上臂靶向肌肉再神经支配:功能解剖学研究

Feng Li, Yong Yang, Bin Li, Mengqi Cao, Qipei Wei, Weiguang Zhang
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摘要

研究背景本研究旨在准确定位控制上臂手部运动的神经束,以增强定向肌肉神经再支配后的运动意向表达:方法:在 6 具新鲜尸体标本上从远端到近端解剖了正中神经、尺神经和桡神经的右侧。在肩峰下 10 厘米和 20 厘米处测量功能束的断面位置和直径。测量了肌肉再支配目标肌肉的主要肌肉分支的直径:结果:手指和手腕屈曲的正中神经分支主要位于肩峰下 10 厘米和 20 厘米平面的 9 点钟和 12 点钟位置之间,神经束直径分别为 2.07 毫米和 2.04 毫米。手指和手腕屈曲的尺神经分支主要位于 8 点钟和 12 点钟位置之间,直径分别为 1.80 毫米和 1.99 毫米。手指和手腕伸展的桡神经分支主要位于肩峰下 10 厘米平面的 10 点钟和 2 点钟位置之间,以及肩峰下 20 厘米平面的 6 点钟和 12 点钟位置之间,直径分别为 2.57 毫米和 3.03 毫米:支配屈指和伸指的神经束分布在正中神经干、尺神经干和桡神经干相对固定的区域,其直径与目标肌肉的肌支密切相关。
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Targeted Muscle Reinnervation in the Upper Arm: A Functional Anatomical Study.

Background: The aim of this study was to accurately locate the neural fascicle controlling hand movement in the upper arm, to enhance expression of motor intention after targeted muscle reinnervation.

Methods: The right sides of the median, ulnar and radial nerves were dissected from distal to proximal in 6 fresh cadaver specimens. The sectional location and diameter of the functional fascicle were measured at 10 and 20 cm below the acromion. The diameter of the main muscle branches of muscle reinnervation target muscles was measured.

Results: The median nerve branch of finger and wrist flexion was mainly located between the 9 and 12 o'clock positions in the plane 10 and 20 cm below the acromion, where the diameter of the nerve fascicle was 2.07 and 2.04 mm, respectively. The ulnar nerve branch of finger and wrist flexion was mainly located between the 8 and 12 o'clock positions, with a diameter of respectively 1.80 and 1.99 mm. The radial branch of finger and wrist extension was mainly located between the 10 and 2 o'clock positions in the plane 10 cm below the acromion and between 6 and 12 o'clock in the plane 20 cm below the acromion, with a diameter of respectively 2.57 and 3.03 mm.

Conclusions: The nerve fascicles innervating the flexor and extensor fingers were distributed in relatively constant regions of the median, ulnar and radial nerve trunks, and their diameters closely matched the muscle branches of the target muscle.

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