Fridén Jan, Lovering Richard M, Lieber Richard L
Department of Hand Surgery, Sahlgrenska University Hospital, Göteborg, Sweden.
J Hand Surg Am. 2004 Sep;29(5):909-14. doi: 10.1016/j.jhsa.2004.04.028.
The purpose of this study was to understand the detailed architectural properties of the human flexor carpi radialis (FCR) and flexor carpi ulnaris (FCU) muscles and their implications for tendon transfer surgery.
Muscle fiber length was measured in 6 separate regions of the FCU and FCR from 10 cadaveric specimens. Sarcomere length was measured by laser diffraction for normalization. Moment arms were estimated by measuring tendon excursion with respect to joint angle. The position of entry of the motor nerve branches into each muscle also was measured to establish limits for the safe length of muscle mobilization.
Muscle fiber length varied significantly along both the FCU and FCR. Fiber length variability in the FCU was twice that of the FCR. Although the average fiber length for both muscles across all regions was similar (62.6 +/- 2.1 mm for the FCR and 63.1 +/- 4.0 mm for the FCU), the proximal fibers of the FCU were longer compared with the proximal fibers of the FCR and the distal fibers of the FCU were shorter compared with the distal fibers of the FCR. The 99% confidence interval for the second nerve branch entry into the muscles was located approximately 69 mm distal to the medial epicondyle for the FCU and approximately 73 mm distal for the FCR.
These data show different designs of both the FCU and the FCR. The functional significance of fiber length variability is not clear but imply that, when used in tendon transfer, the properly mobilized FCU has a much greater excursion.
本研究旨在了解人类桡侧腕屈肌(FCR)和尺侧腕屈肌(FCU)的详细结构特性及其对肌腱转位手术的意义。
从10具尸体标本的FCU和FCR的6个不同区域测量肌纤维长度。通过激光衍射测量肌节长度以进行标准化。通过测量肌腱相对于关节角度的移动来估计力臂。还测量了运动神经分支进入每块肌肉的入口位置,以确定肌肉游离安全长度的界限。
FCU和FCR的肌纤维长度沿肌肉均有显著变化。FCU的纤维长度变异性是FCR的两倍。尽管所有区域两块肌肉的平均纤维长度相似(FCR为62.6±2.1mm,FCU为63.1±4.0mm),但FCU的近端纤维比FCR的近端纤维长,FCU的远端纤维比FCR的远端纤维短。FCU第二条神经分支进入肌肉的99%置信区间位于内上髁远端约69mm处,FCR位于约73mm处。
这些数据显示了FCU和FCR的不同结构。纤维长度变异性的功能意义尚不清楚,但表明在肌腱转位中,适当游离的FCU有更大的移动度。