首页> 外文会议>IEEE International Frequency Control Symposium >COMPARISON OF SURFACE TRANSVERSE WAVE (STW) AND SHEAR HORIZONTAL ACOUSTIC PLATE MODE (SHAPM) DEVICES FOR BIOCHEMICAL SENSORS
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COMPARISON OF SURFACE TRANSVERSE WAVE (STW) AND SHEAR HORIZONTAL ACOUSTIC PLATE MODE (SHAPM) DEVICES FOR BIOCHEMICAL SENSORS

机译:用于生化传感器的表面横波(STW)和剪切水平声学板模式(SHAPM)装置的比较

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摘要

Surface transverse wave (STW) and shear horizontal acoustic plate mode (SHAPM) geometries have been proposed and demonstrated as potential biochemical sensors. The STW provides simplicity of instrumentation by virtue of its single acoustic mode of operation, while the SHAPM affords ease of packaging since the electronics may be placed on the opposite surface from the liquid solution. First generation device designs using both technologies have previously demonstrated nanogram sensitivity using model biochemical systems such as human IgG / goat anti-human IgG and cytomegalovirus DNA. More recently, second generation devices have been designed and are being tested using bacteria and their toxins. This paper will outline the critical tradeoffs between the two approaches. Initial electrical properties and sensor results are reported.
机译:已经提出了表面横波(STW)和剪切水平声学板模式(SHAPM)几何形状,并被证明为潜在的生化传感器。通过其单一声学操作模式,STW提供了简单的仪器,而Shapm提供易于包装,因为电子器件可以从液体溶液中放置在相对的表面上。使用两种技术的第一代装置设计先前已经使用人体IgG /山羊抗人IgG和巨细胞病毒DNA等模型生化系统显示了纳米敏感性。最近,第二代设备已经设计并使用细菌及其毒素进行测试。本文将概述两种方法之间的关键权衡。报告了初始电气性能和传感器结果。

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