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蜘蛛园蛛蛛网中最优区域的利用情况。

Optimal area use in orb webs of the spider Araneus diadematus.

作者信息

Krink T, Vollrath F

机构信息

Department of Computer Science, Aarhus University, Ny Munkegade B 540, 8000 Aarhus C, Denmark.

出版信息

Naturwissenschaften. 2000 Feb;87(2):90-3. doi: 10.1007/s001140050017.

Abstract

We studied the abilities of the garden cross spider Araneus diadematus regarding adaptation of web geometry to spatial constraints. Spiders reacted to a spatial reduction in their building site from a square-shaped frame to a slimmer, rectangular frame (side ratio 1 : 2) by maintaining overall web geometry while reducing the web area covered by the sticky capture spiral. However, when the frames were changed further to a rectangular side ratio of 1 : 3, the spiders changed specific web properties in such a way that a further reduction in the capture spiral area was prevented. Construction of the threads making up the web frame and the auxiliary spiral requires that the spider explores the spatial constraints of its building site. The geometry of both frame and auxiliary spiral threads in turn determine the geometry of the capture threads. Since in very narrow frames the spider adjusted the auxiliary to suit the subsequent capture spiral, we suggest that an initial spatial survey led to the final adaptation of overall web geometry to a web site.

摘要

我们研究了园蛛Araneus diadematus使蛛网几何形状适应空间限制的能力。当蜘蛛的筑巢场地从方形框架变为更窄的矩形框架(边长比为1:2)时,它们通过保持蛛网的整体几何形状,同时减少粘性捕获螺旋所覆盖的蛛网面积来做出反应。然而,当框架进一步变为边长比为1:3的矩形时,蜘蛛改变了特定的蛛网属性,从而防止了捕获螺旋面积的进一步减小。构成蛛网框架和辅助螺旋的丝线的构建需要蜘蛛探索其筑巢场地的空间限制。框架和辅助螺旋丝线的几何形状反过来又决定了捕获丝线的几何形状。由于在非常狭窄的框架中,蜘蛛会调整辅助螺旋以适应后续的捕获螺旋,我们认为最初的空间探测导致了蛛网整体几何形状最终适应筑巢场地。

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