Pitt Shield

A pre-clinical MRI-guided all-in-one focused ultrasound system for murine brain studies.

Authors: Kaovasia TP, Duclos S, Gupta D, Kalayeh K, Fabiilli M, Noll DC, Sukovich J, Pandey A, Xu Z, Hall TL

This paper describes the design and initial proof-of-concept of a single pre-clinical transcranial focused ultrasound (FUS) system capable of performing histotripsy (mechanical ablation), hyperthermia, blood-brain barrier opening (BBBO), sonodynamic therapy, or neuromodulation in a murine brain. We have termed it the All-in-One FUS system for murine brain studies, which is the first FUS system of its kind. The 1.5 MHz ultrasound transducer was fabricated and driven using a custom electronic driver to produce 3-cycle pulses with a focal peak-negative pressure (P-) of up to 87 MPa at a low duty cycle (< 0.1%) for histotripsy as well as 50% duty cycle pulsed-ultrasound with a spatial-peak temporal-average intensity (I<sub>spta</sub>) of up to 251 W/cm<sup>2</sup> for the other FUS modalities. This All-in-One system can be guided by MRI or stereotactically to maximize its flexibility. To validate the design of the system, histotripsy, BBBO, and hyperthermia were performed in naïve brains of two mice for each modality. Histotripsy and BBBO were performed using MRI-based stereotactic co-registration. The therapeutic effect was confirmed using T2-weighted MR-images for histotripsy, and T1-weighted Gadolinium contrast-enhanced MR-images for BBBO. For hyperthermia, an MRI-compatible insert was designed to fit inside the 80 mm imaging coil of a 7-Tesla small-animal MRI-system, with T2-weighted MR-images used to confirm targeting, and MR-thermometry used to monitor the thermal dose delivered.

Introduction

Purpose other
Study Objective To design, fabricate, and provide initial proof-of-concept validation of an MRI-compatible 'All-in-One' transcranial focused ultrasound system for murine brains capable of performing multiple FUS modalities (histotripsy, hyperthermia, and blood–brain barrier opening) using MRI or stereotactic guidance.
Animal model / Human subject mouse, C57BL/6, not reported, not reported
Disease model healthy
MRI or image guidance method MRI-based stereotactic co-registration (using MR fiducials and motor coordinate registration) for histotripsy and BBBO; in-scanner MRI guidance using an MRI-compatible insert with the focus at scanner iso-center and MR-thermometry for hyperthermia.
Targeted brain region(s) Frontal Cortex
Target coordinates -1.1, -0.25, -0.29 mm (x, y, z motor-offsets)

Outcomes and Safety

Summary of Outcomes The system enabled MRI-guided focused ultrasound BBB opening in mouse frontal cortex.
Duration of biological effect not reported
Safety-related matter No bleeding or edema observed.

Brain Region

Ultrasound Parameters

Ultrasound instrument focused ultrasound transducer
FUS Frequency 1.5 MHz
FUS Intensity 251 W/cm2
FUS Pressure 0.75 MPa
FUS Mode pulsed
Pulse duration 1 ms
Duration of a single FUS session not reported
Treatment frequency single

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