Litcius/Paper detail

Phased Array Beamforming Methods for Powering Biomedical Ultrasonic Implants

Braeden Benedict, Mohammad Meraj Ghanbari, Rikky Muller

2022IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control27 citationsDOI

Abstract

Millimeter-scale implants using ultrasound (US) for power and communication have been proposed for a range of deep-tissue applications, including neural recording and stimulation. However, published implementations have shown high sensitivity to misalignment with the external US transducer. Ultrasonic beamforming using a phased array to these implants can improve tolerance to misalignment, reduce implant volume, and allow multiple implants to be operated simultaneously in different locations. This article details the design of a custom planar phased array US system, which is capable of steering and focusing US power within a 3-D volume. Analysis and simulation is performed to determine the choice of array element pitch, with special attention given to maximizing the power available at the implant while meeting FDA limits for diagnostic US. Time reversal (TR) is proposed as a computationally simple approach to beamforming that is robust despite scattering and inhomogeneity of the acoustic medium. This technique is demonstrated both in active drive and pulse-echo modes, and it is experimentally compared with other beamforming techniques by measuring energy transfer efficiency. Simultaneous power delivery to multiple implants is also demonstrated.

Topics & Concepts

BeamformingUltrasonic sensorPhased arrayAcousticsUltrasonic imagingPhased array ultrasonicsMaterials scienceEngineeringElectrical engineeringElectronic engineeringPhysicsAntenna (radio)Wireless Power Transfer SystemsWireless Body Area NetworksEnergy Harvesting in Wireless Networks