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MEASUREMENTS OF DEFORMATIONS AND ELECTRICAL POTENTIALS IN A CHARGED POROUS MEDIUM

机译:带电多孔介质中形变和电势的测量

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摘要

When a biological tissue is subjected to a mechanical load, an electrical potential gradient is generated. Such potential gradient is associated with the flow of charged particles through a matrix with fixed charges. A deformation of the matrix causes a fluid flow relatively to the solid matrix. This fluid flow tends to separate the freely moving ions in the fluid from the oppositely charged particles, that are attached to the matrix. In this way, an electrical field is created collinear to the fluid flow. This results in an electrical potential. A similar effect appears when charged particles start moving because of a chemical load. In this study, uniaxial confined swelling and compression experiments were performed on a hydrogel that mimics the behaviour of biological tissues. The deformation of the sample and the electrical potential difference over the sample, caused by varying mechanical and chemical loads, were measured successfully.
机译:当生物组织受到机械负荷时,会产生电势梯度。这种电势梯度与带电粒子流过具有固定电荷的基质的流动有关。基质的变形导致流体相对于固体基质流动。这种流体流动趋于使流体中的自由移动离子与附着在基质上的带相反电荷的颗粒分离。以这种方式,产生了与流体线共线的电场。这导致电位。当带电粒子由于化学负载而开始移动时,会出现类似的效果。在这项研究中,在模拟生物组织行为的水凝胶上进行了单轴受限膨胀和压缩实验。成功地测量了由于机械和化学负载变化而引起的样品变形和样品上的电势差。

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