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用于细胞穿刺的多功能压电驱动器。

Versatile piezoelectric driver for cell puncture.

作者信息

Fromm M, Weskamp P, Hegel U

出版信息

Pflugers Arch. 1980 Mar;384(1):69-73. doi: 10.1007/BF00589517.

Abstract

A simple and versatile tool facilitating micropuncture of small cells is described which utilizes a commercial piezoelectric element made from a stacked column of monomorph ceramic discs. The device is able to advance complete input stage-electrode-assemblies with high speed and can be used in combination with conventional micromanipulators. Advancing characteristics as recorded optically at high magnification demonstrated less axial vibration, although faster action, than two other modern micropositioners driven by step motors. In biological experiments on selected tissues (Necturus gallbladder epithelium, Amphiuma renal distal tubule cells, rabbit and human corneal endothelium) the combined use of micromanipulator and piezo-stepper was, in all cases, superior to the use of a micromanipulator alone: the percentage of successful cell penetrations increased, cell potentials were stable for a longer time, and the durability of electrode-tips improved.

摘要

描述了一种简单且通用的工具,它利用由堆叠的单压电晶片陶瓷圆盘柱体制成的商用压电元件来促进对小细胞的微穿刺。该装置能够高速推进完整的输入级电极组件,并且可以与传统的显微操作器结合使用。在高倍光学记录下的推进特性表明,与另外两个由步进电机驱动的现代微定位器相比,尽管动作更快,但轴向振动更小。在对选定组织(美洲钝口螈胆囊上皮、鳗螈肾远端小管细胞、兔和人角膜内皮)进行的生物学实验中,在所有情况下,显微操作器和压电步进器的联合使用都优于单独使用显微操作器:成功穿刺细胞的百分比增加,细胞电位在更长时间内保持稳定,并且电极尖端的耐用性提高。

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