A new experimental model for studying peripheral nerve regeneration in dual innervated facial reanimation

. 2025 Apr ; 8 (4) : 606-614. [epub] 20250207

Jazyk angličtina Země Spojené státy americké Médium print-electronic

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/pmid39921270

Grantová podpora
MUNI/11/SUP/01/2020 Grant Agency of Masaryk University
MUNI/A/1457/2021 Grant Agency of Masaryk University

BACKGROUND: Donor nerve selection is a crucial factor in determining clinical outcomes of facial reanimation. Although dual innervation approaches using two neurotizers have shown promise, there is a lack of evidence-based comparison in the literature. Furthermore, no animal model of dual reinnervation has yet been published. This study aimed to establish such a model and verify its technical and anatomical feasibility by performing dual-innervated reanimation approaches in Wistar rats. METHODS: Fifteen Wistar rats were divided into four experimental groups and one control group. The sural nerve was exposed and used as a cross-face nerve graft (CFNG), which was then anastomosed to the contralateral buccal branch of the facial nerve through a subcutaneous tunnel on the forehead. The CFNG, the masseteric nerve (MN), and the recipient nerve were coapted in one or two stages. The length and width of the utilized structures were measured under an operating microscope. Return of whisker motion was visually confirmed. RESULTS: Nine out of the eleven rats that underwent surgery survived the procedure. Whisker motion was observed in all experimental animals, indicating successful reinnervation. The mean duration of the surgical procedures did not differ significantly between the experimental groups, ensuring similar conditions for all groups. CONCLUSIONS: Our experimental study confirmed that the proposed reanimation model in Wistar rats is anatomically and technically feasible, with a high success rate, and shows good prospects for future experiments.

Zobrazit více v PubMed

Pinkiewicz M, Dorobisz K, Zatoński T. A comprehensive approach to facial reanimation: a systematic review. J Clin Med. 2022;11(10):2890. PubMed PMC

Bayezid KC, Joukal M, Karabulut E, Macek J, Moravcová L, Streit L. Donor nerve selection in free gracilis muscle transfer for facial reanimation. A systematic review and meta‐analysis of clinical outcomes. J Plast Reconstr Aesthet Surg. 2023;82:31‐47. PubMed

Bayezid KC, Morkuzu S, Karabulut E, Bajus A, Streit L. Restoring the spontaneous smile through free functional muscle transfer. A systematic review and meta‐analysis of the last twenty years' experience. J Plast Reconstr Aesthet Surg. 2024;88:196‐207. PubMed

Natghian H, Fransén J, Rozen SM, Rodriguez‐Lorenzo A. Qualitative and quantitative analysis of smile excursion in facial reanimation: a systematic review and meta‐analysis of 1‐ versus 2‐stage procedures. Plast Reconstr Surg Glob Open. 2017;5(12):e1621. PubMed PMC

Roy M, Corkum JP, Shah PS, et al. Effectiveness and safety of the use of gracilis muscle for dynamic smile restoration in facial paralysis: a systematic review and meta‐analysis. J Plast Reconstr Aesthet Surg. 2019;72(8):1254‐1264. PubMed

Urban MJ, Eggerstedt M, Varelas E, et al. Hypoglossal and masseteric nerve transfer for facial reanimation: a systematic review and meta‐analysis. Facial Plast Surg Aesthet Med. 2022;24(1):10‐17. PubMed

Terzis JK, Tzafetta K. The “babysitter” procedure: minihypoglossal to facial nerve transfer and cross‐facial nerve grafting. Plast Reconstr Surg. 2009;123(3):865‐876. PubMed

Chuang DC, Lu JC, Chang TN, Laurence VG. Comparison of functional results after cross‐face nerve graft‐, spinal accessory nerve‐, and masseter nerve‐innervated gracilis for facial paralysis reconstruction: the Chang Gung experience. Ann Plast Surg. 2018;81(6S):S21‐S29. PubMed

Watanabe Y, Akizuki T, Ozawa T, Yoshimura K, Agawa K, Ota T. Dual innervation method using one‐stage reconstruction with free latissimus dorsi muscle transfer for re‐animation of established facial paralysis: simultaneous reinnervation of the ipsilateral masseter motor nerve and the contralateral facial nerve to improve the quality of smile and emotional facial expressions. J Plast Reconstr Aesthet Surg. 2009;62(12):1589‐1597. PubMed

Biglioli F, Colombo V, Tarabbia F, et al. Double innervation in free‐flap surgery for long‐standing facial paralysis. J Plast Reconstr Aesthet Surg. 2012;65(10):1343‐1349. PubMed

Cardenas‐Mejia A, Covarrubias‐Ramirez JV, Bello‐Margolis A, Rozen S. Double innervated free functional muscle transfer for facial reanimation. J Plast Surg Hand Surg. 2015;49(3):183‐188. PubMed

