Parameter-dependent cell-type specific effects of transcranial focused ultrasound stimulation in an awake head-fixed rodent model.
Authors: Ramachandran S, Gao H, Yttri E, Yu K, He B
<i>Objective.</i>Transcranial focused ultrasound (tFUS) is a promising neuromodulation technique able to target shallow and deep brain structures with high precision. Previous studies have demonstrated that tFUS stimulation responses are cell-type specific, and specifically tFUS can elicit time-locked neural activity in regular spiking units (RSUs) that is sensitive to increases in pulse repetition frequency (PRF), while time-locked responses are not seen in fast spiking units (FSUs). These findings suggest a unique capability of tFUS to alter circuit network dynamics with cell-type specificity; however, these results could be biased by the use of anesthesia, which significantly modulates neural activities.<i>Approach.</i>In this study, we developed an awake head-fixed rat model specifically designed for simultaneous tFUS stimulation using a customized 128-element ultrasound array transducer, and recording of spiking data. Using this novel animal model, we examined a series of PRFs and burst duty cycles (DCs) to determine their effects on neuronal subpopulations without anesthesia.<i>Main results.</i>We observed cell type specific responses to varying PRF and DC in the awake setting as well as the anesthetized setting, with time locked responses observed in RSU and delayed responses in FSU. Anesthesia broadly was found to dampen responses to tFUS, and affected the latency of delayed responses. Preferred parameters for inducing time-locked responses appear to be 1500 Hz PRF and 60% DC.<i>Significance.</i>We conclude that despite some differences in response, isoflurane anesthesia is not a major confound in studying the cell-type specificity of ultrasound neuromodulation, but may affect studies of circuit dynamics and FSU. Our developed awake model will allow for future investigations without this confound.
Introduction
Purpose
Transcranial ultrasound stimulation
Study Objective
To test whether transcranial focused ultrasound pulse repetition frequency and duty cycle produce cell-type specific neuronal responses in the somatosensory cortex using a novel awake head-fixed rat model for simultaneous stimulation and spiking recordings, and to compare these responses with anesthetized conditions.
Animal model / Human subject
Rat (Rattus norvegicus), Wistar strain, adult (approximately 7 months at PRF tests; 9 months for anesthetized recordings; 10 months for DC tests), male, ~250 g
Disease model
Healthy
MRI or image guidance method
Stereotactic coordinates with transducer alignment/beam steering (targeting S1 at X=0, Y=0, Z=35 relative to the transducer center) using the Verasonics steering system and confirmed by ex‑vivo hydrophone 3D pressure mapping
Targeted brain region(s)
S1
Target coordinates
X = 0, Y = 0, Z = 35 (relative to the center of the transducer's spherical cap)
Outcomes and Safety
Summary of Outcomes
Transcranial focused ultrasound produced cell-type specific effects: regular-spiking units (RSUs) showed time-locked increases in firing while fast-spiking units (FSUs) showed delayed responses, and isoflurane anesthesia broadly dampened responses and altered FSU response latency. Effective stimulation parameters identified were PRFs of 1500 Hz (with 3000–4500 Hz also producing high responses) and a 60% duty cycle for strongest RSU time-locked effects (PRFs tested: 30, 300, 1500, 3000, 4500 Hz; DCs tested: 6%, 30%, 60% — RSU delayed responses preferred ~1500–3000 Hz and 30% DC, FSU delayed responses preferred 4500 Hz and 60% DC).
Safety-related matter
No adverse effects were reported; sham conditions produced no significant responses and the authors state electrode vibration is not expected at the delivered pressure (114 kPa), which is below the threshold of concern.
Brain Region
Ultrasound Parameters
Ultrasound instrument
128-element random array ultrasound transducer H276 (Sonic Concepts, Bothell, WA, USA); radius of acoustic aperture 8.5 mm; acoustic exit plane diameter 15 mm. Driven by Vantage 128 research ultrasound platform (Verasonics, Kirkland, WA, USA).
FUS Frequency
1.5 MHz
FUS Intensity
Reported intensities (W/cm^2): Measured I_SPTA = 0.0237071 W/cm^2; Measured I_SPPA = 0.0790238 W/cm^2. Calculated I_SPTA for PRFs: 30 Hz = 0.0006 W/cm^2; 300 Hz = 0.00603 W/cm^2; 1500 Hz = 0.03013 W/cm^2; 3000 Hz = 0.06026 W/cm^2; 4500 Hz = 0.09039 W/cm^2.
FUS Pressure
0.114 MPa
FUS Mode
pulsed
Pulse duration
67 ms
Duration of a single FUS session
1262.5 s (≈21.04 min)
Focal Characteristics
Focal depth: 35; Focal length: None; Aperture size: 15 mm diameter (radius 8.5 mm)
Treatment frequency
Multiple sessions
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