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Elastic properties of isolated thick filaments measured by nanofabricated cantilevers.

机译:通过纳米制造的悬臂梁测量的隔离粗丝的弹性性能。

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摘要

Using newly developed nanofabricated cantilever force transducers, we have measured the mechanical properties of isolated thick filaments from the anterior byssus retractor muscle of the blue mussel Mytilus edulis and the telson levator muscle of the horseshoe crab Limulus polyphemus. The single thick filament specimen was suspended between the tip of a flexible cantilever and the tip of a stiff reference beam. Axial stress was placed on the filament, which bent the flexible cantilever. Cantilever tips were microscopically imaged onto a photodiode array to extract tip positions, which could be converted into force by using the cantilever stiffness value. Length changes up to 23% initial length (Mytilus) and 66% initial length (Limulus) were fully reversible and took place within the physiological force range. When stretch exceeded two to three times initial length (Mytilus) or five to six times initial length (Limulus), at forces approximately 18 nN and approximately 7 nN, respectively, the filaments broke. Appreciable and reversible strain within the physiological force range implies that thick-filament length changes could play a significant physiological role, at least in invertebrate muscles.
机译:使用新开发的纳米制造的悬臂力传感器,我们测量了蓝贻贝Mytilus edulis的前屈肌回缩肌和the蟹Li Li肌的telson提肌所分离的粗细丝的机械性能。将单根粗细丝标本悬挂在柔性悬臂梁的尖端和刚性参考梁的尖端之间。将轴向应力施加到细丝上,细丝使柔性悬臂弯曲。将悬臂尖端显微成像到光电二极管阵列上,以提取尖端位置,可通过使用悬臂刚度值将其转换为力。长度变化高达23%的初始长度(Mytilus)和66%的初始长度(Li)是完全可逆的,并且在生理力范围内发生。当拉伸超过初始长度的两倍至三倍(Mytilus)或初始长度的五倍至六倍(Li)时,长丝分别在约18 nN和约7 nN的力下断裂。在生理力范围内可观且可逆的应变意味着,至少在无脊椎动物肌肉中,粗丝长度变化可能起着重要的生理作用。

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