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衰老过程中人类坐骨神经有髓神经纤维直径和g比值的形态测量分析。

Morphometric analysis of the diameter and g-ratio of the myelinated nerve fibers of the human sciatic nerve during the aging process.

作者信息

Ugrenović Sladjana, Jovanović Ivan, Vasović Ljiljana, Kundalić Braca, Čukuranović Rade, Stefanović Vladisav

机构信息

Department of Anatomy, Medical Faculty, University of Niš, Dr Zorana Đinđića 81, 18000, Niš, Serbia.

Medical Faculty, University of Niš, Niš, Serbia.

出版信息

Anat Sci Int. 2016 Jun;91(3):238-45. doi: 10.1007/s12565-015-0287-9. Epub 2015 May 15.

Abstract

Myelinated nerve fibers suffer from different degrees of atrophy with age. The success of subsequent regeneration varies. The aim of this research was to analyze myelinated fibers of the human sciatic nerve during the aging process. Morphometric analysis was performed on 17 cases with an age range from 9 to 93 years. The outer and inner diameter of 100 randomly selected nerve fibers was measured in each of the cases evaluated, and the g-ratio (axonal diameter/outer diameter of the whole nerve fiber) of each was calculated. Scatter plots of the diameters and g-ratios of the analyzed fibers were then analyzed. Nerve fibers of each case were classified into three groups according to the g-ratio values: group I (g-ratio lower than 0.6), group II (g-ratio from 0.6 to 0.7) and group III (g-ratio higher than 0.7). Afterwards, nerve fibers of group II were further classified into small and large subgroups. The percentages of each group of nerve fibers were computed for each case and these values were used for correlational and bivariate linear regression analysis. The percentage of myelinated nerve fibers with large diameter and optimal g-ratio of the sciatic nerve declines significantly with age. This is accompanied by a simultaneous significant increase in the percentage of small myelinated fibers with g-ratio values close to 1 that occupy the upper left quadrant of the scatter plot. It can be concluded that aging of the sciatic nerve is associated with significant atrophy of large myelinated fibers. Additionally, a significant increase in regenerated nerve fibers with thinner myelin sheath is observed with age, which, together with the large myelinated fiber atrophy, might be the cause of the age-related decline in conduction velocity. A better understanding of the changes in aging peripheral nerves might improve interpretation of their pathological changes, as well as comprehension of their regeneration in individuals of different age.

摘要

随着年龄增长,有髓神经纤维会出现不同程度的萎缩。后续再生的成功率各不相同。本研究的目的是分析人类坐骨神经在衰老过程中的有髓纤维。对17例年龄在9岁至93岁之间的病例进行了形态学分析。在每个评估病例中,随机选取100条神经纤维,测量其外径和内径,并计算每条纤维的g比值(轴突直径/整个神经纤维的外径)。然后对分析纤维的直径和g比值的散点图进行分析。根据g比值,将每个病例的神经纤维分为三组:第一组(g比值低于0.6)、第二组(g比值为0.6至0.7)和第三组(g比值高于0.7)。之后,将第二组神经纤维进一步分为小纤维亚组和大纤维亚组。计算每个病例中每组神经纤维的百分比,并将这些值用于相关分析和双变量线性回归分析。坐骨神经中直径大且g比值最佳的有髓神经纤维的百分比随年龄显著下降。与此同时,散点图左上象限中g比值接近1的小有髓纤维的百分比显著增加。可以得出结论,坐骨神经的衰老与大型有髓纤维的显著萎缩有关。此外,随着年龄增长,观察到髓鞘较薄的再生神经纤维显著增加,这与大型有髓纤维萎缩一起,可能是与年龄相关的传导速度下降的原因。更好地了解衰老外周神经的变化可能会改善对其病理变化的解释,以及对不同年龄段个体神经再生的理解。

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