Utilizing Lateral Sprouting Axons to Reinnervate a Transferred Free Muscle to Enhance Distal Muscle Recovery When Performing High-Level Nerve Repair: Experimental Rat Study.

IF 2.2 3区 医学 Q2 SURGERY
Chung-Kan Tsao, Shih-Ming Jung, David Chwei-Chin Chuang
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引用次数: 0

Abstract

Background:  High-level median or ulnar nerve injuries and repairs typically result in suboptimal reinnervation of distal muscles. Functioning free muscle transplantation (FFMT) is increasingly recognized as an effective method to restore function in chronic muscle denervation cases. This study investigates the efficacy of using an additional FFMT, neurotized by lateral sprouting axons from a repaired high-level mixed nerve in the upper limb, to enhance distal hand function.

Methods:  Thirty-five Sprague-Dawley rats were divided into four groups to evaluate the proposed FFMT technique. The infraclavicular median nerve (MN) was transected and repaired in each animal. The nearby musculocutaneous nerve (MCN) was transected, and the terminal nerve after the biceps muscle was divided and embedded into the biceps muscle, creating an FFMT model. The distal stump of the MCN was anchored to the MN, 1.5 mm distal to the MN repair site. Assessments of nerve and muscle function were conducted 4 months postoperatively.

Results:  Behavioral analysis, along with measurements of biceps muscle weight and tetanic contraction force, indicated significant recovery in the biceps muscle. Histological staining confirmed reinnervation of the MCN from the repaired MN. Additionally, functional examination of the flexor digitorum superficialis muscle revealed no deterioration associated with the repaired MN.

Conclusion:  The study demonstrates the potentiality of utilizing lateral sprouting axons from a repaired high-level MN to reinnervate an additional FFMT to enhance flexor digitorum superficialis function. The surgical strategy promises recovery of distal muscle function and implies for diverse clinical applications.

在进行高水平神经修复时,利用外侧发芽轴突重建游离肌肉以增强远端肌肉恢复:实验大鼠研究。
背景:高位正中或尺神经损伤和修复通常会导致远端肌肉的次优再神经支配。无功能肌肉移植(FFMT)越来越被认为是恢复慢性肌肉失神经病例功能的有效方法。本研究探讨了使用额外的FFMT的效果,该FFMT由修复的上肢高级混合神经的外侧发芽轴突神经化,以增强远端手功能。方法:将35只Sprague-Dawley大鼠分为4组,对所提出的FFMT技术进行评价。每只动物锁骨下正中神经(MN)横切并修复。横断附近的肌皮神经(MCN),将二头肌后的末梢神经分割并嵌入二头肌内,建立FFMT模型。MCN的远端残端锚定在MN上,距离MN修复部位远1.5 mm。术后4个月进行神经和肌肉功能评估。结果:行为分析,以及肱二头肌重量和强直收缩力的测量,表明肱二头肌明显恢复。组织学染色证实修复后的小细胞神经有再神经支配。此外,对指浅屈肌的功能检查显示,修复后的MN没有出现退化。结论:该研究证明了利用修复后的高级正中神经的外侧发芽轴突来重建额外的FFMT以增强指浅屈肌功能的潜力。手术策略承诺远端肌肉功能的恢复,并意味着多种临床应用。
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来源期刊
CiteScore
4.50
自引率
28.60%
发文量
80
审稿时长
1 months
期刊介绍: The Journal of Reconstructive Microsurgery is a peer-reviewed, indexed journal that provides an international forum for the publication of articles focusing on reconstructive microsurgery and complex reconstructive surgery. The journal was originally established in 1984 for the microsurgical community to publish and share academic papers. The Journal of Reconstructive Microsurgery provides the latest in original research spanning basic laboratory, translational, and clinical investigations. Review papers cover current topics in complex reconstruction and microsurgery. In addition, special sections discuss new technologies, innovations, materials, and significant problem cases. The journal welcomes controversial topics, editorial comments, book reviews, and letters to the Editor, in order to complete the balanced spectrum of information available in the Journal of Reconstructive Microsurgery. All articles undergo stringent peer review by international experts in the specialty.
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