Blood-brain barrier disruption induced by focused ultrasound and circulating preformed microbubbles appears to be characterized by the mechanical index.
Authors: McDannold N, Vykhodtseva N, Hynynen K
This work investigated the effect of ultrasonic frequency on the threshold for blood-brain barrier (BBB) disruption induced by ultrasound pulses combined with an ultrasound contrast agent. Experiments were performed in rabbits using pulsed sonications at 2.04 MHz with peak pressure amplitudes ranging from 0.3 to 2.3 MPa. BBB disruption was evaluated using contrast-enhanced magnetic resonance imaging. The threshold for BBB disruption was estimated using probit regression. Representative samples with similar amounts of contrast enhancement were examined in light microscopy. Results from these experiments were compared with data from previous studies that used ultrasound frequencies between 0.26 and 1.63 MHz. We found that the BBB disruption threshold (value where the probability for disruption was estimated to be 50%) expressed in terms of the peak negative pressure amplitude increased as a function of the frequency. It appeared to be constant, however, when the exposures were expressed as a function of the mechanical index (peak negative pressure amplitude estimated in situ divided by square root of frequency). Regression of data from all frequencies resulted in an estimated mechanical index threshold of 0.46 (95% confidence intervals: 0.42 to 0.50). Histologic examination of representative samples with similar amounts of blood-brain barrier disruption found that the number of regions containing extravasated red blood cells per unit area was substantially lower on average for lower ultrasound frequencies. This data suggests that the mechanical index is a meaningful metric for ultrasound-induced blood-brain barrier disruption, at least for when other parameters that are not taken into account by the mechanical index are not varied. It also suggests that lower frequency sonication produces less red blood cell extravasation per unit area.
Introduction
Purpose
Drug delivery with BBB opening
Study Objective
To determine how ultrasound frequency affects the threshold for blood–brain barrier disruption induced by ultrasound pulses with a contrast agent and to assess whether the mechanical index predicts that threshold.
Animal model / Human subject
Rabbit; strain None; age None; sex None
Outcomes and Safety
Summary of Outcomes
Focused ultrasound pulses with microbubble contrast disrupted the BBB at a consistent mechanical index threshold of ~0.46 (95% CI 0.42–0.50) across tested frequencies (0.26–2.04 MHz; current experiments at 2.04 MHz); peak negative pressure thresholds rose with frequency but the mechanical index predicted successful BBB disruption. Lower-frequency sonications produced substantially less red blood cell extravasation per unit area.
Safety-related matter
Histological examination revealed extravasation of red blood cells (indicative of microhemorrhage) after BBB disruption, with substantially fewer regions containing RBC extravasation per unit area at lower ultrasound frequencies. A mechanical index threshold for BBB disruption was estimated at 0.46 (95% CI 0.42–0.50).
Brain Region
Ultrasound Parameters
FUS Frequency
2.04 MHz; 0.26–1.63 MHz
FUS Pressure
0.3 to 2.3 MPa
FUS Mode
pulsed
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
multiple
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