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A 4.7 T/11.1 T NMR Compliant 50 nW Wirelessly Programmable Implant for Bioartificial Pancreas In Vivo Monitoring

机译:适用于生物人工胰腺的4.7 T / 11.1 T NMR兼容50 nW无线可编程植入物体内监测

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This paper presents a 50 nW wirelessly powered implant for the noninvasive monitoring of a bioartificial pancreas postimplantation in nuclear magnetic resonance (NMR) animal studies. The proposed implant increases NMR signal sensitivity across a 190–470 MHz frequency range in both 4.7 and 11.1 T magnetic fields through the use of a wirelessly programmable resonator. An integrated split capacitive array provides 51.8 pF tuning range and 52 fF resolution while maintaining resonant Q and reducing parasitic contributions. The implant supports forward data telemetry at 5–250 kbit/s using an envelope detector front-end and a 2.4 MHz oversampling clock/data recovery (CDR) receiver. An integrated logic-controlled RF-DC converter and strongly coupled resonant wireless link provide sustained reliable energy transfer during NMR acquisition. NMR signal isolation from the wireless power transmissions is achieved through frequency allocation and orthogonally embedded coil design that provides increased mechanical strength for incorporating device components. Experimental results in tissue-equivalent gel phantoms and small animal studies show an increase in acquired signal-to-noise ratio (SNR) by 141% (7.7 dB) and 83% (5.3 dB) within 4.7 and 11.1 T magnetic field strengths, respectively, with an approximate 100% (6 dB) increase in SNR within the region of interest (ROI) at higher image resolutions.
机译:本文提出了一种50 nW的无线植入物,用于在核磁共振(NMR)动物研究中无创监测植入后的生物人工胰腺。通过使用无线可编程谐振器,拟议的植入物可在4.7和11.1 T磁场中的190-470 MHz频率范围内提高NMR信号灵敏度。集成的分离式电容阵列可提供51.8pF的调谐范围和52fF的分辨率,同时保持谐振Q值并减少寄生影响。植入物使用包络检波器前端和2.4 MHz过采样时钟/数据恢复(CDR)接收器以5–250 kbit / s的速度支持正向数据遥测。集成的逻辑控制的RF-DC转换器和强耦合的共振无线链路可在NMR采集期间提供持续可靠的能量传输。通过频率分配和正交嵌入的线圈设计可实现与无线电力传输的NMR信号隔离,从而为合并设备组件提供了更高的机械强度。组织等效凝胶体模的实验结果和小型动物研究表明,在4.7和11.1 T磁场强度范围内,获得的信噪比(SNR)分别提高了141%(7.7 dB)和83%(5.3 dB) ,以较高的图像分辨率在目标区域(ROI)内的SNR大约提高100%(6 dB)。

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