Lim A Y, Kumar V P, Hua J, Pereira B P, Pho R W
Department of Hand and Reconstructive Microsurgery, National University Hospital, National University of Singapore, Singapore.
Plast Reconstr Surg. 1999 Mar;103(3):1046-51; quiz 1052, discussion 1053.
After studying this article, the participant should be able to: 1. Report on the vascular supply and innervation pattern of the flexor carpi ulnaris. 2. Describe the muscle architecture of the flexor carpi ulnaris, including the physiological cross-sectional area and fiber length. 3. State the uses of the flexor carpi ulnaris both for resurfacing defects in the vicinity of the elbow and in local functional tendon transfers. 4. Understand the principles of splitting skeletal muscles based on neurovascular supply to enhance its utilization in reconstructive procedures. The aim of this study was to describe the intramuscular innervation and vascular supply of the human flexor carpi ulnaris, with confirmation of findings by a similar study in the primate. Two distinct intramuscular nerve branches running parallel to each other, on either side of a central tendon, from the proximal quarter of the muscle belly to its insertion were found. The muscle could then be split into a humeral and an ulnar compartment, each with its own primary nerve branch. Perfusion studies confirmed the adequacy of circulation to the two compartments. In the primate flexor carpi ulnaris, electrical stimulation of the respective branches revealed independent contraction of each compartment. This study provides useful information for enabling the local transfer of the muscle as a whole, both for resurfacing in the vicinity of the elbow and for functional tendon transfers. It will also enable the transfer of the muscle as one or two separate compartments (for resurfacing, in tendon transfers for muscle paralysis, congenital defects, and muscle defects resulting from trauma, and after resections for neoplasm and infection).
在学习本文后,参与者应能够:1. 报告尺侧腕屈肌的血管供应和神经支配模式。2. 描述尺侧腕屈肌的肌肉结构,包括生理横截面积和纤维长度。3. 阐述尺侧腕屈肌在肘部附近创面修复及局部功能性肌腱转位中的用途。4. 理解基于神经血管供应来劈开骨骼肌以提高其在重建手术中利用率的原则。本研究的目的是描述人类尺侧腕屈肌的肌内神经支配和血管供应,并通过在灵长类动物中进行的类似研究来证实研究结果。发现有两条不同的肌内神经分支,从肌腹近端四分之一处至其止点,在一条中央肌腱的两侧彼此平行走行。然后该肌肉可被分为一个肱骨部和一个尺骨部,每个部分都有自己的主要神经分支。灌注研究证实了这两个部分血液循环的充足性。在灵长类动物的尺侧腕屈肌中,对相应分支进行电刺激显示每个部分可独立收缩。本研究为将该肌肉作为一个整体进行局部转位提供了有用信息,既用于肘部附近的创面修复,也用于功能性肌腱转位。它还将使该肌肉能够作为一个或两个单独的部分进行转位(用于创面修复、肌肉麻痹、先天性缺陷以及创伤导致的肌肉缺损的肌腱转位,以及肿瘤和感染切除术后)。