Hama N, Takahata M
Animal Behavior and Intelligence, Division of Biological Sciences, Graduate School of Science, Hokkaido University, 060-0810, Sapporo, Japan.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2003 Dec;189(12):877-88. doi: 10.1007/s00359-003-0464-5. Epub 2003 Oct 31.
Crustacean postural control is modulated by behavioral condition. In this study, we investigated how the responses of descending statocyst interneurons were affected during leg movements. Intracellular recording was made from an animal whose statoliths had been replaced with ferrite grains so that statocyst receptors could be activated by magnetic field stimulation. We identified 14 morphological types of statocyst-driven descending interneurons. Statocyst-driven descending interneurons always showed an excitatory response to statocyst stimulation on either ipsilateral or contralateral side to the axon. The response of each statocyst-driven descending interneuron to statocyst stimulation was differently modulated by leg movements in different conditions. During active leg movements, six statocyst-driven descending interneurons were activated regardless of whether a substrate was provided or not. In other two statocyst-driven descending interneurons, the excitatory input during leg movements was stronger when a substrate was provided than when it was not. One statocyst-driven descending interneuron received an excitatory input only during leg movements on a substrate, whereas another statocyst-driven descending interneuron did not receive any input during leg movements both on a substrate and in the air. These results suggest that the descending statocyst pathways are organized in parallel, each cell affected differently by behavioral conditions.
甲壳动物的姿势控制受行为状态的调节。在本研究中,我们调查了腿部运动期间下行平衡囊中间神经元的反应是如何受到影响的。对一只平衡石已被铁氧体颗粒取代的动物进行细胞内记录,以便平衡囊感受器可通过磁场刺激激活。我们识别出14种形态类型的平衡囊驱动的下行中间神经元。平衡囊驱动的下行中间神经元对轴突同侧或对侧的平衡囊刺激总是表现出兴奋性反应。在不同条件下,腿部运动对每个平衡囊驱动的下行中间神经元对平衡囊刺激的反应有不同的调节作用。在腿部主动运动期间,无论是否提供基质,6个平衡囊驱动的下行中间神经元都会被激活。在另外2个平衡囊驱动的下行中间神经元中,腿部运动期间提供基质时的兴奋性输入比不提供基质时更强。1个平衡囊驱动的下行中间神经元仅在基质上进行腿部运动时接受兴奋性输入,而另1个平衡囊驱动的下行中间神经元在基质上和空中进行腿部运动时均未接受任何输入。这些结果表明,下行平衡囊通路是并行组织的,每个细胞受行为状态的影响不同。