In Vivo application and localization of transcranial focused ultrasound using dual-mode ultrasound arrays.
Authors: Haritonova A, Liu D, Ebbini ES
Focused ultrasound (FUS) has been proposed for a variety of transcranial applications, including neuromodulation, tumor ablation, and blood-brain barrier opening. A flurry of activity in recent years has generated encouraging results demonstrating its feasibility in these and other applications. To date, monitoring of FUS beams has been primarily accomplished using MR guidance, where both MR thermography and elastography have been used. The recent introduction of real-time dual-mode ultrasound array (DMUA) systems offers a new paradigm in transcranial focusing. In this paper, we present first experimental results of ultrasound-guided transcranial FUS (tFUS) application in a rodent brain, both ex vivo and in vivo. DMUA imaging is used for visualization of the treatment region for placement of the focal spot within the brain. This includes the detection and localization of pulsating blood vessels at or near the target point(s). In addition, DMUA imaging is used to monitor and localize the FUS-tissue interactions in real time. In particular, a concave (40 mm radius of curvature), 32-element, 3.5-MHz DMUA prototype was used for imaging and tFUS application in ex vivo and in vivo rat models. The ex vivo experiments were used to evaluate the point spread function of the transcranial DMUA imaging at various points within the brain. In addition, DMUA-based transcranial ultrasound thermography measurements were compared with thermocouple measurements of subtherapeutic tFUS heating in rat brain ex vivo. The ex vivo setting was also used to demonstrate the capability of DMUA to produce localized thermal lesions. The in vivo experiments were designed to demonstrate the ability of the DMUA to apply, monitor, and localize subtherapeutic tFUS patterns that could be beneficial in transient blood-brain barrier opening. The results show that although the DMUA focus is degraded due to the propagation through the skull, it still produces localized heating effects within a sub-millimeter volume. In addition, DMUA transcranial echo data from brain tissue allow for reliable estimation of temperature change.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To demonstrate the feasibility of using a dual-mode ultrasound array (DMUA) to visualize, monitor, and localize transcranial focused ultrasound (tFUS) delivery and temperature changes in ex vivo and in vivo rodent brains.
Animal model / Human subject
Rat (Rattus norvegicus); strain: None; age: None; sex: None
Disease model
Transient blood–brain barrier opening (BBB opening) in a rodent brain model
MRI or image guidance method
Real-time dual-mode ultrasound array (DMUA) imaging — ultrasound-guided transcranial FUS with a concave 32-element 3.5 MHz DMUA for focal-spot placement, vessel localization, and real-time monitoring
Targeted brain region(s)
Rat Brain
Cargo name and characteristics
Transcranial focused ultrasound (tFUS) acoustic energy delivered by a concave 32‑element dual‑mode ultrasound array (DMUA) transducer (40 mm radius of curvature), center frequency 3.5 MHz; used for imaging, localized subtherapeutic heating, thermal lesioning, and transient blood–brain barrier opening.
Route of administration
Transcranial focused ultrasound (tFUS) applied through the skull
Outcomes and Safety
Summary of Outcomes
DMUA-guided transcranial focused ultrasound produced localized sub-millimeter heating and thermal lesions and enabled real-time monitoring/localization of tissue interactions and temperature changes, supporting application of subtherapeutic patterns for transient blood–brain barrier opening.
Safety-related matter
The paper reports that DMUA produces localized heating effects and can create localized thermal lesions ex vivo while in vivo experiments applied and monitored subtherapeutic tFUS for transient blood–brain barrier opening, but it does not report explicit adverse events.
Brain Region
Ultrasound Parameters
Ultrasound instrument
Concave 32-element 3.5 MHz dual-mode ultrasound array (DMUA) prototype; 40-mm radius of curvature; manufacturer None.
FUS Frequency
3.5 MHz
FUS Mode
pulsed
Duration of a single FUS session
None.
Focal Characteristics
40 mm
Treatment frequency
single session
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