Cumulative energy exposure is the study's exposure framing variable, defined as the product of spatial-peak pulse-average intensity, sonication duration, and duty cycle.
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Cumulative energy exposure
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Higher cumulative energy exposure suppresses gastrocnemius EMG activity during rat sciatic nerve ultrasound neuromodulation.
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Our findings demonstrate that higher cumulative energy exposure suppresses EMG activity in the gastrocnemius muscle (innervated by the sciatic nerve).
Lower cumulative energy exposure enhances motor stimulation during rat sciatic nerve ultrasound neuromodulation.
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However, lower cumulative energy exposure enhances motor stimulation.
Ultrasound sonication can switch electrically evoked EMG activity from excitation to suppression depending on acquired cumulative energy.
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our results show a switch from excitation to suppression of electrically evoked EMG activity following ultrasound sonication depending on the acquired cumulative energy