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Wireless Magnetoelastic Transducers for Biomedical Applications

机译:用于生物医学应用的无线磁弹性换能器

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This paper highlights emerging medical applications for magnetoelastic sensing and actuation, each taking advantage of the wireless capabilities and small form factor enabled by the magnetoelastic transduction technique. Magnetoelastic transduction leverages the strong coupling between stress, strain, and magnetization intrinsic to some materials - notably amorphous metals and rare earth crystalline alloys. This coupling provides inherently wireless transduction that does not require any onboard power; these traits are especially advantageous in diagnostic and therapeutic medical implant applications. This paper first describes the basic transduction technique, and considerations for design and fabrication of medical systems which utilize the technique. These considerations include material selection, magnetic biasing, packaging, and interrogation approaches. The first application highlighted is stent monitoring, in which the mass-sensitive magnetoelastic resonator is integrated along the inner sidewall of the stent to provide early detection of stent occlusion. Prototype tests indicate clinical feasibility and a full scale range from zero stent occlusion to full stent occlusion. Wireless ranges of up to 15 cm in situ have been achieved using 25 mm long resonators. The second application is wireless strain sensing, which can be useful for orthopedic implants and orthodontia. A differential strain sensor is described, with a dynamic range of 0-1.85 mstrain - accommodating typical palatal expander strain - and a sensitivity of 12.5×10~3 ppm/mstrain. Finally, a wireless actuator intended to agitate fluid for mitigation of encapsulation of glaucoma drainage devices is shown. Peak actuator vibration amplitudes of 1.5 um - sufficient to affect cell adhesion in other studies - are recorded at a wireless range of 25-30 mm.
机译:本文重点介绍了磁弹性传感和致动的新兴医学应用,每种应用都利用了磁弹性转导技术所具有的无线功能和小巧的外形。磁弹性换能利用了某些材料固有的应力,应变和磁化强度之间的强耦合,特别是非晶态金属和稀土结晶合金。这种耦合提供了固有的无线转换,不需要任何板载电源。这些特征在诊断和治疗医学植入物应用中特别有利。本文首先介绍了基本的转导技术,以及使用该技术的医疗系统的设计和制造注意事项。这些考虑因素包括材料选择,磁性偏置,封装和询问方法。突出显示的第一个应用是支架监测,其中质量敏感的磁弹性谐振器沿着支架的内侧壁集成在一起,以提供对支架阻塞的早期检测。原型测试表明临床可行性,其范围从零支架闭塞到完全支架闭塞。使用25毫米长的谐振器可实现15厘米的原位无线范围。第二个应用是无线应变感测,可用于骨科植入物和正畸。描述了一种差分应变传感器,其动态范围为0-1.85 mstrain(可容纳典型的pa扩张器应变),灵敏度为12.5×10〜3 ppm / mstrain。最后,示出了旨在搅动液体以减轻青光眼引流装置的封装的无线致动器。在25-30 mm的无线范围内记录了1.5 um的峰值致动器振动幅度(足以影响其他研究中的细胞粘附)。

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