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Peripheral Nerve Stimulation Optimized Pulses for EPI (POPE) allows high-resolution fMRI

Huber, L.; Rattenbacher, D.; Guerin, B.; Hong, H.; Pizzuti, A.; Gulban, O. F.; Lo, W.-C.; Mareyam, A.; Droppa, K.; Yao, J.; Analoro, C.; Wighton, P.; Feinberg, D.; Wald, L. L.; Stirnberg, R.

2026-07-27 neuroscience
10.64898/2026.07.22.739360 bioRxiv
Show abstract

PurposeRecent improvements in MRI gradient design and amplifiers, advanced MRI scanners are now routinely utilizing slew rates of several hundred T/m/s. However, full gradient performance cannot be exploited in high-resolution EPI due to peripheral nerve stimulation (PNS) limits. We aim to characterize and mitigate these PNS constraints using a simple sequence modification: PNS-optimized EPI gradient pulse shapes. MethodsPNS-Optimized Pulses for EPI (POPE): we selectively reduce the slew rate of gradient pulses at periods of high predicted PNS spikes, while leaving the rest of the waveform unchanged. PNS sensation was evaluated. ResultsPOPE allows 7%-35% faster imaging of EPI protocols resolutions of 1mm-0.3mm resolutions without exceeding predicted PNS. With such improvements, POPE allows robust 0.3 mm isotropic fMRI protocols that would have exceeded safety limits without it. ConclusionPOPE facilitates locally precise fMRI activation mapping on clinical 7T scanners at spatial resolution that were previously unattainable due to PNS limitations.

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