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Microwave to near-infrared conversion with a millimeter-scale wireless laser for activating molecular transducers

机译:使用毫米级无线激光器进行微波到近红外的转换,以激活分子传感器

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Light-activated molecular transducers enable precise manipulation of biological processes and are thus powerful tools for studying or treating disease. Their use in vivo, however, is currently limited by the low penetration of light through biological tissue. While electromagnetic fields at microwave frequencies can penetrate thick tissue, they do not provide direct control over molecular transducers. Here, we describe a miniaturized, wirelessly powered laser capable of delivering high intensity near-infrared light in tissue. The device is about 2.5 mm in the largest dimension, weighs less than 30 mg, and can be wirelessly powered through >1 cm of tissue. This device could be used in emerging bioelectronics-based treatments that combine the precision of light with the penetration depth of microwaves.
机译:光激活分子换能器能够精确地控制生物过程,因此是研究或治疗疾病的强大工具。然而,它们目前在体内的使用受到光通过生物组织的低穿透性的限制。虽然微波频率的电磁场可以穿透厚组织,但它们不能直接控制分子换能器。在这里,我们描述了一种能够在组织中传递高强度近红外光的小型化,无线供电的激光器。该设备最大尺寸约为2.5毫米,重量不到30毫克,可以通过1厘米以上的组织无线供电。该设备可用于新兴的基于生物电子学的治疗方法,该技术将光的精确度与微波的穿透深度结合在一起。

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