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基于咬肌神经的面神经麻痹重建。

Masseter nerve-based facial palsy reconstruction.

作者信息

Park Hojin, Jeong Seong Su, Oh Tae Suk

机构信息

Department of Plastic and Reconstructive Surgery, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Korea.

出版信息

Arch Craniofac Surg. 2020 Dec;21(6):337-344. doi: 10.7181/acfs.2020.00682. Epub 2020 Dec 20.

Abstract

Facial paralysis is a devastating disease, the treatment of which is challenging. The use of the masseteric nerve in facial reanimation has become increasingly popular and has been applied to an expanded range of clinical scenarios. However, appropriate selection of the motor nerve and reanimation method is vital for successful facial reanimation. In this literature review on facial reanimation and the masseter nerve, we summarize and compare various reanimation methods using the masseter nerve. The masseter nerve can be used for direct coaptation with the paralyzed facial nerve for temporary motor input during cross-facial nerve graft regeneration and for double innervation with the contralateral facial nerve. The masseter nerve is favorable because of its proximity to the facial nerve, limited donor site morbidity, and rapid functional recovery. Masseter nerve transfer usually leads to improved symmetry and oral commissure excursion due to robust motor input. However, the lack of a spontaneous, effortless smile is a significant concern with the use of the masseter nerve. A thorough understanding of the advantages and disadvantages of the use of the masseter nerve, along with careful patient selection, can expand its use in clinical scenarios and improve the outcomes of facial reanimation surgery.

摘要

面瘫是一种严重的疾病,其治疗具有挑战性。咬肌神经在面部重建中的应用越来越普遍,并已应用于更广泛的临床情况。然而,正确选择运动神经和重建方法对于成功的面部重建至关重要。在这篇关于面部重建和咬肌神经的文献综述中,我们总结并比较了使用咬肌神经的各种重建方法。咬肌神经可用于与瘫痪的面神经直接吻合,在跨面神经移植再生期间提供临时运动输入,也可用于与对侧面神经进行双重神经支配。咬肌神经因其靠近面神经、供体部位发病率低以及功能恢复快而具有优势。咬肌神经转移通常会因强大的运动输入而使对称性和口角运动得到改善。然而,使用咬肌神经时缺乏自然、轻松的微笑是一个重大问题。全面了解使用咬肌神经的优缺点,并仔细选择患者,可以扩大其在临床情况中的应用,并改善面部重建手术的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6dba/7933725/92ee9e4a74ef/acfs-2020-00682f1.jpg

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