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Published in: Archives of Orthopaedic and Trauma Surgery 2/2015

01-02-2015 | Handsurgery

Medial triceps brachii free flap in reconstructive surgery: a prospective study in eight patients

Authors: Anaïs Delgove, Franck Marie Leclère, Federico Villani, Gael Piquilloud, Ali Mojallal, Vincent Casoli

Published in: Archives of Orthopaedic and Trauma Surgery | Issue 2/2015

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Abstract

Introduction

In this study, we present a prospective series of medial triceps free flaps for ankle and foot complex defects coverage and discuss its numerous advantages.

Materials and methods

Between January 2011 and December 2012, eight patients, two women and six men underwent medial triceps brachii (MTB) free flap procedure to cover defects localized at the ankle and foot in our department. Patient mean age was 37.3 ± 15.2 years at the time of surgery (range of 13–53 years). Mean defect size to be covered was 21.8 ± 9.9 cm2. The bone was exposed at the level of the calcaneum in six cases, at the level of the forefoot in one case, and at the level of the lateral malleolus in one case. Special attention was accorded to intra-operative findings. Flap survival and complications on both the donor and recipient site were prospectively evaluated.

Results

Mean MTB flap raising time was 51.3 ± 6.0 min. All the flaps survived and there was no partial flap necrosis. A skin graft was performed after a mean time of 11.8 ± 2.1 days post-operative. The mean follow-up was 18.1 ± 3.8 months. Complications at the donor site level included one hematoma and a case of hypertrophic scar. Complete healing of both the donor and recipient sites was achieved in all cases.

