蟑螂胫骨钟形感受器对力的编码:在姿势和运动的动态控制中的意义。

A L Ridgel, S F Frazier, R A DiCaprio, S N Zill
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引用次数: 58

摘要

当动物站在不规则地形上或穿越不规则地形时,腿所施加的支撑力和推进力会发生很大的变化。我们描述了蟑螂胫骨钟形感受器的反应,这种机械感受器通过外骨骼中产生的应变编码力,通过在控制的大小和速率下对腿部施加力。我们还研究了感官反应在不同水平的静态负荷下是如何改变的。所有的感受器都表现出相张力放电,这反映了施加力的水平和速率。我们的研究表明:(1)感觉器的强直放电可以指示力的水平,但静态负荷的准确编码可能受到大量受体适应和滞后的影响;(2)在不同初始负荷水平下施加增量力时,受体的绝对张力敏感性降低;(3)感受器的相位放电准确编码施力速率;(4)在存在静载荷的情况下,对力变化率的敏感性严格保持不变。这些发现表明,感觉器的放电是特别调整到力的变化率在所有水平的腿负荷。这些信息可以用来调整姿势和行走,以适应不同的地形和意想不到的干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Encoding of forces by cockroach tibial campaniform sensilla: implications in dynamic control of posture and locomotion.

Forces exerted by a leg in support and propulsion can vary considerably when animals stand upon or traverse irregular terrains. We characterized the responses of the cockroach tibial campaniform sensilla, mechanoreceptors which encode force via strains produced in the exoskeleton, by applying forces to the leg at controlled magnitudes and rates. We also examined how sensory responses are altered in the presence of different levels of static load. All receptors exhibit phasico-tonic discharges that reflect the level and rate of force application. Our studies show that: (1) tonic discharges of sensilla can signal the level of force, but accurate encoding of static loads may be affected by substantial receptor adaptation and hysteresis; (2) the absolute tonic sensitivities of receptors decrease when incremental forces are applied at different initial load levels; (3) phasic discharges of sensilla accurately encode the rate of force application; and (4) sensitivities to changing rates of force are strictly preserved in the presence of static loads. These findings imply that discharges of the sensilla are particularly tuned to the rate of change of force at all levels of leg loading. This information could be utilized to adapt posture and walking to varying terrains and unexpected perturbations.

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