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内耳耳石的不对称性在表现出运动病行为的晚期幼鱼(罗非鱼,鲈形目)中在微重力下。

Inner Ear Otolith Asymmetry in Late-Larval Cichlid Fish (Oreochromis mossambicus, Perciformes) Showing Kinetotic Behaviour Under Diminished Gravity.

机构信息

German Aerospace Center, Institute of Aerospace Medicine, Gravitational Biology, Linder Hoehe, D-51147, Cologne, Germany.

Institute of Zoology, University of Hohenheim, Garbenstr. 30, D-70599, Stuttgart, Germany.

出版信息

Sci Rep. 2017 Nov 15;7(1):15630. doi: 10.1038/s41598-017-15927-z.

DOI:10.1038/s41598-017-15927-z
PMID:29142237
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5688164/
Abstract

The inner ears of all vertebrates are designed to perceive auditory and vestibular inputs. Although a tremendous diversity in the inner ear can be found even among bony fishes, the morphologies of the utricle and of the semicircular canals are rather conservative among vertebrates. Fish show kinetoses under reduced gravity (spinning movements and looping responses) and are regarded model organisms concerning the performance of the otolithic organs. Otoliths can be analysed easily because they are compact, in contrast to the otoconial masses of other vertebrates. Here, late-larval Oreochromis mossambicus were subjected to 0.0001 × g and 0.04 × g aboard a sounding rocket, their behaviour was observed and morphometrical analyses on otoliths were carried out. Fish swimming kinetotically at 0.0001 × g had a higher asymmetry of utricular otoliths (gravity perception) but not of saccular otoliths (hearing process) than specimens behaving normally at this gravity level (p = 0.0055). Also, asymmetries of lapilli in animals swimming normally at 0.0001 × g were lower than asymmetries in specimens swimming normally at 0.04 × g (p = 0.06). This supports the "otolith asymmetry hypothesis", an explanation for the susceptibility to kinetosis, particularly concerning the utricular otoliths. It would be interesting to identify processes generating asymmetric otoliths, also in regard to human motion sickness.

摘要

所有脊椎动物的内耳都被设计用来感知听觉和前庭输入。尽管在硬骨鱼类中甚至可以发现内耳的巨大多样性,但在脊椎动物中,耳石和半规管的形态相当保守。鱼类在微重力下会出现运动病(旋转运动和环行反应),并且被认为是研究耳石器官性能的模式生物。耳石可以很容易地进行分析,因为它们与其他脊椎动物的耳石质量相比更紧凑。在这里,晚期幼虫奥利亚罗非鱼被置于 sounding rocket 中的 0.0001×g 和 0.04×g 下,观察它们的行为,并对耳石进行形态计量分析。在 0.0001×g 下以旋转运动游动的鱼的耳石(重力感知)的不对称性高于在该重力水平下正常游动的标本(p=0.0055),但不是耳石(听力过程)。此外,在 0.0001×g 下正常游动的动物的 lapilli 的不对称性低于在 0.04×g 下正常游动的标本的不对称性(p=0.06)。这支持了“耳石不对称假说”,该假说解释了运动病的易感性,特别是与耳石有关。确定产生不对称耳石的过程将是有趣的,特别是在人类运动病方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/311e/5688164/9b3ddf978c49/41598_2017_15927_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/311e/5688164/9b3ddf978c49/41598_2017_15927_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/311e/5688164/9b3ddf978c49/41598_2017_15927_Fig1_HTML.jpg

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本文引用的文献

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Sci Rep. 2015 Feb 9;5:8338. doi: 10.1038/srep08338.
2
Ground-based facilities for simulation of microgravity: organism-specific recommendations for their use, and recommended terminology.地面模拟微重力设施:特定生物体使用的建议,以及推荐的术语。
Astrobiology. 2013 Jan;13(1):1-17. doi: 10.1089/ast.2012.0876. Epub 2012 Dec 19.
3
Quantification of vestibular-induced eye movements in zebrafish larvae.
内耳淋巴液容积与比格犬晕动病易感性的关系。
J Int Adv Otol. 2022 Jul;18(4):340-346. doi: 10.5152/iao.2022.21584.
4
Ocean acidification alters morphology of all otolith types in Clark's anemonefish ().海洋酸化改变了克氏海葵鱼()所有耳石类型的形态。
PeerJ. 2019 Jan 7;7:e6152. doi: 10.7717/peerj.6152. eCollection 2019.
量化斑马鱼幼鱼的前庭眼动。
BMC Neurosci. 2010 Sep 3;11:110. doi: 10.1186/1471-2202-11-110.
4
A late role for bmp2b in the morphogenesis of semicircular canal ducts in the zebrafish inner ear.骨形态发生蛋白2b(bmp2b)在斑马鱼内耳半规管管道形态发生中的后期作用。
PLoS One. 2009;4(2):e4368. doi: 10.1371/journal.pone.0004368. Epub 2009 Feb 3.
5
Semicircular canal size determines the developmental onset of angular vestibuloocular reflexes in larval Xenopus.半规管大小决定了非洲爪蟾幼体角前庭眼反射的发育起始。
J Neurosci. 2008 Aug 6;28(32):8086-95. doi: 10.1523/JNEUROSCI.1288-08.2008.
6
Space motion sickness.太空晕动病
Exp Brain Res. 2006 Nov;175(3):377-99. doi: 10.1007/s00221-006-0697-y. Epub 2006 Oct 5.
7
Motion sickness susceptibility.晕动病易感性
Auton Neurosci. 2006 Oct 30;129(1-2):67-76. doi: 10.1016/j.autneu.2006.07.019. Epub 2006 Aug 23.
8
Fish otolith asymmetry: morphometry and modeling.鱼类耳石不对称性:形态测量与建模
Hear Res. 2006 Sep;219(1-2):1-11. doi: 10.1016/j.heares.2006.03.019. Epub 2006 Jul 21.
9
Evolutionary changes in the cochlea and labyrinth: Solving the problem of sound transmission to the balance organs of the inner ear.耳蜗与内耳迷路的进化变化:解决声音向内耳平衡器官传导的问题。
Anat Rec A Discov Mol Cell Evol Biol. 2006 Apr;288(4):482-9. doi: 10.1002/ar.a.20306.
10
A drop-tower experiment to determine the threshold of gravity for inducing motion sickness in fish.一项用于确定诱发鱼类晕动病的重力阈值的落塔实验。
Adv Space Res. 2004;34(7):1592-7. doi: 10.1016/j.asr.2004.01.023.