Kim MJ, Kim HB, Jeong WS, Choi JW, Kim YK, Oh TS. Comparative study of 2 different innervation techniques in facial reanimation: cross‐face nerve graft‐innervated versus double‐innervated free Gracilis muscle transfer. Ann Plast Surg. 2020;84(2):188‐195. PubMed

Oh TS, Kim HB, Choi JW, Jeong WS. Facial reanimation with masseter nerve‐innervated free gracilis muscle transfer in established facial palsy patients. Arch Plast Surg. 2019;46(2):122‐128. PubMed PMC

Tzafetta K, al‐Hassani F, Pinto‐Lopes R, Wade RG, Ahmad Z. Long‐term outcomes of dual innervation in functional muscle transfers for facial palsy. J Plast Reconstr Aesthet Surg. 2021;74(10):2664‐2673. PubMed

McNeely MM, Liang F, Makar K, Vercler CJ, Kuzon W. Two‐stage dual‐nerve facial reanimation: outcomes and complications in a series of pediatric patients. Plast Surg. 2021;29(4):280‐286. PubMed PMC

Li D, Wan H, Feng J, et al. Comparison of hemihypoglossal‐ and accessory‐facial neurorrhaphy for treating facial paralysis in rats. J Neurol Sci. 2014;347(1–2):235‐241. PubMed

Hwang K, Kim SG, Kim DJ. Hypoglossal‐facial nerve anastomosis in the rabbits using laser welding. Ann Plast Surg. 2008;61(4):452‐456. PubMed

Millesi E, Suchyta M, Wang H, Mardini S. Anatomic analysis of masseteric‐to‐zygomatic nerve transfer in rat and pig models. Plast Reconstr Surg Glob Open. 2023;11(10):e5344. PubMed PMC

Rab M, Haslik W, Grünbeck M, et al. Free functional muscle transplantation for facial reanimation: experimental comparison between the one‐ and two‐stage approach. J Plast Reconstr Aesthet Surg. 2006;59(8):797‐806. PubMed

Klebuc MJ, Xue AS, Doval AF. Dual innervation of free functional muscle flaps in facial paralysis. Facial Plast Surg Clin North Am. 2021;29(3):431‐438. PubMed

Bianchi B, Bergonzani M, Stella E, et al. Supercharged massetric‐facial cross‐graft for gracilis reinnervation in unilateral facial palsy treatment. Microsurgery. 2022;42(3):231‐238. PubMed

Sforza C, Frigerio A, Mapelli A, et al. Double‐powered free gracilis muscle transfer for smile reanimation: a longitudinal optoelectronic study. J Plast Reconstr Aesthet Surg. 2015;68(7):930‐939. PubMed

Deramo PJ, Seitz AJ, Shakir S, et al. Dual‐innervated free gracilis muscle transfer for facial reanimation in children. Ann Plast Surg. 2022;89(5):538‐542. PubMed

Catapano J, Demsey DRB, Ho ES, Zuker RM, Borschel GH. Cross‐face nerve grafting with infraorbital nerve pathway protection: anatomic and histomorphometric feasibility study. Plast Reconstr Surg Glob Open. 2016;4(9):e1037. PubMed PMC

Hizay A, Ozsoy U, Demirel BM, et al. Use of a Y‐tube conduit after facial nerve injury reduces collateral axonal branching at the lesion site but neither reduces polyinnervation of motor endplates nor improves functional recovery. Neurosurgery. 2012;70(6):1544‐1556. discussion 1556. PubMed

Ozsoy U, Demirel BM, Hizay A, et al. Manual stimulation of the whisker pad after hypoglossal‐facial anastomosis (HFA) using a Y‐tube conduit does not improve recovery of whisking function. Exp Brain Res. 2014;232(6):2021‐2033. PubMed

Snyder‐Warwick AK, Fattah AY, Zive L, Halliday W, Borschel GH, Zuker RM. The degree of facial movement following microvascular muscle transfer in pediatric facial reanimation depends on donor motor nerve axonal density. Plast Reconstr Surg. 2015;135(2):370e‐381e. PubMed

Manktelow RT, Tomat LR, Zuker RM, Chang M. Smile reconstruction in adults with free muscle transfer innervated by the masseter motor nerve: effectiveness and cerebral adaptation. Plast Reconstr Surg. 2006;118(4):885‐899. PubMed

Buendia J, Loayza FR, Luis EO, Celorrio M, Pastor MA, Hontanilla B. Functional and anatomical basis for brain plasticity in facial palsy rehabilitation using the masseteric nerve. J Plast Reconstr Aesthet Surg. 2016;69(3):417‐426. PubMed

Lenz Y, Kiefer J, Dietrich F, Stark GB, Eisenhardt SU. Pre‐operative masseter muscle EMG activation during smile predicts synchronicity of smile development in facial palsy patients undergoing reanimation with the masseter nerve: a prospective cohort study. J Plast Reconstr Aesthet Surg. 2019;72(3):505‐512. PubMed

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...