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[气压伤导致的前庭变化]

[Vestibular changes due to barotrauma].

作者信息

Ishida K, Kozuka M, Fukuta S, Yanagita N

机构信息

Department of Otolaryngology, Nagoya University School of Medicine.

出版信息

Nihon Jibiinkoka Gakkai Kaiho. 1993 Dec;96(12):2017-23. doi: 10.3950/jibiinkoka.96.2017.

Abstract

Morphological vestibular changes caused by barotrauma were studied in guinea pigs. Animals were exposed to rapid decompression from 2 absolute atmospheric pressures (ATA) to 1 ATA, which causes inner ear barotrauma in the guinea pig. During decompression, spontaneous nystagmus was recorded, which consisted of irritative symptoms initially, followed by paralytic nystagmus. After pressure loading and observation to confirm the absence of Preyer's reflex with vertigo, the animals were tested for caloric nystagmus using ice water and then sacrificed at varying intervals. Then, morphological changes in vestibular organs and the organ of Corti were studied. Half of the experimental animals showed canal paresis on caloric testing. Damage to the organ of Corti was severe while that to vestibular organs was very slight. Damage to the sensory cells of the vestibular organs was not clear on light microscopy, despite a partial collapse of labyrinthine membranes. Under scanning electron microscopy, local damage was observed in a portion of the crista ampullaris of the semicircular canals. In this area, incomplete or complete disappearance of kinocilia and stereocilia, similar to that seen after rotatostimulation, was observed. However, no damage to sensory hairs was seen in the utricles and saccules. The observed vestibular organ damage, resulting from inner ear barotrauma, suggested effects on endolymphatic flow.

摘要

在豚鼠身上研究了气压伤引起的形态学前庭变化。将动物从2个绝对大气压(ATA)快速减压至1 ATA,这会导致豚鼠内耳气压伤。在减压过程中,记录到自发性眼球震颤,最初表现为刺激性症状,随后出现麻痹性眼球震颤。在压力加载并观察确认无伴有眩晕的普赖尔反射后,用冰水对动物进行冷热试验性眼球震颤测试,然后在不同时间间隔处牺牲动物。随后,研究了前庭器官和柯蒂氏器的形态学变化。一半的实验动物在冷热试验中显示半规管轻瘫。柯蒂氏器的损伤严重,而前庭器官的损伤非常轻微。尽管迷路膜部分塌陷,但在光学显微镜下前庭器官感觉细胞的损伤并不明显。在扫描电子显微镜下,观察到半规管壶腹嵴的一部分有局部损伤。在该区域,观察到动纤毛和静纤毛不完全或完全消失,类似于旋转刺激后所见。然而,在椭圆囊和球囊中未观察到感觉毛的损伤。观察到的由内耳气压伤导致的前庭器官损伤提示对内淋巴流动有影响。

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