Focused ultrasound simultaneous irradiation/MRI imaging, and two-stage general kinetic model.
Authors: Huang SY, Ko CE, Chen GS, Chung IF, Yang FY
Many studies have investigated how to use focused ultrasound (FUS) to temporarily disrupt the blood-brain barrier (BBB) in order to facilitate the delivery of medication into lesion sites in the brain. In this study, through the setup of a real-time system, FUS irradiation and injections of ultrasound contrast agent (UCA) and Gadodiamide (Gd, an MRI contrast agent) can be conducted simultaneously during MRI scanning. By using this real-time system, we were able to investigate in detail how the general kinetic model (GKM) is used to estimate Gd penetration in the FUS irradiated area in a rat's brain resulting from UCA concentration changes after single FUS irradiation. Two-stage GKM was proposed to estimate the Gd penetration in the FUS irradiated area in a rat's brain under experimental conditions with repeated FUS irradiation combined with different UCA concentrations. The results showed that the focal increase in the transfer rate constant of Ktrans caused by BBB disruption was dependent on the doses of UCA. Moreover, the amount of in vivo penetration of Evans blue in the FUS irradiated area in a rat's brain under various FUS irradiation experimental conditions was assessed to show the positive correlation with the transfer rate constants. Compared to the GKM method, the Two-stage GKM is more suitable for estimating the transfer rate constants of the brain treated with repeated FUS irradiations. This study demonstrated that the entire process of BBB disrupted by FUS could be quantitatively monitored by real-time dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI).
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To develop a real-time MRI-compatible FUS system and a Two-stage general kinetic model to quantitatively assess FUS-induced blood–brain barrier disruption and estimate Gd penetration/transfer rate constants during single and repeated FUS with varying UCA concentrations.
Animal model / Human subject
rat, Sprague-Dawley, not reported, male
Disease model
healthy
MRI or image guidance method
Real-time MRI guidance (real-time DCE-MRI)
Targeted brain region(s)
Striatum
Outcomes and Safety
Summary of Outcomes
A two-stage kinetic model was developed to quantitatively assess FUS-induced BBB disruption using DCE-MRI.
Duration of biological effect
60 min
Safety-related matter
Repeated FUS with low UCA doses was safer than a single high-dose session, minimizing potential hemorrhage.
Brain Region
Ultrasound Parameters
Ultrasound instrument
single-element focused ultrasound transducer
FUS Frequency
1 MHz
FUS Pressure
0.7 MPa
Pulse duration
10 ms
Duration of a single FUS session
30 s
Treatment frequency
multiple
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