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Tests of linearity in the responses of eye-movement-sensitive vestibular neurons to sinusoidal yaw rotation

机译:眼动敏感的前庭神经元对正弦偏航旋转响应的线性测试

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摘要

The rotational vestibulo-ocular reflex in primates is linear and stabilizes gaze in space over a large range of head movements. Best evidence suggests that position-vestibular-pause (PVP) and eye-head velocity (EHV) neurons in the vestibular nuclei are the primary mediators of vestibulo-ocular reflexes for rotational head movements, yet the linearity of these neurons has not been extensively tested. The current study was undertaken to understand how varying magnitudes of yaw rotation are coded in these neurons. Sixty-six PVP and 41 EHV neurons in the rostral vestibular nuclei of 7 awake rhesus macaques were recorded over a range of frequencies (0.1 to 2 Hz) and peak velocities (7.5 to 210°/s at 0.5 Hz). The sensitivity (gain) of the neurons decreased with increasing peak velocity of rotation for all PVP neurons and EHV neurons sensitive to ipsilateral rotation (type I). The sensitivity of contralateral rotation-sensitive (type II) EHV neurons did not significantly decrease with increasing peak velocity. These data show that, like non-eye-movement-related vestibular nuclear neurons that are believed to mediate nonlinear vestibular functions, PVP neurons involved in the linear vestibulo-ocular reflex also behave in a nonlinear fashion. Similar to other sensory nuclei, the magnitude of the vestibular stimulus is not linearly coded by the responses of vestibular neurons; rather, amplitude compression extends the dynamic range of PVP and type I EHV vestibular neurons.
机译:灵长类动物的旋转前庭眼反射是线性的,可在很大范围的头部运动中稳定视线。最佳证据表明,前庭核中的前庭暂停神经元(PVP)和眼头速度神经元(EHV)是旋转头运动的前庭眼反射的主要介质,但是这些神经元的线性尚未得到广泛测试。进行当前的研究是为了了解这些神经元中如何编码不同大小的偏航旋转。在频率范围(0.1至2 Hz)和峰值速度(0.5 Hz下的7.5至210°/ s)范围内,记录了7个清醒的猕猴的前庭前庭核中的66个PVP和41个EHV神经元。对于所有对同侧旋转(I型)敏感的PVP神经元和EHV神经元,神经元的灵敏度(增益)随旋转峰值速度的增加而降低。对侧旋转敏感(II型)超高压神经元的敏感度并没有随着峰值速度的增加而显着降低。这些数据表明,与被认为介导非线性前庭功能的非眼动相关的前庭核神经元一样,参与线性前庭眼反射的PVP神经元也表现为非线性。与其他感觉细胞核相似,前庭刺激的强度不是由前庭神经元的反应线性编码的;因此,前庭神经元的刺激作用并不明显。相反,振幅压缩扩展了PVP和I型EHV前庭神经元的动态范围。

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