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猫胫骨前肌运动单位的代谢和纤维大小特性

Metabolic and fiber size properties of cat tibialis anterior motor units.

作者信息

Martin T P, Bodine-Fowler S, Roy R R, Eldred E, Edgerton V R

机构信息

Department of Kinesiology, University of California, Los Angeles 90024-1568.

出版信息

Am J Physiol. 1988 Jul;255(1 Pt 1):C43-50. doi: 10.1152/ajpcell.1988.255.1.C43.

DOI:10.1152/ajpcell.1988.255.1.C43
PMID:3389401
Abstract

The variability among single muscle fiber enzymatic activities and fiber size within a motor unit was studied in the cat tibialis anterior (TA) muscle. Fourteen units were isolated for physiological testing using standard ventral root filament stimulation techniques, and the muscle fibers of these units were identified by glycogen depletion. The cross-sectional areas, succinate dehydrogenase (SDH) and alpha-glycerolphosphate dehydrogenase (GPD) activities, and the relative alkaline myofibrillar adenosine triphosphate staining densities of a sample of glycogen-depleted and -nondepleted muscle fibers were determined using quantitative histochemical techniques. Each of the unit types previously identified to be present in the TA, based on physiological criteria, were represented by the sample population. The variability among the fibers of a unit was significantly more than the variability among repeated measures on a single fiber for cross-sectional area and SDH and GPD activities. The mean coefficients of variation for SDH and GPD activity within motor unit fibers were 29 and 56%, respectively, whereas the variability between fibers of different units within a muscle was significantly greater (53 and 69%, respectively). Additionally, the mean coefficient of variation for cross-sectional area among motor unit fibers was less than that among fibers not depleted of glycogen (25 vs. 46%). These data suggest that although there is clear evidence for some level of neural control of the properties of a muscle unit (variation within a unit was less than the variation across units), this control is not complete, since the variability among fibers of a single unit was significantly more than the variability found between repeated measurements on a single fiber.

摘要

在猫的胫骨前肌(TA)中,研究了运动单位内单根肌纤维酶活性和纤维大小的变异性。使用标准的腹根细丝刺激技术分离出14个运动单位进行生理测试,并通过糖原耗竭来识别这些单位的肌纤维。采用定量组织化学技术测定了糖原耗竭和未耗竭的肌纤维样本的横截面积、琥珀酸脱氢酶(SDH)和α-甘油磷酸脱氢酶(GPD)活性,以及相对碱性肌原纤维三磷酸腺苷染色密度。根据生理标准,先前确定存在于TA中的每种单位类型都在样本群体中有所体现。对于横截面积、SDH和GPD活性,一个运动单位内纤维之间的变异性显著大于对单根纤维重复测量之间的变异性。运动单位纤维内SDH和GPD活性的平均变异系数分别为29%和56%,而同一肌肉内不同运动单位纤维之间的变异性则显著更大(分别为53%和69%)。此外,运动单位纤维横截面积的平均变异系数小于糖原未耗竭的纤维(分别为25%和46%)。这些数据表明,尽管有明确证据表明肌肉单位的特性存在一定程度的神经控制(一个单位内的变异性小于不同单位之间的变异性),但这种控制并不完全,因为单个单位内纤维之间的变异性显著大于对单根纤维重复测量之间的变异性。

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