Lexell J, Taylor C C
Department of Neurology, University of Umeå, Sweden.
J Anat. 1991 Feb;174:239-49.
Cross-sections of whole vastus lateralis muscle from 20 men, 19 to 84 years of age, were prepared, and the cross-sectional area (microns2) of 375 type 1 and 375 Type 2 fibres was measured in five different regions throughout each muscle. In muscles from the old individuals, the mean CSA of Type 2 fibres was on average nearly 35% smaller (P less than 0.001) while the mean CSA of Type 1 fibres was on average just over 6% smaller (NS) than in muscles from the young individuals. There was a highly significant (P less than 0.001) variation in the mean CSA of both fibre types within all muscles. In the old muscles, there was no significant difference in mean fibre CSA between deep and superficial parts while in the young muscles the mean fibre CSA was significantly (P less than 0.05) larger in deep regions than superficially. The range of the fibre CSA was larger in the old muscles with an increased number of both hypotrophied and atrophied fibres as well as large, sometimes very large, fibres. The standard deviation of the fibre CSA of Type 2 fibres was significantly (P less than 0.001) larger than for Type 1 fibres in 60% of the regions of the old muscles compared to 12.5% of the regions of the young muscles, but the standard deviation for the whole muscles was more or less unaffected with increasing age. In the old age group, there were fewer muscles and regions with a correlation between the CSA of Type 1 and Type 2 fibres than in the young age group. In conclusion the age-related changes in the mean fibre CSA, and in the pattern of variation in fibre CSA throughout the muscle and in small sample regions, suggest a combination of a progressive denervation process and an altered physical activity level as the two major mechanisms underlying the effects of normal development and ageing on the human vastus lateralis muscle.
制备了20名年龄在19至84岁之间男性的股外侧肌全肌横截面,并在每块肌肉的五个不同区域测量了375根1型和375根2型纤维的横截面积(平方微米)。在老年个体的肌肉中,2型纤维的平均横截面积平均比年轻个体的肌肉小近35%(P小于0.001),而1型纤维的平均横截面积平均仅小6%多一点(无统计学意义)。在所有肌肉中,两种纤维类型的平均横截面积均存在高度显著差异(P小于0.001)。在老年肌肉中,深部和浅部的平均纤维横截面积无显著差异,而在年轻肌肉中,深部区域的平均纤维横截面积显著大于浅部(P小于0.05)。老年肌肉中纤维横截面积的范围更大,萎缩和肥大的纤维数量增加,同时还有粗大的、有时非常粗大的纤维。与年轻肌肉12.5%的区域相比,老年肌肉60%的区域中2型纤维横截面积的标准差显著大于1型纤维(P小于0.001),但整个肌肉的标准差随年龄增长或多或少未受影响。在老年组中,与年轻组相比,1型和2型纤维横截面积之间存在相关性的肌肉和区域更少。总之,平均纤维横截面积的年龄相关变化,以及整个肌肉和小样本区域中纤维横截面积的变化模式,表明渐进性去神经支配过程和体力活动水平改变的结合,是正常发育和衰老对人类股外侧肌影响的两个主要潜在机制。