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七鳃鳗假游泳的相关性分析揭示了强烈的节间功能耦合。

Correlational analysis of fictive swimming in the lamprey reveals strong functional intersegmental coupling.

作者信息

Mellen N, Kiemel T, Cohen A H

机构信息

Department of Zoology, University of Maryland, College Park 20742, USA.

出版信息

J Neurophysiol. 1995 Mar;73(3):1020-30. doi: 10.1152/jn.1995.73.3.1020.

DOI:10.1152/jn.1995.73.3.1020
PMID:7608752
Abstract
  1. Cycle-to-cycle fluctuations in cycle periods and intersegmental burst delays of ventral root activity were studied during stable fictive swimming in the adult lamprey spinal cord. High spatial resolution was obtained by recording from 16 ventral roots, 1/2 on each side of the spinal cord. For ipsilateral ventral roots, correlations between cycle periods on the same cycle were high (0.50 +/- 0.16, mean +/- SD), and autocorrelations of intersegmental delays with a shift of one cycle were low (0.03 +/- 0.06). Correlations between cycle periods tended to decrease with intersegmental spacing but remained positive over the range of spacings tested (1-47 segments). 2. Sinusoidal movement imposed on the caudal end of the spinal cord/notochord was used to entrain the fictive swimming rhythm. When the phase between the movement and the rhythm was perturbed, several cycles were required for the phase to return to its preferred value, indicating that in these experiments the effect of the movement was weak. In the absence of external perturbations, autocorrelations of delays between the movement and ventral root bursts with a shift of one cycle were high. 3. Numerical simulations with a simple stochastic phase model of the lamprey central pattern generator (CPG) were conducted. High correlations of periods and low autocorrelations of delays, the pattern observed experimentally, emerged as intersegmental connection strengths were increased. Coupling including both long and short connections produced this pattern of correlations with an average connection strength less than that required by short connections alone. 4. It is concluded that functional intersegmental coupling in the lamprey CPG during stable fictive swimming is strong. Specifically, the low autocorrelations of intersegmental delays indicate that intersegmental coupling is sufficiently strong to ensure that perturbations are almost completely corrected within one cycle.
摘要
  1. 在成年七鳃鳗脊髓稳定的虚构游泳过程中,研究了腹根活动的周期时长和节段间爆发延迟的逐周期波动情况。通过记录16条腹根(脊髓两侧各8条)获得了高空间分辨率。对于同侧腹根,同一周期内周期时长的相关性较高(0.50±0.16,平均值±标准差),节段间延迟的自相关性在一个周期的偏移时较低(0.03±0.06)。周期时长的相关性往往随着节段间距的增加而降低,但在测试的间距范围内(1 - 47个节段)仍保持正值。2. 施加在脊髓/脊索尾端的正弦运动用于诱导虚构游泳节律。当运动与节律之间的相位受到扰动时,相位需要几个周期才能恢复到其偏好值,这表明在这些实验中运动的影响较弱。在没有外部扰动的情况下,运动与腹根爆发之间延迟的自相关性在一个周期的偏移时较高。3. 对七鳃鳗中枢模式发生器(CPG)的简单随机相位模型进行了数值模拟。随着节段间连接强度的增加,出现了实验观察到的周期高度相关和延迟自相关较低的模式。包括长连接和短连接的耦合产生了这种相关模式,其平均连接强度小于仅短连接所需的强度。4. 得出结论,在稳定的虚构游泳过程中,七鳃鳗CPG中的功能性节段间耦合很强。具体而言,节段间延迟的低自相关性表明节段间耦合足够强,以确保扰动在一个周期内几乎完全得到纠正。

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