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深入了解髋内收肌功能:通过解剖学和MRI评估揭示的内旋能力

Toward a Better Understanding of Hip Adductor Function: Internal Rotation Capability Revealed by Anatomical and MRI Evaluation.

作者信息

Hirano Kazuhiro, Kinoshita Kazuo, Senoo Atsushi, Watanabe Masaru

机构信息

Department of Molecular Physiology, The Jikei University School of Medicine, Tokyo 105-8461, Japan.

Department of Rehabilitation Medicine, The Jikei University Hospital, Tokyo 105-0003, Japan.

出版信息

J Funct Morphol Kinesiol. 2025 Sep 16;10(3):354. doi: 10.3390/jfmk10030354.

Abstract

: At present, the rotational function of the hip adductor muscle group remains unclear. This study aimed to clarify the rotational function and stabilizing role of the pectineus, adductor longus, and adductor brevis (adductor muscle group) based on anatomical findings and T values (ms) obtained from magnetic resonance imaging (MRI). T values are prolonged in tissues with higher water content, and in skeletal muscle, it has been demonstrated that T values increase in proportion to exercise intensity. : Using fixed specimens ( = 6, aged 61-96 years), we observed the three-dimensional arrangement of muscles in the neutral position of the hip joint and observed the extension or shortening of muscles associated with passive maximum internal and external rotation of the hip joint. In addition, we evaluated the activity of the adductor muscle group by T values (ms) from MRI pre- and post-internal rotation (forward step with the left leg) and pre- and post-external rotation (backward step with the left leg) movements of the right hip joint in a standing position ( = 8, healthy adult subjects, mean age 29.1 ± 5.3 years). : Regarding functional anatomy, the arrangement of the gluteus minimus and adductor muscle groups was almost parallel across the femoral neck. In the evaluation of adductor muscle group activity using MRI, the percent change in T values (%) of the pectineus was 6.38 ± 1.35 pre- and post-internal rotation and 1.35 ± 0.71 pre- and post-external rotation, whereas that of the adductor longus and brevis was 4.84 ± 1.31 pre- and post-internal rotation and 1.31 ± 0.68 pre- and post-external rotation. The percent change in T values pre- and post-internal rotation exercise was significantly greater than that pre- and post-external rotation exercise in the pectineus, adductor longus, and brevis muscles ( < 0.05). : The adductor muscle groups are suggested to contribute to joint stability in the coronal plane and provide joint internal rotation in the standing position.

摘要

目前,髋内收肌群的旋转功能尚不清楚。本研究旨在基于解剖学发现以及从磁共振成像(MRI)获得的T值(毫秒),阐明耻骨肌、长收肌和短收肌(内收肌群)的旋转功能及稳定作用。在含水量较高的组织中T值会延长,并且在骨骼肌中,已证明T值与运动强度成正比。

我们使用固定标本(n = 6,年龄61 - 96岁),观察髋关节中立位时肌肉的三维排列,并观察髋关节被动最大内旋和外旋时肌肉的伸长或缩短情况。此外,我们通过站立位时右髋关节内旋(左腿向前迈步)和外旋(左腿向后迈步)运动前后的MRI T值(毫秒)评估内收肌群的活动(n = 8,健康成年受试者,平均年龄29.1±5.3岁)。

关于功能解剖学,臀小肌和内收肌群的排列在股骨颈上几乎平行。在使用MRI评估内收肌群活动时,耻骨肌T值的百分比变化(%)在旋转前后为6.38±1.35,外旋前后为1.35±0.71,而长收肌和短收肌在旋转前后为4.84±1.31,外旋前后为1.31±0.68。耻骨肌、长收肌和短收肌内旋运动前后T值的百分比变化显著大于外旋运动前后(P < 0.05)。

提示内收肌群有助于冠状面的关节稳定,并在站立位时提供关节内旋。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd2f/12452323/c072023dd562/jfmk-10-00354-g001.jpg

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