plast Reconstr Aesthet Surg 2007;60:1171-2.

30. Godina M, Arnez ZM, Lister GD. Preferential use of the posterior approach to blood vessels of the lower leg in microvascular surgery. Plast Reconstr Surg 1991;88:287-91.

31. Kolker AR, Kasabian AK, Karp NS, Gottlieb JJ. Fate of free flap microanastomosis distal to the zone of injury in lower extremity trauma. Plast Reconstr Surg 1997;99:1068-73.

32. Godina M. Arterial autografts in microvascular surgery. Plast Reconstr Surg 1986;78:293-4.

33. Freedman AM, Meland NB. Arteriovenous shunts in free vascularized tissue transfer for extremity reconstruction. Ann Plast Surg 1989;23:123-8.

34. Hallock GG. The interposition arteriovenous loop revisited. J Reconstr Microsurg 1988;4:155-9.

35. Higgins JP, McClinton MA. Vascular insufficiency of the upper extremity. J Hand Surg Am 2010;35:1545-53; quiz 1553.

36. Vlastou C, Earle AS. Short saphenous vein grafts as an aid to microsurgical reconstruction of the lower extremity. J Reconstr Microsurg 1988;4:145-54.

37. Godina M. The tailored latissimus dorsi free flap. Plast Reconstr Surg 1987;80:304-6.

38. Calderon W, Chang N, Mathes SJ. Comparison of the effect of bacterial inoculation in musculocutaneous and fasciocutaneous flaps. Plast Reconstr Surg 1986;77:785-94.

39. Gosain A, Chang N, Mathes S, Hunt TK, Vasconez L. A study of the relationship between blood flow and bacterial inoculation in musculocutaneous and fasciocutaneous flaps. Plast Reconstr Surg 1990;86(6):1152-62; discussion 63.

40. Hanasono MM, Skoracki RJ, Yu P. A prospective study of donor-site morbidity after anterolateral thigh fasciocutaneous and myocutaneous free flap harvest in 220 patients. Plast Reconstr Surg 2010;125:209-14.

41. Hong JP, Shin HW, Kim JJ, Wei FC, Chung YK. The use of anterolateral thigh perforator flaps in chronic osteomyelitis of the lower extremity. Plast Reconstr Surg 2005;115(1):142-7.

42. Sofiadellis F, Liu DS, Webb A, Macgill K, Rozen WM, Ashton MW. Fasciocutaneous free flaps are more reliable than muscle free flaps in lower limb trauma reconstruction: experience in a single trauma center. J Reconstr Microsurg 2012;28:333-40.

43. Wei FC, Jain V, Celik N, Chen HC, Chuang DC, Lin CH. Have we found an ideal soft-tissue flap? Plast Reconstr Surg 2002;109:2219-26; discussion 2227.

44. Xiong L, Gazyakan E, Kremer T, et al. Free flaps for reconstruction of soft tissue defects in lower extremity: A meta-analysis on microsurgical outcome and safety. Microsurgery 2016;36:511-24.

45. Yazar S, Lin CH, Lin YT, Ulusal AE, Wei FC. Outcome comparison between free muscle and free fasciocutaneous flaps for reconstruction of distal third and ankle traumatic open tibial fractures. Plast Reconstr Surg 2006;117:2468-75; discussion 2476.

46. Fischer JP, Wink JD, Nelson JA, et al. A retrospective review of outcomes and flap selection in free tissue transfers for complex lower extremity reconstruction. J Reconstr Microsurg 2013;29:407-16.

47. Medina ND, Kovach SJ 3rd, Levin LS. An evidence-based approach to lower extremity acute trauma. Plast Reconstr Surg 2011;127:926-31.

48. Fischer MD, Gustilo RB, Varecka TF. The timing of flap coverage, bone-grafting, and intramedullary nailing in patients who have a fracture of the tibial shaft with extensive soft-tissue injury. J Bone Joint Surg Am 1991;73(9):1316-22.

49. Pollak AN, McCarthy ML, Burgess AR. Short-term wound complications after application of flaps for coverage of traumatic soft-tissue defects about the tibia. The Lower Extremity Assessment Project (LEAP) Study Group. J Bone Joint Surg Am 2000;82(12):1681-91.

50. Chang DK, Louis MR, Gimenez A, Reece EM. The Basics of Integra Dermal Regeneration Template and its Expanding Clinical Applications. Semin Plast Surg 2019;33:185-9.

