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肘管:解剖学、组织学及生物力学研究

The cubital tunnel: anatomic, histologic, and biomechanical study.

作者信息

Green J R, Rayan G M

机构信息

Department of Orthopaedic Surgery and Rehabilitation, University of Oklahoma Health Science Center, Oklahoma City, USA.

出版信息

J Shoulder Elbow Surg. 1999 Sep-Oct;8(5):466-70. doi: 10.1016/s1058-2746(99)90078-2.

Abstract

The anatomy of the cubital tunnel was examined in 19 human cadaveric elbows. Pressure measurements within the cubital tunnel were recorded at the medial epicondyle level and 3 cm distal to the epicondyle in various positions of elbow flexion. Histologic examination of the ulnar nerve was carried out at different levels. A common flexor aponeurosis (CFA) was consistently present in all specimens between the flexor carpi ulnaris and the flexor digitorum superficialis. Pressure measurements were greater distally at the CFA level than proximally in the fibrosseous tunnel. The pressure inside the cubital tunnel increased with increasing flexion at the 3 levels examined. Releasing the arcuate ligament decreased the pressure in the fibrosseous tunnel but not distally at the level of the CFA. An oligofascicular pattern of the ulnar nerve was observed at the level of the medial epicondyle and CFA. This finding was in contrast to the polyfascicular pattern present both proximal and distal to these structures. The findings of our study have shown that an intimate anatomic relationship exists between the ulnar nerve and the CFA. This proximity appears to affect the biomechanics of the cubital tunnel and to contribute to nerve compression by the CFA in the distal tunnel. We also found that elbow flexion increases the pressure in the distal tunnel and that releasing the arcuate ligament alone does not decompress the ulnar nerve in the distal tunnel.

摘要

对19具人类尸体肘部的肘管解剖结构进行了检查。在肘管内,于肱骨内上髁水平及该髁远端3厘米处,在肘关节不同屈曲位置记录压力测量值。对尺神经在不同水平进行组织学检查。在尺侧腕屈肌和指浅屈肌之间的所有标本中均始终存在一条共同屈肌腱膜(CFA)。在纤维骨性隧道中,CFA水平远端的压力测量值高于近端。在所检查的3个水平处,肘管内的压力随屈曲增加而升高。松解弓状韧带可降低纤维骨性隧道内的压力,但在CFA水平的远端则无此效果。在肱骨内上髁和CFA水平观察到尺神经呈少束状模式。这一发现与这些结构近端和远端存在的多束状模式形成对比。我们的研究结果表明,尺神经与CFA之间存在密切的解剖关系。这种毗邻关系似乎会影响肘管的生物力学,并导致CFA在远端隧道对神经产生压迫。我们还发现,肘关节屈曲会增加远端隧道内的压力,且仅松解弓状韧带并不能解除远端隧道内尺神经的压迫。

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