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一种用于晕动病的新前庭刺激模式并着重分析异食癖。

A New Vestibular Stimulation Mode for Motion Sickness With Emphatic Analysis of Pica.

作者信息

Zhang Zhi-Hao, Liu Li-Peng, Fang Yan, Wang Xiao-Cheng, Wang Wei, Chan Ying-Shing, Wang Lu, Li Hui, Li Yun-Qing, Zhang Fu-Xing

机构信息

Department of Human Anatomy, Histology and Embryology & K.K. Leung Brain Research Centre, School of Basic Medicine, Fourth Military Medical University, Xi'an, China.

Department of Anatomy, Medical College, Yan'an University, Yan'an, China.

出版信息

Front Behav Neurosci. 2022 May 4;16:882695. doi: 10.3389/fnbeh.2022.882695. eCollection 2022.

Abstract

Motion sickness (MS) was frequently introduced for rodents in research work through passive motion that disturbed vestibular signals in the presence of visual and aleatory, proprioceptive inputs. Inducement of MS in this way causes conflicting signals that activate intermixed neural circuits representing multimodal stimulation. From reductionism, a lab setup to elicit rat MS via vestibular stimulation was configured in the present study for MS study in connection with dissection of the central vestibular component causally underlying MS. The individual animal was blinded to light with a custom-made restrainer, and positioned at an inclination of 30° for otolith organs to receive unusual actions by gravitoinertial vector. Following a 2-h double-axis (earth-vertical) rotation involving angular acceleration/deceleration, a suit of behaviors characterizing the MS was observed to be significantly changed including pica (eating non-nutritive substance like kaolin), conditioned taste avoidance and locomotion ( < 0.05). Notably, for the statistical hypothesis testing, the utility of net increased amount of kaolin consumption as independent variables in data processing was expounded. In addition, Fos-immunostained neurons in vestibular nucleus complex were significantly increased in number, suggesting the rotation-induced MS was closely related to the vestibular activation. In conclusion, our work indicated that the present setup could effectively elicit the MS by disturbing vestibular signals in rat in the context of well-controlled proprioceptive inputs and lack of visual afference.

摘要

在研究工作中,晕动病(MS)常通过被动运动引入啮齿动物,这种被动运动在存在视觉、随机和本体感觉输入的情况下干扰前庭信号。以这种方式诱发MS会产生相互冲突的信号,激活代表多模式刺激的混合神经回路。从还原论的角度出发,本研究构建了一种通过前庭刺激诱发大鼠MS的实验装置,用于与MS潜在的中枢前庭成分剖析相关的MS研究。用定制的约束器使单个动物失明,并使其倾斜30°,以便耳石器官受到重力惯性矢量的异常作用。在进行包括角加速度/减速度的两小时双轴(地球垂直)旋转后,观察到一系列表征MS的行为发生了显著变化,包括异食癖(吃高岭土等非营养物质)、条件性味觉回避和运动(<0.05)。值得注意的是,对于统计假设检验,阐述了在数据处理中使用高岭土消耗量净增加量作为自变量的效用。此外,前庭核复合体中Fos免疫染色的神经元数量显著增加,表明旋转诱发的MS与前庭激活密切相关。总之,我们的工作表明,在控制良好的本体感觉输入和缺乏视觉传入的情况下,本实验装置可以通过干扰大鼠的前庭信号有效地诱发MS。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d34/9115577/b6879bfc0c87/fnbeh-16-882695-g001.jpg

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