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首页> 外文期刊>Clinical anatomy: official journal of the American Association of Clinical Anatomists & the British Association of Clinical Anatomists >Anatomy and biomechanics of gluteus maximus and the thoracolumbar fascia at the sacroiliac joint
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Anatomy and biomechanics of gluteus maximus and the thoracolumbar fascia at the sacroiliac joint

机译:sa关节的臀大肌和胸腰筋膜的解剖和生物力学

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Biomechanical models predict that recruitment of gluteus maximus (GMax) will exert a compressive force across the sacroiliac joint (SIJ), yet this muscle requires morphologic assessment. The aims of this study were to document GMax's proximal attachments and assess their capacity to generate forces including compressive force at the SIJ. In 11 embalmed cadaver limbs, attachments of GMax crossing the SIJ were dissected and their fascicle orientation, length and attachment volume documented. The physiological cross-sectional area (PCSA) of each attachment was calculated along with its estimated maximum force at the SIJ and lumbar spine. GMax fascicles originated from the gluteus medius fascia, ilium, thoracolumbar fascia, erector spinae aponeurosis, sacrum, coccyx, dorsal sacroiliac and sacrotuberous ligaments in all specimens. Their mean fascicle orientation ranged from 32 to 45° below horizontal and mean length from 11 to 18 cm. The mean total PCSA of GMax was 26 cm2 (range 16-36), of which 70% crossed the SIJ. The average maximum force predicted to be generated by GMax's total attachments crossing each SIJ was 891 N (range 572-1,215), of which 70% (702 N: range 450-1,009) could act perpendicular to the plane of the SIJ. The capacity of GMax to generate an extensor moment at lower lumbar segments was estimated at 4 Nm (range 2-9.5). GMax may generate compressive forces at the SIJ through its bony and fibrous attachments. These may assist effective load transfer between lower limbs and trunk. Clin. Anat. 27:234-240, 2014.
机译:生物力学模型预测,臀大肌(GMax)的募集将在整个sa关节(SIJ)上施加压缩力,但是该肌肉需要进行形态学评估。这项研究的目的是记录GMax的近端附件,并评估它们在SIJ上产生包括压缩力在内的力量的能力。在11个经过防腐处理的尸体四肢中,解剖了穿过SIJ的GMax附件,并记录了其束的方向,长度和附件体积。计算每个附件的生理截面积(PCSA)以及在SIJ和腰椎处的估计最大力。 GMax分束起源于所有标本中的臀中筋膜,i骨,胸腰椎筋膜,竖脊肌腱膜,骨,尾骨,sa背韧带和tube结节韧带。它们的平均束方向在水平面以下32至45°之间,平均长度在11至18 cm之间。 GMax的平均PCSA平均为26 cm2(范围16-36),其中70%超过了SIJ。预计由GMax穿过每个SIJ的总附件产生的平均最大力为891 N(范围572-1,215),其中70%(702 N:范围450-1,009)可以垂直于SIJ的平面作用。 GMax在下腰段产生伸肌力矩的能力估计为4 Nm(范围2-9.5)。 GMax可能通过其骨骼和纤维附件在SIJ处产生压缩力。这些可以帮助下肢和躯干之间有效的负荷转移。临床阿纳特2014年27:234-240。

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