51. Gopal S, Giannoudis PV, Murray A, Matthews SJ, Smith RM. The functional outcome of severe, open tibial fractures managed with early fixation and flap coverage. J Bone Joint Surg Br 2004;86:861-7.

52. Berman SS, Schilling JD, Mcintyre KE, Hunter GC, Bernhard VM. Shoelace technique for delayed primary closure of fasciotomies. The American Journal of Surgery 1994;167:435-6.

53. DeFranzo AJ, Argenta LC, Marks MW, et al. The use of vacuum-assisted closure therapy for the treatment of lower-extremity wounds with exposed bone. Plast Reconstr Surg 2001;108:1184-91.

54. Dodenhoff R, Howell G. The shoelace technique for wound closure in open fractures: report of early experience. Injury 1997;28:593-5.

55. Erba P, Ogawa R, Vyas R, Orgill DP. The reconstructive matrix: a new paradigm in reconstructive plastic surgery. Plast Reconstr Surg 2010;126:492-8.

56. Gupta S, Gabriel A, Lantis J, Téot L. Clinical recommendations and practical guide for negative pressure wound therapy with instillation. Int Wound J 2016;13:159-74.

57. Kim PJ, Attinger CE. Negative-pressure wound therapy with instillation: a tool in the multidisciplinary approach to limb function preservation. Plast Reconstr Surg 2021;147:27S-33S.

58. Kim PJ, Attinger CE, Constantine T, et al. Negative pressure wound therapy with instillation: International consensus guidelines update. Int Wound J 2020;17:174-86.

59. Manista GC, Dennis A, Kaminsky M. Surgical management of compartment syndrome and the gradual closure of a fasciotomy wound using a DermaClose device. Trauma Case Rep 2018;14:1-4.

60. Zorrilla P, Marín A, Gómez LA, Salido JA. Shoelace technique for gradual closure of fasciotomy wounds. J Trauma 2005;59:1515-7.

61. Robert N. Negative pressure wound therapy in orthopaedic surgery. Orthop Traumatol Surg Res 2017;103:S99-S103.

62. Gage MJ, Yoon RS, Egol KA, Liporace FA. Uses of negative pressure wound therapy in orthopedic trauma. Orthop Clin North Am 2015;46:227-34.

63. Kanakaris NK, Thanasas C, Keramaris N, Kontakis G, Granick MS, Giannoudis PV. The efficacy of negative pressure wound therapy in the management of lower extremity trauma: review of clinical evidence. Injury 2007;38 Suppl 5:S9-18.

64. Birke-Sorensen H, Malmsjo M, Rome P, et al. International Expert Panel on Negative Pressure Wound Therapy [NPWT-EP]. Evidence-based recommendations for negative pressure wound therapy: treatment variables (pressure levels, wound filler and contact layer)--steps towards an international consensus. J Plast Reconstr Aesthet Surg 2011;64 Suppl:S1-16.

65. Weed T, Ratliff C, Drake DB. Quantifying bacterial bioburden during negative pressure wound therapy: does the wound VAC enhance bacterial clearance? Ann Plast Surg 2004;52:276-9; discussion 279.

66. Diehm YF, Fischer S, Wirth GA, et al. Management of acute and traumatic wounds with negative-pressure wound therapy with instillation and dwell time. Plast Reconstr Surg 2021;147:43S-53S.

67. Kim PJ, Attinger CE, Steinberg JS, et al. The impact of negative-pressure wound therapy with instillation compared with standard negative-pressure wound therapy: a retrospective, historical, cohort, controlled study. Plast Reconstr Surg 2014;133:709-16.

68. Kim PJ, Lavery LA, Galiano RD, et al. The impact of negative-pressure wound therapy with instillation on wounds requiring operative debridement: Pilot randomised, controlled trial. Int Wound J 2020;17:1194-208.

69. Henning JA, Liette MD, Laklouk M, Fadel M, Masadeh S. The role of dermal regenerative templates in complex lower extremity wounds. Clin Podiatr Med Surg 2020;37:803-20.

70. Hedström SA, Lidgren L, Törholm C, Onnerfält R. Antibiotic containing bone cement beads in the treatment of deep muscle and skeletal infections. Acta Orthop Scand 1980;51:863-9.