Conclusions

MTB free flap appears to be a useful option for covering small to medium defects in lower limb extremities. Due to the constant anatomy of the MTB nerve, we suggest that the flap could also be used as an innervated free flap for small or medium muscular reanimation such as sequelae of forearm and hand muscle impairment, or facial palsy.
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Literature
1.
go back to reference Parrett BM, Pribaz J (2010) Lower extremity reconstruction. Rev med clin condes 21:66–75 Parrett BM, Pribaz J (2010) Lower extremity reconstruction. Rev med clin condes 21:66–75
2.
go back to reference Ramkrishna R, Kulkarni BD (2013) Procedures used for reconstruction of lower extremity soft tissue defect. Indian J Appl Res 8:383–386 Ramkrishna R, Kulkarni BD (2013) Procedures used for reconstruction of lower extremity soft tissue defect. Indian J Appl Res 8:383–386
3.
go back to reference Hierner EL, Corterier C, Hierner R (2013) Lateral supramalleolar flaps for reconstruction in the ankle and foot. Oper Orthop Traumatol 25:122–130PubMedCrossRef Hierner EL, Corterier C, Hierner R (2013) Lateral supramalleolar flaps for reconstruction in the ankle and foot. Oper Orthop Traumatol 25:122–130PubMedCrossRef
4.
go back to reference Giessler GA, Schmidt AB (2013) Muscular and osteomuscular peroneus brevis flaps. Oper Orthop Traumatol 25:131–144PubMedCrossRef Giessler GA, Schmidt AB (2013) Muscular and osteomuscular peroneus brevis flaps. Oper Orthop Traumatol 25:131–144PubMedCrossRef
5.
go back to reference Kneser U, Beier JP, Dragu A, Arkudas A, Horch RE (2013) Peroneal artery perforator flap. Oper Orthop Traumatol 25:170–175PubMedCrossRef Kneser U, Beier JP, Dragu A, Arkudas A, Horch RE (2013) Peroneal artery perforator flap. Oper Orthop Traumatol 25:170–175PubMedCrossRef
6.
go back to reference Knobloch K, Herold C, Vogt PM (2012) Free latissimus dorsi flap transfer for reconstruction of soft tissue defects of the lower extremity. Oper Orthop Traumatol 24:122–130PubMedCrossRef Knobloch K, Herold C, Vogt PM (2012) Free latissimus dorsi flap transfer for reconstruction of soft tissue defects of the lower extremity. Oper Orthop Traumatol 24:122–130PubMedCrossRef
7.
go back to reference Leclère FM, Schoofs M, Buys B, Mordon SR (2010) Outcomes after 1.9-microm diode laser-assisted anastomosis in reconstructive microsurgery: results in 27 patients. Plast Reconstr Surg 125:1167–1175PubMed Leclère FM, Schoofs M, Buys B, Mordon SR (2010) Outcomes after 1.9-microm diode laser-assisted anastomosis in reconstructive microsurgery: results in 27 patients. Plast Reconstr Surg 125:1167–1175PubMed
8.
go back to reference Leclère FM, Schoofs M, Buys B (2011) Mordon SR (2011), 1.9 µm diode laser assisted vascular microanastomoses: experience in 40 clinical procedures. Lasers Surg Med 43:293–297PubMedCrossRef Leclère FM, Schoofs M, Buys B (2011) Mordon SR (2011), 1.9 µm diode laser assisted vascular microanastomoses: experience in 40 clinical procedures. Lasers Surg Med 43:293–297PubMedCrossRef
9.
go back to reference Leclère FM, Schoofs M, Auger F, Mordon S (2010) Blood flow assessment with magnetic resonance imaging after 1.9 µm diode laser assisted microvascular vein anastomosis. Lasers Surg Med 42:299–305PubMedCrossRef Leclère FM, Schoofs M, Auger F, Mordon S (2010) Blood flow assessment with magnetic resonance imaging after 1.9 µm diode laser assisted microvascular vein anastomosis. Lasers Surg Med 42:299–305PubMedCrossRef
10.
go back to reference Wang L, Fu J, Li M, Han D, Yang L (2013) Repair of hand defects by transfer of free tissue flaps from toes. Arch Orthop Trauma Surg 133:141–146PubMedCrossRef Wang L, Fu J, Li M, Han D, Yang L (2013) Repair of hand defects by transfer of free tissue flaps from toes. Arch Orthop Trauma Surg 133:141–146PubMedCrossRef
11.
go back to reference Leclère FM, Schoofs M, Auger F, Mordon S (2011) Blood flow assessment with magnetic resonance imaging after 1.9 mum diode laser assisted arterial micronastomoses. Ann Chir Plast Esthet 56:540–547PubMedCrossRef Leclère FM, Schoofs M, Auger F, Mordon S (2011) Blood flow assessment with magnetic resonance imaging after 1.9 mum diode laser assisted arterial micronastomoses. Ann Chir Plast Esthet 56:540–547PubMedCrossRef
