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Response of semicircular canal dependent units in vestibular nuclei to rotation of a linear acceleration vector without angular acceleration

机译:前庭核中半圆形管依赖性单位对没有角加速度的线性加速度矢量旋转的响应

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摘要

1. Recent experiments have shown that rotation of a linear acceleration vector round the head can generate involuntary ocular nystagmus in the absence of angular acceleration. The present experiments examine the suggestion that adequate stimulation of the semicircular canals may contribute to this response.2. Decerebrate cats were located in a stereotaxic device on a platform, slung from four parallel cables, which could be driven smoothly round a circular orbit without inducing significant angular movement of the platform. This Parallel Swing Rotation (PSR) generated a centripetal acceleration of 4·4 m/sec2 which rotated round the head at 0·52 rev/sec.3. The discharge frequency of specifically lateral canal-dependent neural units in the vestibular nuclei of cats was recorded during PSR to right and left, and in the absence of motion. The dynamic responses to purely angular motion were also examined on a servo-driven turntable.4. Without exception all proven canal-dependent cells examined (twenty-nine cells in nine cats) were more active during PSR in the direction of endolymph circulation assessed to be excitatory to the unit, than during PSR in the opposite direction.5. The observed changes in discharge frequency are assessed to have been of a magnitude appropriate for the generation of the involuntary oculomotor response induced by the same stimulus in the intact animal.6. The findings suggest that a linear acceleration vector which rotates in the plane of the lateral semicircular canals can be an adequate stimulus to ampullary receptors, though an explanation which invokes the modulation of canal cells by a signal dependent upon the sequential activation of macular receptors cannot be positively excluded.
机译:1.最近的实验表明,在没有角加速度的情况下,绕头部旋转的线性加速度矢量会产生非自愿性眼球震颤。本实验验证了半圆形管的充分刺激可能有助于这种反应的建议。2。去脑猫被放置在平台上的立体定位设备中,由四根平行电缆悬挂而成,可以在圆形轨道上平稳驱动,而不会引起平台的明显角运动。该平行摆动旋转(PSR)产生4·4 m / sec 2 的向心加速度,其以0·52 rev / sec.3的速度绕头部旋转。在PSR期间,在左右运动以及没有运动的情况下,记录了猫前庭神经核中特定的侧管依赖神经单位的放电频率。还研究了伺服驱动转盘对纯角运动的动态响应。4。无一例外,所有经过检查的经证实的依赖运河的细胞(9只猫中有29个细胞)在PSR期间朝着被评估为对单位有兴奋性的内淋巴循环方向比在相反方向的PSR期间更具活性。5。观察到的放电频率变化被评估为适合于在完整动物中由相同刺激引起的非自愿动眼反应的幅度。6。研究结果表明,在外侧半圆形管平面内旋转的线性加速度矢量可能是壶腹受体的充分刺激,尽管不能通过依赖于黄斑受体顺序激活的信号来激活管细胞的解释。积极排除。

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