首页> 外文期刊>Journal of Hand Surgery. American Volume >Effect of finger ulnar deviation on gliding resistance of the flexor digitorum profundus tendon within the A1 and A2 pulley complex.
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Effect of finger ulnar deviation on gliding resistance of the flexor digitorum profundus tendon within the A1 and A2 pulley complex.

机译:手指尺骨偏斜对A1和A2滑轮复合体中指前屈屈肌腱滑移阻力的影响。

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摘要

PURPOSE: To evaluate the effect of ulnar deviation of the finger on gliding resistance of the flexor digitorum profundus tendon within the A1 and A2 pulley complex. METHODS: Thirty-two human cadaveric fingers (index through small fingers) were used. The gliding resistance was measured at 5 different angles of ulnar deviation (0 degrees, 15 degrees, 30 degrees, 45 degrees, 60 degrees). RESULTS: There was a significant increase in gliding resistance with increased ulnar deviation. The gliding resistances at 0 degrees, 15 degrees, 30 degrees, 45 degrees, and 60 degrees of ulnar deviation were 0.40+/-0.13 N, 0.44+/-0.13 N, 0.55+/-0.17 N, 0.74+/-0.21 N, and 1.02+/-0.30 N, respectively. The gliding resistance at 60 degrees was significantly greater than at all other angles; 45 degrees ulnar deviation had significantly higher gliding resistance than 0 degrees, 15 degrees, and 30 degrees; and 30 degrees ulnar deviation had significantly higher gliding resistance than 0 degrees. CONCLUSIONS: A greater angle of ulnar deviation causes higher gliding resistance during motion of the flexor digitorum profundus tendon within the A1 and A2 pulley complex. The gliding resistance increases significantly at angles greater than 30 degrees of ulnar deviation. The increased tendon loading needed to overcome increased gliding resistance caused by ulnar deviation could result in a vicious cycle of progressive ulnar deviation. Although mild degrees of ulnar deviation may be well tolerated mechanically a reasonable therapeutic guideline might be to prevent deviation from exceeding 30 degrees.
机译:目的:评估手指尺骨偏斜对A1和A2滑轮复合体中指前屈屈肌腱滑动阻力的影响。方法:使用32只人体尸体手指(通过小指食指)。在尺骨偏斜的5个不同角度(0度,15度,30度,45度,60度)下测量了滑行阻力。结果:随着尺骨偏斜的增加,滑行阻力显着增加。尺骨偏角0度,15度,30度,45度和60度时的滑行阻力为0.40 +/- 0.13 N,0.44 +/- 0.13 N,0.55 +/- 0.17 N,0.74 +/- 0.21 N ,和1.02 +/- 0.30N。 60度时的滑行阻力明显大于所有其他角度的滑行阻力。尺骨偏斜45度比0度,15度和30度具有明显更高的滑行阻力;尺侧偏角为30度的滑行阻力明显高于0度。结论:尺骨偏斜角度越大,在A1和A2滑轮复合体中的指前屈屈肌腱运动期间,滑动阻力越大。在尺骨偏角大于30度时,滑行阻力显着增加。克服因尺骨偏斜引起的增加的滑行阻力所需的增加肌腱负荷可能导致进行性尺骨偏斜的恶性循环。尽管在机械上可以很好地忍受轻微的尺骨偏斜度,但是合理的治疗指南可能是防止偏斜度超过30度。

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