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Effect on Electrode Composition on Electromechanical Cartilage Reshaping

机译:电极成分对机电软骨整形的影响

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Dielectric properties of cartilage have received comparatively little interest and few studies have examined the effect of the applying electric currents to mechanically deformed cartilages. The objective of this study was to determine the dependence of shape change on electrode composition during a process we have described as "electroforming". Porcine nasal septal cartilage specimens (16 x 5 x 2 mm) were mechanically deformed between two semicircular electrodes. Direct current (DC) current was applied to establish charge separation and electrical streaming potential. Voltage (<10 V) and application time (0-6 minutes) were varied, and shape change was measured using analytic representation. Surface features were evaluated using light microscopy. While shape change strongly correlated with voltage and time for all electrode materials, the voltage and application time that produced maximum shape change (curvature of the jig, ~160° varied for each material. Aluminum is more effective for electroforming than gold as it yields the lowest set of plateau values. Surface features indicated that electrodeposition occurs depending upon the voltage and the standard reduction potential of electrodes. The results from this study provide insight into the dependence of shape change on the external electrical environment of cartilage and how optimal shape change can be produced with nominal electrodeposition.
机译:软骨的介电特性受到的关注相对较少,很少有研究研究了将电流施加到机械变形的软骨上的效果。这项研究的目的是确定在我们称为“电铸”的过程中,形状变化对电极成分的依赖性。猪鼻中隔软骨标本(16 x 5 x 2 mm)在两个半圆形电极之间机械变形。施加直流(DC)电流以建立电荷分离和电子流势。改变电压(<10 V)和施加时间(0-6分钟),并使用解析表示法测量形状变化。使用光学显微镜评估表面特征。尽管所有电极材料的形状变化都与电压和时间密切相关,但产生最大形状变化的电压和施加时间(夹具的曲率,每种材料都变化〜160°。铝比金更有效地电铸,因为铝可产生金。最低的平稳值集。表面特征表明电沉积的发生取决于电极的电压和标准还原电位。这项研究的结果可洞悉形状变化对软骨外部电环境的依赖性以及最佳形状变化如何用名义电沉积生产。

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