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鱿鱼外套膜中胶原纤维的新视角。

New perspectives on collagen fibers in the squid mantle.

作者信息

Krieg Michael, Mohseni Kamran

机构信息

Mechanical and Aerospace Engineering Department, Gainesville, Florida, USA.

出版信息

J Morphol. 2012 Jun;273(6):586-95. doi: 10.1002/jmor.20003. Epub 2012 Jan 18.

Abstract

The squid mantle is a complex structure which, in conjunction with a highly sensitive sensory system, provides squid with a wide variety of highly controlled movements. This article presents a model describing systems of collagen fibers that give the mantle its shape and mechanical properties. The validity of the model is verified by comparing predicted optimal fiber angles to actual fiber angles seen in squid mantle. The model predicts optimal configurations for multiple fiber systems. It is found that the tunic fibers (outer collagen layers) provide optimal jetting characteristics when oriented at 31°, which matches empirical data from previous studies. The model also predicted that a set of intramuscular fibers (IM-1) are oriented relative to the longitudinal axis to provide optimal energy storage capacity within the limiting physical bounds of the collagen fibers themselves. In addition, reasons for deviations from the predicted values are analyzed. This study illustrates how the squid's reinforcing collagen fibers are aligned to provide several locomotory advantages and demonstrates how this complex biological process can be accurately modeled with several simplifying assumptions.

摘要

鱿鱼的外套膜是一个复杂的结构,它与高度敏感的感觉系统一起,为鱿鱼提供了各种各样高度可控的运动。本文提出了一个描述赋予外套膜形状和机械性能的胶原纤维系统的模型。通过将预测的最佳纤维角度与鱿鱼外套膜中实际观察到的纤维角度进行比较,验证了该模型的有效性。该模型预测了多种纤维系统的最佳构型。研究发现,当被膜纤维(外层胶原层)以31°的角度排列时,能提供最佳的喷射特性,这与先前研究的经验数据相符。该模型还预测,一组肌内纤维(IM-1)相对于纵轴定向,以便在胶原纤维自身有限的物理范围内提供最佳的能量储存能力。此外,还分析了与预测值存在偏差的原因。这项研究说明了鱿鱼的增强胶原纤维是如何排列以提供多种运动优势的,并展示了如何通过一些简化假设对这个复杂的生物过程进行精确建模。

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