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Examination of the interaction of parameters for low-intensity focused ultrasound of the human motor cortex

Areej Ennasr, Gabriel Isaac, Andrew Strohman, Wynn Legon

Brain Stimulation 2024, 17, 1293-1306 · 10.1016/j.brs.2024.11.005

human healthyhealthyemg mep

Abstract

Background Low-intensity focused ultrasound (LIFU) is a promising form of non-invasive neuromodulation characterized by a rich parameter space that includes intensity, duration, duty cycle and pulsing strategy. The effect and interaction of these parameters to affect human brain activity is poorly understood. A better understanding of how parameters interact is critical to advance LIFU as a potential therapeutic. Objective/hypothesis To determine how intensity, duration, and duty cycle interact to produce neuromodulation effects in the human motor cortex. Further, this study assesses the effect of pulsing versus continuous ultrasound. We hypothesize that higher duty cycles will confer excitation. Increasing intensity or duration will increase the magnitude of effect. Pulsing LIFU will not be more effective than continuous wave ultrasound. Methods N = 18 healthy human volunteers underwent 20 different parameter combinations that included a fully parametrized set of two intensities (I SPPA : 6 & 24 W/cm 2 ), five duty cycles (1, 10, 30, 50, 70 %) and two durations (100, 500 msec) with a constant pulse repetition frequency of 1 kHz delivered concurrently with transcranial magnetic stimulation (TMS) to the primary motor cortex (M1). Four of these parameter combinations were also delivered continuously, matched on the number of cycles. Motor-evoked potential (MEP) amplitude was the primary outcome measure. All parameter combinations were collected time-locked to MEP generation. Results There was no evidence of excitation from any parameter combination. 3 of the 24 parameter sets resulted in significant inhibition. The parameter set that resulted in the greatest inhibition (∼30 %) was an intensity of 6W/cm 2 with a duty cycle of 30 % and a duration of 500 msec. A three-way ANOVA revealed an interaction of intensity and duty cycle. The analysis of continuous versus pulsed ultrasound revealed a 3-way interaction of intensity, pulsing, and the number of cycles such that under the 6W/cm 2 condition higher cycles of pulsed ultrasound resulted in inhibition whereas lower number of cycles using continuous LIFU resulted in inhibition. Conclusions LIFU to M1 in humans, in the range employed, either conferred inhibition or had no effect. Significant excitation was not observed. In general, lower intensity looks to be more efficacious for inhibition that depends on duration. In addition, pulsed ultrasound looks to be more effective for inhibition as compared to continuous wave after controlling for total energy delivered. Non-specific auditory effects may contribute to these results.

Abstract via europepmc.

Specieshuman
Subjects18 participants
Sessions per subject2, 4swept
Randomisedyes
Blindingnone
Sham / controlnone
Auditory controlnone
Readout timingonline
Anaesthesianot applicable
Readoutsemg mepMotor-evoked potential (MEP) peak-to-peak amplitude via single-pulse TMS
Direction of effectinhibitoryNo parameter combination produced significant excitation; 3 of 24 parameter sets (pulsed 6 W/cm2 30% DC 500 ms; pulsed 24 W/cm2 1% DC 500 ms; pulsed 6 W/cm2 70% DC 500 ms) produced significant MEP inhibition, greatest ~30% at 6 W/cm2, 30% duty cycle, 500 ms.
Adverse eventsobservedA review of symptoms questionnaire [14] queried the participants on the presence of various symptoms and their severity (absent/mild/moderate/severe) scored on a scale of 1–4. This questionnaire was collected at the beginning of each visit which had LIFU/TMS application and 30 min after TMS/LIFU application to indicate any changes of from the intervention. Fig. 7 depicts all sessions in which participants received TMS or LIFU/TMS, even if they had a failed session (Table A3). If there was no change, or improvement in the participant’s symptoms, the symptoms were represented as absent. There were a few sessions in which participants had mild neck pain, sleepiness, headache, and scalp sensations. Of the 16 participants who responded to the one-month follow-up questionnaire, none of them reported any persisting or new symptoms.

Exposures

Exposure 1: Full parametric sweep of pulsed and continuous-wave LIFU to M1, concurrent with TMS

Target: primary motor cortex — “primary motor cortex (M1) hand knob / FDI hotspot
Device: custom-built

Pulse timing
Waveformpulsed, continuous
Fundamental frequency (kHz)500✓✓
Pulse duration (ms)not reported
Pulse repetition frequency (Hz)1,000✓✓
Duty cycle (%)1, 10, 30, 50, 70, 100swept?
Sonication duration (s)0.1, 0.5, 0.07, 0.15swept✓✓
Pressure and intensity, by domain
Free-field pressure (kPa)888✓✓
Free-field Isppa (W/cm²)6, 24swept✓✓
Free-field Ispta (W/cm²)not reported
In-situ estimatesimulationmean or range across subjects
In-situ pressure (kPa)141.1, 275.3swept✓✓
In-situ Isppa (W/cm²)not reported
In-situ Ispta (W/cm²)not reported
Protocol, in the paper’s words

Pulsed LIFU: two intensities (ISPPA 6, 24 W/cm2) x five duty cycles (1, 10, 30, 50, 70%) x two durations (100, 500 ms) at constant PRF of 1 kHz = 20 pulsed conditions. Continuous-wave (CW): two durations (70, 150 ms) at the same two intensities, cycle-matched to the 70% DC/100 ms and 30% DC/500 ms pulsed conditions respectively (4 CW conditions). TMS was time-locked to occur 50 ms before the end of LIFU stimulation for all parameter sets; 20 LIFU/TMS pulses were delivered per parameter combination with an ISI of 10 s.

Flags from extraction

  • n_subjects23 participants were enrolled; 4 failed baseline MEP threshold and 1 was lost to follow-up before LIFU testing, leaving 18 who actually received LIFU; 18 recorded as the number exposed to ultrasound.
  • exposures[0].timing.duty_cycle_pctList combines duty cycle values from the pulsed sweep (1-70%) with the continuous-wave conditions represented as 100% duty cycle; these were tested as a distinct pulsed-vs-continuous comparison at the same target/frequency.
  • exposures[0].in_situ.reported_asTable 1 gives per-participant values with a mean +/- SD and range across the 18 subjects; mean values used per instructions.