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  <title><![CDATA[Ph.D. Dissertation Defense - Byunghun Lee]]></title>
  <body><![CDATA[<p><strong>Title</strong><em>:&nbsp; </em><em>A Robust Wirelessly-powered Recording and Stimulation System for Freely-moving Animal Subject</em></p>

<p><strong>Committee:</strong></p>

<p>Dr. Maysam Ghovanloo, ECE, Chair , Advisor</p>

<p>Dr. John Cressler, ECE</p>

<p>Dr. Hua Wang, ECE</p>

<p>Dr. Omer Inan, ECE</p>

<p>Dr. Yoonsu Choi, UT RGV</p>

<p><strong>Abstract: </strong></p>

<p>The objective of the proposed&nbsp;research is&nbsp;is to develop a robust wirelessly-powered implantable&nbsp;recording and stimulation system for a freely-moving animal subject. Several innovative system- and circuit-level techniques are proposed towards the development of a novel wireless power transfer (WPT) system and an inductively-powered wireless implantable neural-recording and stimulation system (WINeRS) for a freely-moving animal subject. The dissertation includes 1) a high-efficiency and adaptive wireless power transfer system,2) &nbsp;three-phase time-multiplexed scalable power Tx which has ability to wirelessly power a large number of distributed Rx&nbsp;with arbitrary angular and spatial misalignments across a large plane, 3)&nbsp;a novel wireless platform for electrophysiology experiments inside the standard homecage called EnerCage-HC, which takes advantage of multi-coil coupling and Kinect<sup>&reg;</sup>&nbsp;based optical localization to offer an efficient and low-cost technology for wireless powering any electronics attached to a small animal subject and tract its behavior, and 4)&nbsp;a robust wireless implantable neural and peripheral recording and stimulation (WINeRS) system fully compatible with the EnerCage-HC system with measurement and in vivo experimental results.</p>
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