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唾腺性能参数及其在唾腺蛛(Scytodes thoracica)中的生物力学意义。

Spitting performance parameters and their biomechanical implications in the spitting spider, Scytodes thoracica.

机构信息

Department of Biology, Vassar College, Poughkeepsie, NY 12604, USA.

出版信息

J Insect Sci. 2009;9:1-15. doi: 10.1673/031.009.6201.

Abstract

Spitting spiders Scytodes spp. subdue prey by entangling them at a distance with a mixture of silk, glue, and venom. Using high-speed videography and differential interference contrast microscopy, the performance parameters involved in spit ejection by Scytodes thoracica (Araneae, Scytodidae) were measured. These will ultimately need to be explained in biomechanical and fluid dynamic terms. It was found that the ejection of "spit" from the opening of the venom duct (near the proximal end of the fang) was orderly. It resulted in a pattern that scanned along a lateral-medial axis (due to fang oscillations) while traversing from ventral to dorsal (due to cheliceral elevation). Each lateral-to-medial sweep of a fang produced silk-borne beads of glue that were not present during each subsequent medial-to-lateral sweep. The ejection of "spit" was very rapid. A full scan (5-57 fang cycles, one upsweep of a chelicera) typically occupied less than 30 ms and involved fang oscillations at 278-1781 Hz. Ejection velocities were measured as high as 28.8 m/s. The "spit" was contractile. During the 0.2 s following ejection, silk shortened by 40-60% and the product of a full scan by both of the chelicerae could exert an aggregate contractile force of 0.1 - 0.3 mN. Based on these parameters, hypotheses are described concerning the biomechanical and fluid dynamic processes that could enable this kind of material ejection.

摘要

喷丝蜘蛛 Scytodes spp. 通过用丝、胶和毒液的混合物远距离缠缠住猎物来制服猎物。使用高速录像和微分干涉对比显微镜,测量了 Scytodes thoracica(蜘蛛目,Scytodidae)喷出“吐沫”时涉及的性能参数。这些最终需要用生物力学和流体动力学术语来解释。结果发现,从毒管开口(靠近毒牙的近端)喷出“吐沫”是有序的。它产生了一种扫描沿侧向-中间轴的模式(由于毒牙的振荡),同时从腹侧向背侧(由于螯肢的升高)穿越。每一次毒牙从侧向到中间的扫动都会产生带有胶珠的丝,而在下一次中间到侧向的扫动中则没有这些胶珠。“吐沫”的喷出速度非常快。完整的扫描(5-57 个毒牙周期,一次螯肢的上扬)通常不到 30 毫秒,涉及 278-1781 Hz 的毒牙振荡。喷出速度高达 28.8 m/s。“吐沫”是可收缩的。在喷出后的 0.2 秒内,丝缩短了 40-60%,并且两个螯肢完整扫描的乘积可以产生 0.1-0.3 mN 的总收缩力。根据这些参数,描述了关于这种物质喷射的生物力学和流体动力学过程的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc50/3011943/8061e3c2f4a9/f01_01.jpg

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