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Use of intrinsic thumb muscles may help to improve lateral pinch function restored by tendon transfer.

机译:使用固有的拇指肌肉可能有助于改善由于腱转移而恢复的外侧捏功能。

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BACKGROUND: For surgical reconstruction of lateral pinch following tetraplegia, the function of the paralyzed flexor pollicis longus is commonly restored. The purpose of this study was to investigate if one of the intrinsic muscles could generate a more suitably directed thumb-tip force during lateral pinch than that of flexor pollicis longus. METHODS: Endpoint force resulting from 10 N applied to each thumb muscle was measured in eleven upper extremity cadaveric specimens. We utilized the Kruskal-Wallis test (alpha=0.05) to determine whether thumb-tip forces of intrinsic muscles were less directed toward the base of the thumb, i.e., proximally directed, than the thumb-tip force produced by flexor pollicis longus. Additionally, a biomechanical model was used to assess the effect of an increase in tendon force on intrinsic muscle endpoint forces. FINDINGS: All of the intrinsic muscles produced thumb-tip force vectors, ranging from 127 degrees to 156 degrees , that were significantly (P<0.009) less proximally directed than that of flexor pollicis longus (66 degrees (46 degrees )). A biomechanical model predicted that intrinsic muscle thumb-tip forces would vary non-linearly with tendon force. A 2-fold increase in tendon force produced, on average, a 2.3-fold increase in force magnitude and an 8 degrees shift in force direction across all intrinsic muscles. INTERPRETATION: This study suggests the possibility of using an intrinsic muscle, e.g., the flexor pollicis brevis (ulnar head), instead of flexor pollicis longus, to produce a more advantageously directed thumb-tip force during lateral pinch in the surgically-reconstructed tetraplegic thumb and thus potentially enhance function.
机译:背景:对于四肢瘫痪后外侧捏的手术重建,通常恢复瘫痪的屈肌屈曲的功能。这项研究的目的是调查一种内部肌肉是否比侧屈肌腱能在侧向收缩期间产生更合适的指尖力。方法:在11个上肢尸体标本中,测量了从10 N施加到每个拇指肌肉的端点力。我们使用Kruskal-Wallis检验(alpha = 0.05)来确定固有肌肉的拇指指尖力是否比由屈肌弯头产生的拇指指尖力更少地指向拇指的底部,即朝近侧方向。另外,使用生物力学模型来评估肌腱力量增加对固有肌肉终点力量的影响。研究发现:所有固有肌肉产生的指尖力向量范围从127度到156度,其远侧指点远比屈肌弯曲度(66度(46度))低(P <0.009)。生物力学模型预测,固有的肌肉指尖力会随着肌腱力的变化而非线性变化。肌腱力平均增加2倍,所有固有肌肉的力大小平均增加2.3倍,力方向移动8度。解释:这项研究表明,在手术重建的四肢瘫痪拇指的横向捏合过程中,可以使用内在的肌肉,例如短屈屈肌(尺头)代替长屈肌,产生更有利的指尖力因此有可能增强功能。

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