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供应双翅目颈部和飞行运动的下行神经元:生理和解剖学特征

Descending neurons supplying the neck and flight motor of Diptera: physiological and anatomical characteristics.

作者信息

Gronenberg W, Strausfeld N J

机构信息

Arizona Research Laboratories, University of Arizona, Tucson 85721.

出版信息

J Comp Neurol. 1990 Dec 22;302(4):973-91. doi: 10.1002/cne.903020420.

DOI:10.1002/cne.903020420
PMID:1707070
Abstract

In Diptera, dorsal neuropils of the pro-, meso-, and metathoracic ganglia supply motor neurons to neck and flight muscles. Motor circuits are supplied by more than 50 pairs of descending neurons (DNs) whose dendritic trees in the brain are restricted to dorsal neuropils of the deutocerebrum where they are grouped together into discrete clusters. Each cluster is visited by wide-field motion-sensitive neurons and by morphologically small-field retinotopic elements. This organization suggests that flight descending neurons should respond to complex stimuli reflecting panoramic movement and small-field motion. Intracellular recordings, combined with dye filling, confirm this. Certain descending neurons responding to visual flow fields terminate bilaterally in superficial pterothoracic neuropils, at the level of indirect (power) flight muscle motor neurons. Other DNs terminate laterally, and provide segmental collaterals to areas containing neck and direct (steering) flight muscle motor neurons. Such DNs are activated by wide-field directional stimuli corresponding to pitch, roll, or yaw, and to small-field stimuli. Appropriate directional mechanosensory stimuli also activate dorsal descending neurons. The significance of dorsal descending neurons for the control of flight is discussed and compared with studies on course deviation neurons in other insects. It is suggested that, in Diptera, dorsal descending neurons may separately be involved in the control of velocity, stabilization, and steering manoeuvres.

摘要

在双翅目昆虫中,前胸、中胸和后胸神经节的背侧神经纤维网为颈部和飞行肌肉提供运动神经元。运动回路由50多对下行神经元(DNs)提供,这些神经元在大脑中的树突仅限于中脑的背侧神经纤维网,它们在那里聚集成离散的簇。每个簇都有宽视野运动敏感神经元和形态学上的小视野视网膜定位元件。这种组织方式表明,飞行下行神经元应该对反映全景运动和小视野运动的复杂刺激做出反应。细胞内记录结合染料填充证实了这一点。某些对视觉流场有反应的下行神经元在间接(动力)飞行肌肉运动神经元水平的胸外侧神经纤维网双侧终止。其他下行神经元在外侧终止,并向包含颈部和直接(转向)飞行肌肉运动神经元的区域提供节段性侧支。这些下行神经元由对应于俯仰、滚转或偏航的宽视野定向刺激以及小视野刺激激活。适当的定向机械感觉刺激也会激活背侧下行神经元。本文讨论了背侧下行神经元对飞行控制的意义,并与其他昆虫的航向偏差神经元研究进行了比较。研究表明,在双翅目昆虫中,背侧下行神经元可能分别参与速度控制、稳定和转向操纵。

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