12.
go back to reference Leclère FM, Martinot V, Schoofs M, Mordon S (2011) Thirty years of laser-assisted microvascular anastomosis (LAMA): what are the clinical perspectives? Neurochirurgie 57:1–8PubMedCrossRef Leclère FM, Martinot V, Schoofs M, Mordon S (2011) Thirty years of laser-assisted microvascular anastomosis (LAMA): what are the clinical perspectives? Neurochirurgie 57:1–8PubMedCrossRef
13.
go back to reference Leclère FM, Schoofs M, Mordon S (2011) Historical review and future orientations of the conventional vascular microanastomoses. Ann Chir Plast Esthet 56:232–240PubMedCrossRef Leclère FM, Schoofs M, Mordon S (2011) Historical review and future orientations of the conventional vascular microanastomoses. Ann Chir Plast Esthet 56:232–240PubMedCrossRef
14.
go back to reference Hallock GG (1999) Minimally invasive harvest of the gracilis muscle. Plast Reconstr Surg 104:801–805PubMedCrossRef Hallock GG (1999) Minimally invasive harvest of the gracilis muscle. Plast Reconstr Surg 104:801–805PubMedCrossRef
15.
go back to reference Tobin GR, Moberg AW (1981) The split latissimus dorsi myocutaneous flap. Ann Plast Surg 7:272–280PubMedCrossRef Tobin GR, Moberg AW (1981) The split latissimus dorsi myocutaneous flap. Ann Plast Surg 7:272–280PubMedCrossRef
16.
go back to reference Van Landuyt K, Hamdi M, Blondeel P, Monstrey S (2003) The pyramidalis muscle free flap. Br J Plast Surg 56:585–592PubMedCrossRef Van Landuyt K, Hamdi M, Blondeel P, Monstrey S (2003) The pyramidalis muscle free flap. Br J Plast Surg 56:585–592PubMedCrossRef
17.
go back to reference Hwang K, Han JY, Chung IH (2004) Topographical anatomy of the anconeus muscle for use as a free flap. J Reconstr Microsurg 20:631–636PubMedCrossRef Hwang K, Han JY, Chung IH (2004) Topographical anatomy of the anconeus muscle for use as a free flap. J Reconstr Microsurg 20:631–636PubMedCrossRef
18.
go back to reference Medalie DA, Llull R, Heckler F (2011) The iliacus muscle flap: an anatomical and clinical evaluation. Plast Reconstr Surg 127:1553–1560PubMedCrossRef Medalie DA, Llull R, Heckler F (2011) The iliacus muscle flap: an anatomical and clinical evaluation. Plast Reconstr Surg 127:1553–1560PubMedCrossRef
19.
go back to reference Piquilloud G, Villani F, Casoli V (2011) The medial head of the triceps brachii. Anatomy and blood supply of a new muscular free flap: the medial triceps free flap. Surg Radiol Anat 33:415–420PubMedCrossRef Piquilloud G, Villani F, Casoli V (2011) The medial head of the triceps brachii. Anatomy and blood supply of a new muscular free flap: the medial triceps free flap. Surg Radiol Anat 33:415–420PubMedCrossRef
20.
go back to reference Leclère FM, Casoli V (2014) Reconstruction of a traumatic plantar foot defect with a new free flap : the medial triceps brachii free flap. JCLT [Epub ahead of print] Leclère FM, Casoli V (2014) Reconstruction of a traumatic plantar foot defect with a new free flap : the medial triceps brachii free flap. JCLT [Epub ahead of print]
21.
go back to reference Villani F, Piquilloud G, Casoli V (2012) The medial head of triceps brachii: a muscular flap. J Plast Reconstr Aesthet Surg 65:263–264CrossRef Villani F, Piquilloud G, Casoli V (2012) The medial head of triceps brachii: a muscular flap. J Plast Reconstr Aesthet Surg 65:263–264CrossRef
22.
go back to reference Chan JK, Harry L, Williams G, Nanchahal J (2012) Soft-tissue reconstruction of open fractures of the lower limb: muscle versus fasciocutaneous flaps. Plast Reconstr Surg 130:284–295CrossRef Chan JK, Harry L, Williams G, Nanchahal J (2012) Soft-tissue reconstruction of open fractures of the lower limb: muscle versus fasciocutaneous flaps. Plast Reconstr Surg 130:284–295CrossRef
23.
go back to reference Harry LE, Sandison A, Pearse MF, Paleolog EM, Nanchahal J (2009) Comparison of the vascularity of fasciocutaneous tissue and muscle for coverage of open tibial fractures. Plast Reconstr Surg 124:1211–1219PubMedCrossRef Harry LE, Sandison A, Pearse MF, Paleolog EM, Nanchahal J (2009) Comparison of the vascularity of fasciocutaneous tissue and muscle for coverage of open tibial fractures. Plast Reconstr Surg 124:1211–1219PubMedCrossRef
