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马脊柱胸、腰和荐骨区域深部脊肌的参数和功能分析。

Parameters and functional analysis of the deep epaxial muscles in the thoracic, lumbar and sacral regions of the equine spine.

机构信息

Department of Health and Equine Production, School of Veterinary Sciences, Buenos Aires University, Buenos Aires, Argentina.

Department of Anatomy, School of Veterinary Sciences, Buenos Aires University, Buenos Aires, Argentina.

出版信息

J Anat. 2018 Jul;233(1):55-63. doi: 10.1111/joa.12818. Epub 2018 Apr 30.

Abstract

The epaxial muscles produce intervertebral rotation in the transverse, vertical and axial axes. These muscles also counteract the movements induced by gravitational and inertial forces and movements produced by antagonistic muscles and the intrinsic muscles of the pelvic limb. Their fascicles are innervated by the dorsal branch of the spinal nerve, which corresponds to the metamere of its cranial insertion in the spinous process. The structure allows the function of the muscles to be predicted: those with long and parallel fibres have a shortening function, whereas the muscles with short and oblique fibres have an antigravity action. In the horse, the multifidus muscle of the thoracolumbar region extends in multiple segments of two to eight vertebral motion segments (VMS). Functionally, the multifidus muscle is considered a spine stabiliser, maintaining VMS neutrality during spine rotations. However, there is evidence of the structural and functional heterogeneity of the equine thoracolumbar multifidus muscle, depending on the VMS considered, related to the complex control of the required neuromuscular activity. Osteoarticular lesions of the spine have been directly related to asymmetries of the multifidus muscle. The lateral (LDSM) and medial (MDSM) dorsal sacrocaudal muscles may be included in the multifidus complex, the function of which is also unclear in the lumbosacral region. The functional parameters of maximum force (F ), maximum velocity of contraction (V ) and joint moment (M) of the multifidus muscles inserted in the 4th, 9th, 12th and 17th thoracic and 3rd and 4th lumbar vertebrae of six horses were studied postmortem (for example: 4MT4 indicates the multifidus muscle that crosses four metameres with cranial insertion in the T4 vertebra). Furthermore, the structural and functional characteristics of LDSM and MDSM were determined. Data were analysed by analysis of variance (anova) in a randomised complete block design (P ≤ 0.05). For some muscles, the ordering of V values was almost opposite to that of F values, generally indicating antigravity or dynamic functions, depending on the muscle and VMS. The muscles 3MT12, 3ML3 and 4ML4 exhibited high F and low V values, indicating a stabilising action. The very long 7MT4 and 8MT4 multifidus had low F and high V values, suggesting a shortening action. However, some functional characteristics of interest did not fall within these general observations, also indicating a dual action. In summary, the results of the analysis of various structural and functional parameters confirm the structural and functional heterogeneity of the equine thoracolumbar multifidus complex, depending on the VMS, regardless of the number of metameres crossing each fascicle. To clarify the functions of the equine multifidus muscle complex, this study aimed to assess its functional parameters in thoracolumbar VMSs with different movement characteristics and in the MDSM and LDSM muscles, hypothesising that the functional parameters vary significantly when the VMS is considered.

摘要

竖脊肌在横、纵和轴向产生椎间旋转。这些肌肉还对抗由重力和惯性力引起的运动以及拮抗肌和骨盆肢的固有肌产生的运动。它们的肌束由脊神经的背支支配,背支与棘突颅插入的节段相对应。这种结构可以预测肌肉的功能:那些具有长而平行纤维的肌肉具有缩短的功能,而那些具有短而斜纤维的肌肉具有抗重力的作用。在马中,胸腰椎区的多裂肌在两个到八个脊椎运动节段(VMS)的多个节段延伸。从功能上讲,多裂肌被认为是脊柱稳定器,在脊柱旋转过程中保持 VMS 中立。然而,有证据表明,马的胸腰椎多裂肌的结构和功能存在异质性,这取决于所考虑的 VMS,这与所需的神经肌肉活动的复杂控制有关。脊柱的骨关节炎病变与多裂肌的不对称性直接相关。侧向(LDSM)和内侧(MDSM)背荐骨肌可能包含在多裂肌复合体中,其在腰骶部的功能也不清楚。死后研究了插入六匹马的第 4、9、12 和 17 胸椎和第 3、4 腰椎的第 4、9、12 和 17 胸椎的多裂肌的最大力(F)、最大收缩速度(V)和关节力矩(M)的功能参数(例如:4MT4 表示在 T4 椎骨的颅侧插入四个节段的多裂肌)。此外,还确定了 LDSM 和 MDSM 的结构和功能特征。采用随机完全区组设计进行方差分析(anova)(P≤0.05)。对于一些肌肉,V 值的排序几乎与 F 值的排序相反,通常表明具有抗重力或动力功能,具体取决于肌肉和 VMS。3MT12、3ML3 和 4ML4 肌肉具有较高的 F 值和较低的 V 值,表明具有稳定作用。非常长的 7MT4 和 8MT4 多裂肌具有较低的 F 值和较高的 V 值,表明具有缩短作用。然而,一些有趣的功能特征并不属于这些一般观察结果,也表明具有双重作用。总之,对各种结构和功能参数的分析结果证实,马的胸腰椎多裂肌复合体的结构和功能存在异质性,这取决于 VMS,而与每个肌束穿过的节段数无关。为了阐明马多裂肌复合体的功能,本研究旨在评估其在具有不同运动特征的胸腰椎 VMS 中的功能参数,并在 MDSM 和 LDSM 肌肉中进行评估,假设当考虑 VMS 时,功能参数会有显著差异。

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