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A Bulk PZT Microsensor for In-Situ Tissue Contrast Detection During Fine Needle Aspiration Biopsy of Thyroid Nodules

机译:用于原位组织对比度检测的甲状腺结节活检期间的散装PZT微传感器

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摘要

This paper describes a piezoelectric sensor integrated into a cavity at the tip of a biopsy needle intended for fine needle aspiration (FNA) of thyroid nodules. Located on a steel diaphragm of 300 µ m radius and 23 µ m average thickness, it is intended to aid in tissue differentiation, providing information that is complementary to any imaging method that may be used concurrently. The sensor is fabricated from bulk lead zirconate titanate (PZT) using a customized process. Micro electro-discharge machining is used to form a steel tool that is subsequently used for batch-mode ultrasonic machining of bulk PZT ceramic. The resulting sensor is 50 µ m thick and 200 µ m in diameter. Devices were tested in materials that mimic the texture of human tissue in the training of physicians, and were separately tested with porcine fat and muscle tissue. The magnitude and frequency of a resonant peak shows tissue-specific characteristics as the needle is inserted into tissue. For example, in the porcine tissue sample, the magnitude and peak frequency respectively change from ≈2118 Ω and ≈163 MHz to ≈562 Ω and ≈150 MHz as the needle moves from fat to muscle tissue.
机译:本文描述了一种压电传感器,该压电传感器集成到用于甲状腺结节的细针抽吸(FNA)的活检针尖端的腔中。位于300μm半径和23μm平均厚度的钢膜片上,旨在帮助组织分化,提供与可以同时使用的任何成像方法互补的信息。使用定制方法,传感器由散装锆锆钛酸钛酸盐(PZT)制成。微电路放电加工用于形成钢工具,随后用于批量PZT陶瓷的批量模式超声波加工。所得到的传感器为50μm厚,直径为200μm。在模拟人类训练中的材料质地的材料中测试了装置,并用猪脂肪和肌肉组织单独测试。谐振峰的幅度和频率显示出针插入组织时的组织特性特性。例如,在猪组织样本中,幅度和峰值频率分别从≈5.2118Ω和≈562Ω和≈150MHz改变,因为针从脂肪移到肌肉组织。

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