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半规管旋转刺激引起的中枢前庭单位活动的频率响应分析。

Frequency-response analysis of central vestibular unit activity resulting from rotational stimulation of the semicircular canals.

作者信息

Jones G M, Milsum J H

出版信息

J Physiol. 1971 Dec;219(1):191-215. doi: 10.1113/jphysiol.1971.sp009657.

Abstract
  1. The neural response of semicircular canal-dependent units in the vestibular nuclei of cats has been examined over a frequency range of sinusoidal rotation extending from 0.004 to 0.9 Hz.2. Frequency-response analysis indicates that, over the range examined, the information contained in the neural signal received by the brain stem was similar to that expected from the mechanical end-organ.3. Over the experimental frequency range, the relation between neural response and mechanical stimulus was found to be dominated by a single time constant of about 4 sec, such that two response regions can be defined above and below a stimulus frequency of (1/4) rad/sec ( approximately approximately Hz).4. Above this frequency the information content of the neural signal tends towards that of angular velocity and below that frequency it tends towards that of angular acceleration.5. It is inferred (a) that the so-called ;long' time constant of the cat's horizontal canal is about 4 sec and (b) that during most normal head movements containing frequencies below about 1 Hz the informational mode of neural signals generated in the canal and received in the brain stem probably tends towards that of head angular velocity.6. This seems appropriate for the generation of vestibulo-ocular reflex compensation for head movement and for reflex damping (negative velocity feed-back) of unintended head and body movements.7. The average neural gain of central unit responses is estimated at 1264 action potentials/sec, per degree of cupular deflexion. This high value reflects the very small angles of cupular deflexion assessed on the basis of physical characteristics of the canal.8. The results permit a rough estimate of the elastic restoring coefficient of the cupula in the horizontal canal as 2.05 x 10(-3) dyne. cm.
摘要
  1. 已在0.004至0.9Hz的正弦旋转频率范围内,对猫前庭核中依赖半规管的单位的神经反应进行了研究。

  2. 频率响应分析表明,在所研究的范围内,脑干接收到的神经信号中包含的信息与机械终器预期的信息相似。

  3. 在实验频率范围内,发现神经反应与机械刺激之间的关系由约4秒的单个时间常数主导,因此可以在(1/4)弧度/秒(约0.08Hz)的刺激频率上下定义两个反应区域。

  4. 高于此频率时,神经信号的信息含量趋向于角速度的信息含量,低于该频率时,它趋向于角加速度的信息含量。

  5. 据推断:(a)猫水平半规管的所谓“长”时间常数约为4秒;(b)在大多数频率低于约1Hz的正常头部运动期间,半规管中产生并在脑干中接收的神经信号的信息模式可能趋向于头部角速度的信息模式。

  6. 这似乎适合于产生前庭眼反射以补偿头部运动,以及对意外的头部和身体运动进行反射性阻尼(负速度反馈)。

  7. 估计中央单位反应的平均神经增益为每杯状突偏转1度1264个动作电位/秒。这个高值反映了根据半规管的物理特性评估的杯状突非常小的偏转角。

  8. 这些结果允许对水平半规管中杯状突的弹性恢复系数进行粗略估计,为2.05×10⁻³达因·厘米。

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本文引用的文献

1
Electrical studies on the frog's labyrinth.青蛙迷路的电学研究。
J Physiol. 1936 Feb 8;86(2):117-46. doi: 10.1113/jphysiol.1936.sp003348.
2
Discharges from vestibular receptors in the cat.猫前庭感受器的放电
J Physiol. 1943 Mar 25;101(4):389-407. doi: 10.1113/jphysiol.1943.sp003995.
3
The dynamic characteristics of the semicircular canals.半规管的动态特性。
J Comp Physiol Psychol. 1950 Aug;43(4):309-19. doi: 10.1037/h0054827.
4
The mechanics of the semicircular canal.半规管的力学原理。
J Physiol. 1949 Dec 15;110(1-2):1-17. doi: 10.1113/jphysiol.1949.sp004416.
10
Origin of summating potential.
J Acoust Soc Am. 1966 Dec;40(6):1405-13. doi: 10.1121/1.1910240.

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