71. Ostermann PA, Seligson D, Henry SL. Local antibiotic therapy for severe open fractures. A review of 1085 consecutive cases. J Bone Joint Surg Br 1995;77(1):93-7.

72. Patzakis MJ, Wilkins J. Factors influencing infection rate in open fracture wounds. Clin Orthop Relat Res ;1989(243):36-40.

73. Patzakis MJ, Zalavras CG. Chronic posttraumatic osteomyelitis and infected nonunion of the tibia: current management concepts. J Am Acad Orthop Surg 2005;13:417-27.

74. Howlin RP, Brayford MJ, Webb JS, Cooper JJ, Aiken SS, Stoodley P. Antibiotic-loaded synthetic calcium sulfate beads for prevention of bacterial colonization and biofilm formation in periprosthetic infections. Antimicrob Agents Chemother 2015;59:111-20.

75. Pipitone PS, Rehman S. Management of traumatic bone loss in the lower extremity. Orthop Clin North Am 2014;45:469-82.

76. Allsopp BJ, Hunter-Smith DJ, Rozen WM. Vascularized versus Nonvascularized Bone Grafts: What Is the Evidence? Clin Orthop Relat Res 2016;474:1319-27.

77. Aronson J. Limb-lengthening, skeletal reconstruction, and bone transport with the Ilizarov method. J Bone Joint Surg Am 1997;79:1243-58.

78. Sala F, Elbatrawy Y, Thabet AM, Zayed M, Capitani D. Taylor spatial frame fixation in patients with multiple traumatic injuries: study of 57 long-bone fractures. J Orthop Trauma 2013;27:442-50.

79. Colen DL, Kania KE, Othman S, et al. The medial femoral condyle flap in the pediatric patient. Plast Reconstr Surg 2021;147:613e-22e.

80. Murai A, Tada K, Nakada M, Matsuta M, Hayashi K, Tsuchiya H. Use of a free vascularized medial femoral condyle flap for revision surgery in a pediatric patient with congenital pseudarthrosis of the clavicle. Case Rep Orthop 2020;2020:8872934.

81. Rahmanian-Schwarz A, Spetzler V, Amr A, Pfau M, Schaller HE, Hirt B. A composite osteomusculocutaneous free flap from the medial femoral condyle for reconstruction of complex defects. J Reconstr Microsurg 2011;27:251-60.

82. Saad A, Jimenez ML, Rogero RG, Saad S, Nakashian MN, Winters BS. Medial femoral condyle periosteal free flap for the treatment of talus avascular necrosis. Foot Ankle Int 2020;41:728-34.

83. Bakri K, Stans AA, Mardini S, Moran SL. Combined massive allograft and intramedullary vascularized fibula transfer: the capanna technique for lower-limb reconstruction. Semin Plast Surg 2008;22:234-41.

84. Beris AE, Payatakes AH, Kostopoulos VK, et al. Non-union of femoral neck fractures with osteonecrosis of the femoral head: treatment with combined free vascularized fibular grafting and subtrochanteric valgus osteotomy. Orthop Clin North Am 2004;35:335-43, ix.

85. Huntington TW. VI. Case of bone transference: use of a segment of fibula to supply a defect in the tibia. Ann Surg 1905;41:249-51.

86. Soucacos PN, Johnson EO, Babis G. An update on recent advances in bone regeneration. Injury 2008;39:S1-4.

87. Soucacos PN, Kokkalis ZT, Piagkou M, Johnson EO. Vascularized bone grafts for the management of skeletal defects in orthopaedic trauma and reconstructive surgery. Injury 2013;44:S70-5.

88. Taylor GI, Miller GD, Ham FJ. The free vascularized bone graft. A clinical extension of microvascular techniques. Plast Reconstr Surg 1975;55:533-44.

89. Capanna R, Campanacci DA, Belot N, et al. A new reconstructive technique for intercalary defects of long bones: the association of massive allograft with vascularized fibular autograft. Long-term results and comparison with alternative techniques. Orthop Clin North Am 2007;38:51-60, vi.

90. Moran TE, Sequeira S, Cooper MT, Park J. A retrospective analysis of outcomes from foot and ankle arthrodesis and open reduction and internal fixation using cellular bone allograft augmentation. Foot Ankle Spec 2020:1938640020952301.

91. Liebig BE, Kisiday JD, Bahney CS, Ehrhart NP, Goodrich LR. The platelet-rich plasma and mesenchymal stem cell milieu: a review of therapeutic effects on bone healing. J Orthop Res 2020;38:2539-50.

