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Lumbo-pelvic biomechanics and quadratus lumborum asymmetry in cricket fast bowlers.

机译:蟋蟀快车盆中的Lumbo-pelvic生物力学和Quadratus Lumborum不对称。

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摘要

This study aimed to analyze lumbo-pelvic lateral flexion kinematics and kinetics in junior fast bowlers and compare bowlers with varying quadratus lumborum (QL) cross-sectional area (CSA) asymmetry profiles.Magnetic resonance imaging was used to determine QL CSA of 39 participants who also underwent three-dimensional analysis of their bowling action.Bowlers with greater than 10% QL asymmetry (n = 26) experienced a larger peak lumbo-pelvic lateral flexion; angle (21.6° ± 4.2°), angular velocity (314.9°·s ± 86.6°·s), moment (12.8 ± 2.5 N·m·kg·m), positive power (25.6 ± 12.6 W·kg·m), and negative power (48.6 ± 20.9 W·kg·m) compared with the bowlers with less than 10% asymmetry (n = 13) (angle = 18.1° ± 1.9°, angular velocity = 243.8°·s ± 64.9°·s, moment = 10.4 ± 2.8 N·m·kg·m, positive power = 14.7 ± 7.4 W·kg·m, and negative power = 33.8 ± 17.7 W·kg·m; P < 0.05).Fast bowlers with QL CSA asymmetry in excess of 10% experience increased lumbo-pelvic lateral flexion loads during bowling. As increased lateral flexion loads may increase the risk of spondylolysis development, the presence of large QL asymmetry may be a useful screening tool for identifying bowlers at risk of developing lumbar spondylolysis.
机译:本研究旨在分析初级快乐弯刀中的Lumbo-pelvic横向屈曲运动学和动力学,并比较具有不同Quadratus Lumborum(QL)横截面积(CSA)不对称性剖面的保龄球手。用于确定39名参与者的QL CSA的磁共振成像。还经历了对其保龄球作用的三维分析。具有大于10%Q1不对称(n = 26)的豆类经历了较大的峰骨盆横向屈曲;角度(21.6°±4.2°),角速度(314.9°·s±86.6°·s),时刻(12.8±2.5 n·m·kg·m),正功率(25.6±12.6 w·kg·m),与负电功率(48.6±20.9W·kg·m)与少于10%不对称(n = 13)(角度= 18.1°±1.9°,角速度= 243.8°·s±64.9°·s,时刻= 10.4±2.8 n·m·kg·m,正功率= 14.7±7.4 w·kg·m,负功率= 33.8±17.7 w·kg·m; p <0.05)。快速投球手用ql csa不对称超过10%的体验在保龄球期间增加了Lumbo-pelvic横向屈曲载荷。随着横向屈曲载荷的增加可能会增加脊髓裂解发育的风险,大QL不对称性的存在可以是用于识别开发腰脊髓裂解的风险的投放者的有用筛选工具。

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