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通过蒙眼改变正常犬的姿势反应。

Modification of the postural response of the normal dog by blindfolding.

作者信息

Talbott R E

出版信息

J Physiol. 1974 Dec;243(2):309-20. doi: 10.1113/jphysiol.1974.sp010755.

Abstract
  1. Normal dogs were trained to stand quietly upon a movable platform. The animals' postural adjustments in response to sinusoidal motion of the platform were assessed in both the normal and the blindfolded condition. The induced postural adjustments were described by the Fourier coefficients for the fundamental of the input together with the coefficients which were integral multiples of the fundamental.2. All of the output variables, including motion at the hind limb joints and of the body, showed modifications when the dogs were blindfolded. The body motion increased in amplitude, as measured by the fundamental Fourier coefficient, and further lagged the input motion. Motion at the knee and phalangeal joints also increased in amplitude and the timing of these movements shifted from the normal in characteristic patterns for different frequencies of input motion.3. The modifications of the postural response due to blindfolding were most pronounced at the lower input frequencies: 0.2-1.0 Hz. At 1.4 Hz or above the fundamental coefficients of most of the output measures resembled those of the normal condition. Even at the higher input frequencies, however, the postural response of the blindfolded dog was more distorted than that of the normal dog.4. It is hypothesized that relatively slow movement of the visual surround provides the dog with information which is essential to normal operations of the postural control system.
摘要
  1. 正常的狗被训练安静地站在一个可移动的平台上。在正常和蒙眼条件下,评估动物对平台正弦运动的姿势调整。诱导的姿势调整由输入基频的傅里叶系数以及基频整数倍的系数来描述。

  2. 所有输出变量,包括后肢关节和身体的运动,在狗被蒙眼时都表现出变化。通过基频傅里叶系数测量,身体运动的幅度增加,并且进一步滞后于输入运动。膝关节和指关节的运动幅度也增加,并且这些运动的时间根据输入运动的不同频率以特征模式偏离正常情况。

  3. 由于蒙眼导致的姿势反应变化在较低输入频率(0.2 - 1.0赫兹)时最为明显。在1.4赫兹及以上,大多数输出测量的基频系数类似于正常情况。然而,即使在较高输入频率下,蒙眼狗的姿势反应也比正常狗更扭曲。

  4. 据推测,视觉环境的相对缓慢运动为狗提供了对姿势控制系统正常运作至关重要的信息。

相似文献

2
The postural response of normal dogs to sinusoidal displacement.正常犬对正弦位移的姿势反应。
J Physiol. 1974 Dec;243(2):287-307. doi: 10.1113/jphysiol.1974.sp010754.
6

本文引用的文献

1
Periodic eye tracking in the monkey.猴子的周期性眼动追踪
J Physiol. 1967 Nov;193(1):161-71. doi: 10.1113/jphysiol.1967.sp008349.
2
POSTURAL STABILITY IN THE DOG.犬的姿势稳定性
Am J Physiol. 1965 Jun;208:1047-57. doi: 10.1152/ajplegacy.1965.208.6.1047.
4
Contribution of pedal afferents to postural control in the dog.犬足部传入神经对姿势控制的作用
Am J Physiol. 1970 Mar;218(3):726-34. doi: 10.1152/ajplegacy.1970.218.3.726.
5
Postural reactions to two directions of displacement in dogs.
Am J Physiol. 1970 Mar;218(3):719-25. doi: 10.1152/ajplegacy.1970.218.3.719.
6
Nonlinearities of the human oculomotor system: gain.人类动眼系统的非线性:增益。
Vision Res. 1969 Oct;9(10):1235-46. doi: 10.1016/0042-6989(69)90111-4.
8
Operant conditioning of specific patterns of neural and muscular activity.
Science. 1971 Oct 22;174(4007):431-5. doi: 10.1126/science.174.4007.431.

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