Coombs S, Hastings M, Finneran J
Parmly Hearing Institute, Loyola University of Chicago, Il 60626, USA.
J Comp Physiol A. 1996;178(3):359-71. doi: 10.1007/BF00193974.
In order to determine excitation patterns to the lateral line system from a nearby 50 Hz oscillating sphere, dipole flow field equations were used to model the spatial distribution of pressures along a linear array of lateral line canal pores. Modeled predictions were then compared to pressure distributions measured for the same dipole source with a miniature hydrophone placed in a small test tank used for neurophysiological experiments. Finally, neural responses from posterior lateral line nerve fibers in the goldfish were measured in the test tank to demonstrate that modeled and measured pressure gradient patterns were encoded by the lateral line periphery. Response patterns to a 50 Hz dipole source that slowly changed location along the length of the fish included (1) peaks and valleys in spike-rate responses corresponding to changes in pressure gradient amplitudes, (2) 180 degrees phase-shifts corresponding to reversals in the direction of the pressure gradient and (3) distance-dependent changes in the locations of peaks, valleys and 180 degrees phase-shifts. Modeled pressure gradient patterns also predict that the number of neural amplitude peaks and phase transitions will vary as a function of neuromast orientation and axis of source oscillation. The faithful way in which the lateral line periphery encodes pressure gradient patterns has implications for how source location and distance might be encoded by excitation patterns in the CNS. Phase-shift information may be important for (1) inhibitory/excitatory sculpting of receptive fields and (2) unambiguously encoding source distance so that increases in source distance are not confused with decreases in source amplitude.
为了确定来自附近50赫兹振荡球体对侧线系统的激发模式,偶极子流场方程被用于模拟沿侧线管孔线性阵列的压力空间分布。然后将模拟预测结果与使用放置在用于神经生理学实验的小型测试水箱中的微型水听器对同一偶极子源测量的压力分布进行比较。最后,在测试水箱中测量金鱼后侧线神经纤维的神经反应,以证明模拟和测量的压力梯度模式由侧线外周进行编码。对沿鱼体长度缓慢改变位置的50赫兹偶极子源的反应模式包括:(1)对应于压力梯度幅度变化的脉冲率反应中的峰值和谷值;(2)对应于压力梯度方向反转的180度相移;(3)峰值、谷值和180度相移位置的距离依赖性变化。模拟的压力梯度模式还预测,神经幅度峰值和相位转变的数量将随神经丘方向和源振荡轴而变化。侧线外周对压力梯度模式的准确编码方式对中枢神经系统中源位置和距离如何通过激发模式进行编码具有启示意义。相移信息可能对(一)感受野的抑制性/兴奋性塑造以及(二)明确编码源距离很重要,这样源距离的增加就不会与源幅度的减小相混淆。