Department of Neurosurgery, Pennsylvania State University College of Medicine, Hershey , Pennsylvania , USA.
Department of Radiology, Pennsylvania State University College of Medicine, Hershey , Pennsylvania , USA.
Oper Neurosurg (Hagerstown). 2024 Oct 1;27(4):471-474. doi: 10.1227/ons.0000000000001155. Epub 2024 Apr 16.
Cubital tunnel syndrome is the second most common nerve entrapment, and understanding the anatomy is crucial for the success of the nerve release. During ulnar nerve release for cubital tunnel syndrome, a motor branch is frequently encountered crossing anteriorly over the ulnar nerve from its medial/ulnar side proximally to the lateral/radial side distally. Little has been noted about this crossing branch in the literature. In this anatomic study, we sought to characterize this branch further and discuss its potential significance in cubital tunnel release.
We performed a cadaveric dissection of 48 elbow specimens as if performing a cubital tunnel release. We assessed for the presence of the crossing motor branch of the ulnar nerve and measured the distance from the medial epicondyle to the branch takeoff and to its target of innervation.
Of our 48 specimens, 34 (71%) were noted to have a crossing motor branch at the area of compression by the deep flexor carpi ulnaris muscle fascia (common aponeurosis). On average, the distance from the medial epicondyle to the branch origin from the ulnar nerve was 18.2 mm and to the target muscle innervation was 28.4 mm.
Identifying this branch is important for performing a cubital tunnel release, and awareness of this anatomy during ulnar nerve decompression procedures may help avoid injury to this motor branch.
肘管综合征是第二常见的神经卡压症,理解其解剖结构对于神经松解的成功至关重要。在治疗肘管综合征时,经常会遇到尺神经前方的运动支从其内侧/尺侧近端向外侧/桡侧远端穿过。文献中对此穿过支的描述甚少。在这项解剖研究中,我们试图进一步描述该分支,并讨论其在肘管松解术中的潜在意义。
我们对 48 个肘部标本进行了尸体解剖,就像进行肘管松解术一样。我们评估了尺神经的交叉运动支的存在,并测量了从内侧髁到分支起始点以及到其目标神经支配的距离。
在我们的 48 个标本中,34 个(71%)在深屈肌腕尺侧肌筋膜(共同腱膜)压迫区域发现有交叉运动支。平均而言,从内侧髁到尺神经分支起点的距离为 18.2mm,到目标肌肉神经支配的距离为 28.4mm。
识别该分支对于进行肘管松解术很重要,在尺神经减压过程中了解该解剖结构可能有助于避免损伤该运动支。