Otoconia as test masses in biological accelerometers: what can we learn about their formation from evolutionary studies and from work in microgravity?

Scanning electron microscopy Pub Date : 1986-01-01
M D Ross, K M Donovan
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Abstract

This paper reviews previous findings and introduces new material about otolith end organs that help us to understand their functioning and development. In particular, we consider the end organs as biological accelerometers. The otoconia are dealt with as test masses whose substructure and evolutionary trend toward calcite may prove significant in understanding formation requirements. Space-flight helps illuminate the influence of gravity, while right-left asymmetry is suggested by study of certain rat strains.

耳蜗作为生物加速度计的测试质量:我们能从进化研究和微重力工作中了解到它们的形成吗?
本文综述了耳石终末器官的研究成果,并介绍了耳石终末器官的新材料,以帮助我们了解耳石终末器官的功能和发育。特别地,我们认为终端器官是生物加速度计。耳壳岩作为测试体处理,其亚结构和向方解石的演化趋势可能对理解地层要求具有重要意义。太空飞行有助于阐明重力的影响,而对某些大鼠品系的研究表明了左右不对称。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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