92. Seamon MJ, Smoger D, Torres DM, et al. A prospective validation of a current practice: the detection of extremity vascular injury with CT angiography. J Trauma 2009;67:238-43; discussion 243.

93. Maxwell GP. Iginio Tansini and the origin of the latissimus dorsi musculocutaneous flap. Plast Reconstr Surg 1980;65:686-92.

94. Teimourian B, Adham MN. Louis Ombredanne and the origin of muscle flap use for immediate breast mound reconstruction. Plast Reconstr Surg 1983;72:905-10.

95. Daniel RK, Taylor GI. Distant transfer of an island flap by microvascular anastomoses. A clinical technique. Plast Reconstr Surg 1973;52:111-7.

96. Ellabban MA, Awad AI, Hallock GG. Perforator-pedicled propeller flaps for lower extremity reconstruction. Semin Plast Surg 2020;34:200-6.

97. Saint-Cyr M, Wong C, Schaverien M, Mojallal A, Rohrich RJ. The perforasome theory: vascular anatomy and clinical implications. Plast Reconstr Surg 2009;124:1529-44.

98. Morris SF, Tang M, Almutari K, Geddes C, Yang D. The anatomic basis of perforator flaps. Clin Plast Surg 2010;37:553-70, xi.

99. AlMugaren FM, Pak CJ, Suh HP, Hong JP. Best local flaps for lower extremity reconstruction. Plast Reconstr Surg Glob Open 2020;8:e2774.

100. Brown E, Suh HP, Han HH, Pak CJ, Hong JP. Best new flaps and tips for success in microsurgery. Plast Reconstr Surg 2020;146:796e-807e.

101. Baykul T, Aydın MA, Fındık Y, Türkaslan SS. Surgical rehabilitation of free fibula graft fracture under local anesthesia with posteriorly directed vertical alveolar distractor. Indian J Surg 2014;76:336-8.

102. Hayashida K, Yamakawa S, Saijo H, Fujioka M. Foot reconstruction with the superficial circumflex iliac artery perforator flap under local anesthesia: two case reports. Medicine (Baltimore) 2019;98:e13888.

103. Hung WY, Tung CC, Fang WY, et al. Free flap transfer for head and neck reconstruction using local anesthesia in elderly patients. Ann Plast Surg 2018;80:S30-5.

104. Bosse MJ, MacKenzie EJ, Kellam JF, et al. An analysis of outcomes of reconstruction or amputation after leg-threatening injuries. N Engl J Med 2002;347:1924-31.

105. Hansen ST, Jr. The type-IIIC tibial fracture. Salvage or amputation. J Bone Joint Surg Am 1987;69(6):799-800.

106. Harris AM, Althausen PL, Kellam J, Bosse MJ, Castillo R. Lower Extremity Assessment Project (LEAP) Study Group. Complications following limb-threatening lower extremity trauma. J Orthop Trauma 2009;23:1-6.

107. Higgins TF, Klatt JB, Beals TC. Lower Extremity Assessment Project (LEAP)--the best available evidence on limb-threatening lower extremity trauma. Orthop Clin North Am 2010;41:233-9.

108. MacKenzie EJ, Bosse MJ. Factors influencing outcome following limb-threatening lower limb trauma: lessons learned from the Lower Extremity Assessment Project (LEAP). J Am Acad Orthop Surg 2006;14:S205-10.

109. MacKenzie EJ, Bosse MJ, Pollak AN, et al. Long-term persistence of disability following severe lower-limb trauma. Results of a seven-year follow-up. J Bone Joint Surg Am 2005;87:1801-9.

110. Castillo RC, MacKenzie EJ, Wegener ST, Bosse MJ. LEAP Study Group. Prevalence of chronic pain seven years following limb threatening lower extremity trauma. Pain 2006;124:321-9.

111. MacKenzie EJ, Jones AS, Bosse MJ, et al. Health-care costs associated with amputation or reconstruction of a limb-threatening injury. J Bone Joint Surg Am 2007;89:1685-92.

112. Chung KC, Saddawi-Konefka D, Haase SC, Kaul G. A cost-utility analysis of amputation versus salvage for Gustilo type IIIB and IIIC open tibial fractures. Plast Reconstr Surg 2009;124:1965-73.

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