The Cockroach Escape Response

The Cockroach Escape Response
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蟑螂逃跑反应

DOI:
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发表时间:
1984
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影响因子:
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通讯作者:
R. Ritzmann
R. Ritzmann
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作者:
R. Ritzmann

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在美洲大蠊(Periplaneta americana)中,非常低速度的风吹起时会引起一种逃离风吹源的逃跑反应。这种行为及其潜在的神经成分为神经生物学研究提供了相当大的优势。这包括一种可量化预测的行为和许多在动物之间可识别的神经元素。这种行为要求蟑螂不仅要能够探测到风的刺激,而且还必须能够确定风的起源方向。风向信息随后被用于制定行为决策;也就是说,移动到哪里以及如何移动。这绝不是一个简单的动作,即使是最初的转身也涉及到六条腿的协调,每条腿都有一个复杂的肌肉组织,控制着五个独立的腿部分。
In the American cockroach Periplaneta americana, remarkably low velocity wind puffs evoke a running escape response oriented away form the source of the wind puff. This behavior and its underlying neural components provide considerable advantages for neurobiological studies. These include a quantifiably predictable behavior and numerous neural elements that are identifiable from animal to animal. The behavior requires that the cockroach not only must detect a wind stimulus, but also it must be able to determine the direction from which the wind originated. The information on wind direction is then used to establish a behavioral decision; that is, where and how to move. Far from being a simple movement, even the initial turn involves the coordination of six legs each of which possesses a complex musculature controlling five separate leg parts.
节段巨人:小龙虾逃逸系统中命令神经元和运动神经元之间存在驱动神经元的证据。
DOI: 10.1152/jn.1982.47.5.761
发表时间: 1982
影响因子: 2.5
作者:
Roberts,A;Krasne,FB;Hagiwara,G;Wine,JJ;Kramer,AP
通讯作者: Kramer,AP
小龙虾逃逸回路中巨型轴突和运动神经元之间的中间神经元。
DOI: 10.1152/jn.1981.45.3.550
发表时间: 1981
影响因子: 2.5
作者:
Kramer,AP;Krasne,FB;Wine,JJ
通讯作者: Wine,JJ