Wirelessly interfacing sensor‐equipped implants and MR scanners for improved safety and imaging

Author:

Silemek Berk1ORCID,Seifert Frank1ORCID,Petzold Johannes1ORCID,Brühl Rüdiger1,Ittermann Bernd1ORCID,Winter Lukas1ORCID

Affiliation:

1. Physikalisch‐Technische Bundesanstalt (PTB) Braunschweig and Berlin Germany

Abstract

AbstractPurposeTo investigate a novel reduced RF heating method for imaging in the presence of active implanted medical devices (AIMDs) which employs a sensor‐equipped implant that provides wireless feedback.MethodsThe implant, consisting of a generator case and a lead, measures RF‐induced ‐fields at the implant tip using a simple sensor in the generator case and transmits these values wirelessly to the MR scanner. Based on the sensor signal alone, parallel transmission (pTx) excitation vectors were calculated to suppress tip heating and maintain image quality. A sensor‐based imaging metric was introduced to assess the image quality. The methodology was studied at 7T in testbed experiments, and at a 3T scanner in an ASTM phantom containing AIMDs instrumented with six realistic deep brain stimulation (DBS) lead configurations adapted from patients.ResultsThe implant successfully measured RF‐induced ‐fields (Pearson correlation coefficient squared [R2] = 0.93) and temperature rises (R2 = 0.95) at the implant tip. The implant acquired the relevant data needed to calculate the pTx excitation vectors and transmitted them wirelessly to the MR scanner within a single shot RF sequence (<60 ms). Temperature rises for six realistic DBS lead configurations were reduced to 0.03–0.14 K for heating suppression modes compared to 0.52–3.33 K for the worst‐case heating, while imaging quality remained comparable (five of six lead imaging scores were ≥0.80/1.00) to conventional circular polarization (CP) images.ConclusionImplants with sensors that can communicate with an MR scanner can substantially improve safety for patients in a fast and automated manner, easing the current burden for MR personnel.

Funder

European Association of National Metrology Institutes

Publisher

Wiley

Subject

Radiology, Nuclear Medicine and imaging

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