首页> 外文期刊>The Journal of Experimental Biology >The big squeeze: scaling of constriction pressure in two of the world's largest snakes, Python reticulatus and Python molurus bivittatus
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The big squeeze: scaling of constriction pressure in two of the world's largest snakes, Python reticulatus and Python molurus bivittatus

机译:最大的挤压:世界上两条最大的蛇Python reticulatus和Python molurus bivittatus的收缩压力增大

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摘要

Snakes are important predators that have radiated throughout many ecosystems, and constriction was important in their radiation. Constrictors immobilize and kill prey by using body loops to exert pressure on their prey. Despite its importance, little is known about constriction performance or its full effects on prey. We studied the scaling of constriction performance in two species of giant pythons (Python reticulatus and Python molurus bivittatus) and propose a new mechanism of prey death by constriction. In both species, peak constriction pressure increased significantly with snake diameter. These and other constrictors can exert pressures dramatically higher than their prey's blood pressure, suggesting that constriction can stop circulatory function and perhaps kill prey rapidly by over-pressurizing the brain and disrupting neural function. We propose the latter 'red-out effect' as another possible mechanism of prey death from constriction. These effects may be important to recognize and treat properly in rare cases when constrictors injure humans.
机译:蛇是遍及许多生态系统的重要捕食者,而收缩对它们的辐射很重要。 strict缩者通过使用身体to向猎物施加压力来固定并杀死猎物。尽管它很重要,但对压缩性能或其对猎物的完全影响知之甚少。我们研究了两种巨蟒(Python reticulatus和Python molurus bivittatus)的缩颈行为的标度,并提出了一种通过缩颈导致猎物死亡的新机制。在这两个物种中,最大收缩压均随着蛇的直径而显着增加。这些和其他收缩器可以施加比其猎物的血压高得多的压力,这表明收缩可以停止循环功能,并可能通过过度加压大脑和破坏神经功能而迅速杀死猎物。我们建议后者的“消除效应”是另一种可能的收缩造成猎物死亡的机制。这些效应对于在狭窄的人伤人的罕见情况下正确识别和治疗可能很重要。

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