Garfinkle T J, Saunders J C
Otolaryngol Head Neck Surg. 1983 Aug;91(4):421-6. doi: 10.1177/019459988309100415.
The observation that hair cell tuning curves exhibit frequency selectivity as sharply tuned as that seen in auditory nerve fibers has prompted closer examination of the sensory hairs or stereocilia. The present study was designed to examine the morphologic organization of inner hair cell stereocilia in a mammalian species, the neonatal C57BL/6J mouse. The cochleae of mice were fixed in OSO4, dehydrated, dissected, and prepared for scanning electron microscopy. An examination of the number of stereocilia per inner hair cell revealed an orderly decrease from base to apex. Conversely, there was a 300% increase in the height of the tallest stereocilia, a 100% increase in the height of the middle row stereocilia, and a 30% increase in shortest stereocilia from base to apex. The total surface area of the stereocilia, per hair cell, was shown to increase by approximately 250% from the base to the apex of the cochlea.
毛细胞调谐曲线呈现出与听神经纤维中所见一样尖锐调谐的频率选择性,这一观察结果促使人们对感觉毛或静纤毛进行更深入的研究。本研究旨在检查一种哺乳动物——新生C57BL/6J小鼠——的内毛细胞静纤毛的形态组织。将小鼠的耳蜗用四氧化锇固定、脱水、解剖,并制备用于扫描电子显微镜检查。对内毛细胞每个静纤毛数量的检查显示,从基部到顶部数量有序减少。相反,最高静纤毛的高度从基部到顶部增加了300%,中间排静纤毛的高度增加了100%,最短静纤毛的高度增加了30%。每个毛细胞静纤毛的总表面积从耳蜗基部到顶部增加了约250%。