24.
go back to reference Liu R, Schindeler A, Little DG (2010) The potential role of muscle in bone repair. J Musculoskelet Neuronal Interact 10:71–76PubMed Liu R, Schindeler A, Little DG (2010) The potential role of muscle in bone repair. J Musculoskelet Neuronal Interact 10:71–76PubMed
25.
go back to reference Gonzalez M, Weinzweig N (2005) Muscle flaps in the treatment of osteomyelitis of the lower extremity. J Trauma-Injury Infect Critical Care 58:1019–1023CrossRef Gonzalez M, Weinzweig N (2005) Muscle flaps in the treatment of osteomyelitis of the lower extremity. J Trauma-Injury Infect Critical Care 58:1019–1023CrossRef
26.
go back to reference Wei W, Zuoliang Q, Xiaoxi L et al (1999) Free split and segmental latissimus dorsi muscle transfer in one stage for facial reanimation. Plast Reconstr Surg 103:473–480PubMedCrossRef Wei W, Zuoliang Q, Xiaoxi L et al (1999) Free split and segmental latissimus dorsi muscle transfer in one stage for facial reanimation. Plast Reconstr Surg 103:473–480PubMedCrossRef
27.
go back to reference Yang D, Morris SF (1999) Neurovascular anatomy of the rectus femoris muscle related to functioning muscle transfer. Plast Reconstr Surg 104:102–106PubMedCrossRef Yang D, Morris SF (1999) Neurovascular anatomy of the rectus femoris muscle related to functioning muscle transfer. Plast Reconstr Surg 104:102–106PubMedCrossRef
28.
go back to reference Chuang DC, Mardini S, Lin SH, Chen HC (2004) Free proximal gracilis muscle and its skin paddle compound flap transplantation for complex facial paralysis. Plast Reconstr Surg 113:126–132PubMedCrossRef Chuang DC, Mardini S, Lin SH, Chen HC (2004) Free proximal gracilis muscle and its skin paddle compound flap transplantation for complex facial paralysis. Plast Reconstr Surg 113:126–132PubMedCrossRef
29.
go back to reference MacQuillan A, Horlock N, Grobbelaar A, Harrison D (2004) Arterial and venous anatomical features of the pectoralis minor muscle flap pedicle. Plast Reconstr Surg 113:872–876PubMedCrossRef MacQuillan A, Horlock N, Grobbelaar A, Harrison D (2004) Arterial and venous anatomical features of the pectoralis minor muscle flap pedicle. Plast Reconstr Surg 113:872–876PubMedCrossRef
30.
go back to reference Godat DM, Sanger JR, Lifchez SD et al (2004) Detailed neurovascular anatomy of the serratus anterior muscle: implications for a functional muscle flap with multiple independent force vectors. Plast Reconstr Surg 114:21–29PubMedCrossRef Godat DM, Sanger JR, Lifchez SD et al (2004) Detailed neurovascular anatomy of the serratus anterior muscle: implications for a functional muscle flap with multiple independent force vectors. Plast Reconstr Surg 114:21–29PubMedCrossRef
31.
go back to reference Taylor GI, Cichowitz A, Ang SG, Seneviratne S, Ashton M (2003) Comparative anatomical study of the gracilis and coracobrachialis muscles: implications for facial reanimation. Plast Reconstr Surg 112:20–30PubMedCrossRef Taylor GI, Cichowitz A, Ang SG, Seneviratne S, Ashton M (2003) Comparative anatomical study of the gracilis and coracobrachialis muscles: implications for facial reanimation. Plast Reconstr Surg 112:20–30PubMedCrossRef
32.
go back to reference Leclère FM, Casoli V. Medial Triceps Brachii Free Flap in Reconstructive Surgery: Donor Site Morbidity. In Review Leclère FM, Casoli V. Medial Triceps Brachii Free Flap in Reconstructive Surgery: Donor Site Morbidity. In Review
Metadata
Title
Medial triceps brachii free flap in reconstructive surgery: a prospective study in eight patients
Authors
Anaïs Delgove
Franck Marie Leclère
Federico Villani
Gael Piquilloud
Ali Mojallal
Vincent Casoli
Publication date
01-02-2015
Publisher
Springer Berlin Heidelberg
Published in
Archives of Orthopaedic and Trauma Surgery / Issue 2/2015
Print ISSN: 0936-8051
Electronic ISSN: 1434-3916
DOI
https://doi.org/10.1007/s00402-014-2102-9

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