可拉伸丝膜的打印用于应变测量。

Printing of stretchable silk membranes for strain measurements.

机构信息

Department of Civil and Environmental Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Lab Chip. 2016 Jul 7;16(13):2459-66. doi: 10.1039/c6lc00519e. Epub 2016 May 31.

Abstract

Quantifying the deformation of biological tissues under mechanical loading is crucial to understand its biomechanical response in physiological conditions and important for designing materials and treatments for biomedical applications. However, strain measurements for biological tissues subjected to large deformations and humid environments are challenging for conventional methods due to several limitations such as strain range, boundary conditions, surface bonding and biocompatibility. Here we propose the use of silk solutions and printing to synthesize prototype strain gauges for large strain measurements in biological tissues. The study shows that silk-based strain gauges can be stretched up to 1300% without failure, which is more than two orders of magnitude larger than conventional strain gauges, and the mechanics can be tuned by adjusting ion content. We demonstrate that the printing approach can accurately provide well bonded fluorescent features on the silk membranes using designs which can accurately measure strain in the membrane. The results show that these new strain gauges measure large deformations in the materials by eliminating the effects of sliding from the boundaries, making the measurements more accurate than direct outputs from tensile machines.

摘要

量化生物组织在机械载荷下的变形对于理解其在生理条件下的生物力学响应至关重要,对于设计用于生物医学应用的材料和治疗方法也非常重要。然而,由于应变范围、边界条件、表面结合和生物相容性等多种限制,传统方法对大变形和潮湿环境下的生物组织进行应变测量具有挑战性。在这里,我们提出使用丝素溶液和打印来合成用于生物组织大应变测量的原型应变计。研究表明,基于丝素的应变计在不失效的情况下可以拉伸至 1300%,这比传统应变计大两个数量级以上,并且可以通过调整离子含量来调整力学性能。我们证明,打印方法可以使用可以准确测量膜中应变的设计,在丝膜上准确提供良好结合的荧光特征。结果表明,这些新的应变计通过消除边界滑动的影响来测量材料的大变形,使得测量结果比拉伸机的直接输出更准确。

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