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A Model of Filiform Hair Distribution on the Cricket Cercus

机译:在板球尾须丝状毛分布模型

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摘要

Crickets and other orthopteran insects sense air currents with a pair of abdominal appendages resembling antennae, called cerci. Each cercus in the common house cricket Acheta domesticus is covered with between 500 to 750 filiform mechanosensory hairs. The distribution of the hairs on the cerci, as well as the global patterns of their movement axes, are very stereotypical across different animals in this species, and the development of this system has been studied extensively. Although hypotheses regarding the mechanisms underlying pattern development of the hair array have been proposed in previous studies, no quantitative modeling studies have been published that test these hypotheses. We demonstrate that several aspects of the global pattern of mechanosensory hairs can be predicted with considerable accuracy using a simple model based on two independent morphogen systems. One system constrains inter-hair spacing, and the second system determines the directional movement axes of the hairs.
机译:和其他直翅类昆虫利用一对类似于触角的触角的腹部附件来感知气流。普通house中的每个蜡cus覆盖着500到750根丝状的机械感官毛发。在该物种的不同动物中,cerci上的毛发分布及其运动轴的整体模式非常刻板,并且已经对该系统的发展进行了广泛的研究。尽管在以前的研究中已经提出了有关头发阵列模式发展的机制的假设,但尚未发表可用于测试这些假设的定量建模研究。我们证明使用基于两个独立的形态发生子系统的简单模型,可以以相当高的精度预测机械感测毛发的整体模式的几个方面。一种系统限制头发间的间距,第二种系统确定头发的定向运动轴。

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