Suppr超能文献

海兔运动的运动神经元控制

Motorneuronal control of locomotion in Aplysia.

作者信息

Hening W A, Walters E T, Carew T J, Kandel E R

出版信息

Brain Res. 1979 Dec 28;179(2):231-53. doi: 10.1016/0006-8993(79)90441-4.

Abstract

We have carried out a combined behavioral and cellular analysis of escape locomotion in Aplysia. Using videotape recording we obtained a detailed description of the coordinated movements of the different regions of the foot and body during locomotion. Alternating waves of extension and longitudinal contraction begin at the head and propagate caudally through each pedal segment at a constant rate. Cobalt backfill of pedal nerves indicated that certain regions of the pedal ganglia were likely to contain motor neurons for the foot and body wall musculature. We examined these areas using intracellular techniques and identified three unique cells and three regional classes of neurons having clear motor effects on the foot and body wall. We also found that locomotion is driven by a central program. The basic locomotor pattern of the identified motor neurons and regional classes of motor neurons persists even after the circumesophageal ganglia have been isolated from the periphery. The motor neurons are not synaptically interconnected; patterned bursting during locomotor activity is produced by cyclic synaptic input. Because the locomotor system has large neurons favorable for cellular analysis and because locomotion is characterized by features of both stereotypy and flexibility, Aplysia promises to be useful for investigating the mechanisms underlying both the generation and modulation of a central program.

摘要

我们对海兔逃避运动进行了行为和细胞的联合分析。通过录像记录,我们详细描述了运动过程中足部和身体不同区域的协调运动。伸展和纵向收缩的交替波从头部开始,以恒定速率沿尾部传播通过每个足节。足神经的钴离子回填表明,足神经节的某些区域可能包含支配足部和体壁肌肉组织的运动神经元。我们使用细胞内技术检查了这些区域,鉴定出三种独特的细胞和三类对足部和体壁有明显运动效应的神经元。我们还发现运动由一个中枢程序驱动。即使在食管周围神经节与外周分离后,已鉴定出的运动神经元和运动神经元区域类别的基本运动模式仍然存在。运动神经元之间没有突触连接;运动活动期间的模式化爆发是由周期性突触输入产生的。由于运动系统有适合细胞分析的大神经元,并且由于运动具有刻板性和灵活性的特征,海兔有望用于研究中枢程序的产生和调制的潜在机制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验