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Wireless, battery-free optoelectronic systems as subdermal implants for local tissue oximetry

机译:无线,无线电池光电系统作为局部组织血液血管植入物

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Monitoring regional tissue oxygenation in animal models and potentially in human subjects can yield insights into the underlying mechanisms of local Osub2/sub-mediated physiological processes and provide diagnostic and therapeutic guidance for relevant disease states. Existing technologies for tissue oxygenation assessments involve some combination of disadvantages in requirements for physical tethers, anesthetics, and special apparatus, often with confounding effects on the natural behaviors of test subjects. This work introduces an entirely wireless and fully implantable platform incorporating (i) microscale optoelectronics for continuous sensing of local hemoglobin dynamics and (ii) advanced designs in continuous, wireless power delivery and data output for tether-free operation. These features support in vivo, highly localized tissue oximetry at sites of interest, including deep brain regions of mice, on untethered, awake animal models. The results create many opportunities for studying various Osub2/sub-mediated processes in naturally behaving subjects, with implications in biomedical research and clinical practice.
机译:在动物模型中监测区域组织氧合,潜在的人类受试者可以屈服于局部O 2 介导的生理过程的潜在机制,并为相关疾病状态提供诊断和治疗指导。现有的组织氧合评估技术涉及物理有关,麻醉剂和特殊装置的要求中的一些缺点组合,通常对测试对象的自然行为的影响。这项工作介绍了一种完全无线和完全植入的平台,包括(i)微观光电子,用于连续感测本地血红蛋白动力学和(ii)连续,无线电力输送和无系环操作的数据输出的先进设计。这些特征在体内,在感兴趣部位的体内,高度局部的组织血氧滴定法中支持,包括小鼠的深脑区域,无限制,唤醒动物模型。结果为在天然行为主体中研究了许多研究各种O 2 介导的过程的机会,具有生物医学研究和临床实践的影响。

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