Design and Validation of a Patient-Specific Stereotactic Frame for Transcranial Ultrasound Therapy.
Authors: Kusunose J, Rodriguez WJ, Luo H, Manuel TJ, Phipps MA, Yang PF, Grissom WA, Konrad PE, Chen LM, Dawant BM, Caskey CF
Transcranial-focused ultrasound (tFUS) procedures such as neuromodulation and blood-brain barrier (BBB) opening require precise focus placement within the brain. MRI is currently the most reliable tool for focus localization but can be prohibitive for procedures requiring recurrent therapies. We designed, fabricated, and characterized a patient-specific, 3-D-printed, stereotactic frame for repeated tFUS therapy. The frame is compact, with minimal footprint, can be removed and re-secured between treatments while maintaining sub-mm accuracy, and will allow for precise and repeatable transcranial FUS treatment without the need for MR-guidance following the initial calibration scan. Focus localization and repeatability were assessed via MR-thermometry and MR-acoustic radiation force imaging (ARFI) on an ex vivo skull phantom and in vivo nonhuman primates (NHPs), respectively. Focal localization, registration, steering, and re-steering were accomplished during the initial MRI calibration scan session. Keeping steering coordinates fixed in subsequent therapy and imaging sessions, we found good agreement between steered foci and the intended target, with target registration error (TRE) of 1.2 ± 0.3 ( n = 4 , ex vivo) and 1.0 ± 0.5 ( n = 3 , in vivo) mm. Focus position (steered and non-steered) was consistent, with sub-mm variation in each dimension between studies. Our 3-D-printed, patient-specific stereotactic frame can reliably position and orient the ultrasound transducer for repeated targeting of brain regions using a single MR-based calibration. The compact frame allows for high-precision tFUS to be carried out outside the magnet and could help reduce the cost of tFUS treatments where repeated application of an ultrasound focus is required with high precision.
Introduction
Purpose
Transcranial ultrasound stimulation
Study Objective
To design, fabricate, and validate a patient-specific 3D-printed stereotactic frame enabling sub-millimeter repeated transcranial focused ultrasound targeting after a single MRI calibration.
Animal model / Human subject
Non-human primates (NHP); species None; strain None; age None; sex None
Disease model
Healthy
MRI or image guidance method
MRI-based calibration (initial MRI calibration scan) using MR-thermometry and MR-ARFI, with a patient-specific 3D-printed stereotactic frame for repeat targeting
Outcomes and Safety
Summary of Outcomes
A patient-specific 3D-printed stereotactic frame enabled repeatable, sub-mm accurate transcranial focused ultrasound targeting after a single MRI calibration, with target registration error 1.2 ± 0.3 mm (n=4, ex vivo) and 1.0 ± 0.5 mm (n=3, in vivo) and consistent focus position across sessions. Successful configurations included both steered and non-steered focal positions using fixed steering coordinates validated by MR-thermometry and MR-ARFI.
Safety-related matter
The paper does not report or mention any safety concerns or adverse effects associated with the device or procedures.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
Multiple sessions
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