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人声带黄斑的年龄相关变化。

Age-related changes of the macula flava of the human vocal fold.

作者信息

Sato K, Hirano M

机构信息

Department of Otolaryngology-Head and Neck Surgery, Kurume University, School of Medicine, Japan.

出版信息

Ann Otol Rhinol Laryngol. 1995 Nov;104(11):839-44. doi: 10.1177/000348949510401102.

DOI:10.1177/000348949510401102
PMID:8534020
Abstract

This investigation was carried out to determine the histologic structure and age-related changes of the macula flava of human aged vocal folds. Excised human adult senescent larynges served as the material for this study. Light microscopic and transmission electron microscopic observations were made. The results are summarized as follows. 1) The anterior and posterior maculae flavae were elliptical in shape and about 1.5 x 1.5 x 1 mm in size. 2) The macula flava was composed of fibroblasts, elastic fibers, collagenous fibers, and ground substance. 3) The number of fibroblasts decreased. 4) Components in the cytoplasm, such as Golgi apparatus and rough endoplasmic reticulum, were fewer than in younger adults. 5) Some fibroblasts and some components in the cytoplasm degenerated. 6) The accumulation of glycogen granules and lipid droplets were seen in the cytoplasm. 7) The number of collagenous and elastic fibers synthesized by the fibroblasts decreased. 8) These findings were evident to various degrees and suggested the reduction of fibroblast activation, abnormal metabolism, and degeneration. A decrease in the number and activation of fibroblasts in maculae flavae indicates decreased synthesis of fibrous components in the vocal fold mucosa. This in turn influences the viscoelasticity and stiffness of vibrating tissue and contributes partially to aging of the voice.

摘要

本研究旨在确定人类老年声带黄色皱襞的组织结构及与年龄相关的变化。切除的成人衰老喉部作为本研究的材料。进行了光镜和透射电镜观察。结果总结如下。1)前、后黄色皱襞呈椭圆形,大小约为1.5×1.5×1毫米。2)黄色皱襞由成纤维细胞、弹性纤维、胶原纤维和基质组成。3)成纤维细胞数量减少。4)细胞质中的成分,如高尔基体和粗面内质网,比年轻成年人少。5)一些成纤维细胞和细胞质中的一些成分发生退化。6)细胞质中可见糖原颗粒和脂滴的积累。7)成纤维细胞合成的胶原纤维和弹性纤维数量减少。8)这些发现程度各异,提示成纤维细胞活化减少、代谢异常和退化。黄色皱襞中成纤维细胞数量和活化的减少表明声带黏膜中纤维成分的合成减少。这反过来又影响振动组织的粘弹性和硬度,并部分导致声音老化。

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