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An Investigation of Parameter-Dependent Cell-Type Specific Effects of Transcranial Focused Ultrasound Stimulation Using an Awake Head-Fixed Rodent Model.

Authors: Ramachandran S, Gao H, Yttri E, Yu K, He B

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 both cell-type specific and controllable through altering stimulation parameters. 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. In this study, we develop an awake head-fixed rat model specifically designed for tFUS study, and address a key question if tFUS still has cell-type specificity under awake conditions. 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. We conclude that cell-type specific time-locked and delayed responses to tFUS as well as PRF and DC sensitivity are present in the awake animal model and that despite some differences in response, isoflurane anesthesia is not a major confound in studying the cell-type specificity of ultrasound neuromodulation. We further determine that, in an awake, head-fixed setting, the preferred PRF and DC for inducing time-locked excitation with our pulsed tFUS paradigm are 1500 Hz and 60%, respectively.

Introduction

Purpose Transcranial ultrasound stimulation
Study Objective To determine whether transcranial focused ultrasound (tFUS) retains cell-type specific neuromodulatory effects and parameter sensitivities (pulse repetition frequency and duty cycle) in an awake head-fixed rat model.
Animal model / Human subject Rat; strain None; age None; sex None
Disease model healthy (awake rat)
Targeted brain region(s) S1
Target coordinates X=0, Y=0, Z=35

Outcomes and Safety

Summary of Outcomes In awake head-fixed rats, pulsed transcranial focused ultrasound produced cell-type specific neuronal effects (time-locked responses in regular-spiking units but not fast-spiking units) and delayed responses, with time-locked excitation most effectively induced using a pulse repetition frequency (PRF) of 1500 Hz and a 60% burst duty cycle (DC).
Safety-related matter No safety concerns or adverse effects are mentioned in the provided text; the paper does not report any adverse events.

Brain Region

Ultrasound Parameters

Ultrasound instrument 128-element random array ultrasound transducer H276
FUS Frequency 1.5 MHz
FUS Pressure 114 kPa
FUS Mode pulsed
Pulse duration 67 ms
Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency Multiple sessions

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