Objective. Neuromodulation of visceral nerves is being intensively studied for treating a wide range of conditions, but effective translation requires increasing the efficacy and predictability of neural interface performance. Here we use computational models of rat visceral nerve to predict how neuroanatomical variability could affect both electrical stimulation and recording with an experimental planar neural interface. Approach. We developed a hybrid computational pipeline, Visceral Nerve Ensemble Recording and Stimulation (ViNERS), to couple finite-element modelling of extracellular electrical fields with biophysical simulations of individual axons. Anatomical properties of fascicles and axons in rat pelvic and vagus nerves were measured or obtained from public datasets. To validate ViNERS, we simulated pelvic nerve stimulation and recording with an experimental four-electrode planar array. Main results. Axon diameters measured from pelvic nerve were used to model a population of myelinated and unmyelinated axons and simulate recordings of electrically evoked single-unit field potentials (SUFPs). Across visceral nerve fascicles of increasing size, our simulations predicted an increase in stimulation threshold and a decrease in SUFP amplitude. Simulated threshold changes were dominated by changes in perineurium thickness, which correlates with fascicle diameter. We also demonstrated that ViNERS could simulate recordings of electrically-evoked compound action potentials (ECAPs) that were qualitatively similar to pelvic nerve recording made with the array used for simulation. Significance. We introduce ViNERS as a new open-source computational tool for modelling large-scale stimulation and recording from visceral nerves. ViNERS predicts how neuroanatomical variation in rat pelvic nerve affects stimulation and recording with an experimental planar electrode array. We show ViNERS can simulate ECAPS that capture features of our recordings, but our results suggest the underlying NEURON models need to be further refined and specifically adapted to accurately simulate visceral nerve axons.
机构:
Korea Inst Machinery & Mat, Daegu Res Ctr Med Devices & Rehabil Engn, 330 Techno Sunhwan Ro, Dalseong Gun 42994, Daegu, South KoreaKorea Inst Machinery & Mat, Daegu Res Ctr Med Devices & Rehabil Engn, 330 Techno Sunhwan Ro, Dalseong Gun 42994, Daegu, South Korea
Shon, Ahnsei
Chu, Jun-Uk
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Korea Inst Machinery & Mat, Daegu Res Ctr Med Devices & Rehabil Engn, 330 Techno Sunhwan Ro, Dalseong Gun 42994, Daegu, South KoreaKorea Inst Machinery & Mat, Daegu Res Ctr Med Devices & Rehabil Engn, 330 Techno Sunhwan Ro, Dalseong Gun 42994, Daegu, South Korea
Chu, Jun-Uk
Jung, Jiuk
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Korea Inst Machinery & Mat, Daegu Res Ctr Med Devices & Rehabil Engn, 330 Techno Sunhwan Ro, Dalseong Gun 42994, Daegu, South KoreaKorea Inst Machinery & Mat, Daegu Res Ctr Med Devices & Rehabil Engn, 330 Techno Sunhwan Ro, Dalseong Gun 42994, Daegu, South Korea
Jung, Jiuk
Kim, Hyungmin
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Korea Inst Sci & Technol, Biomed Res Inst, 5 Hwarang Ro,14 Gil, Seoul 02792, South KoreaKorea Inst Machinery & Mat, Daegu Res Ctr Med Devices & Rehabil Engn, 330 Techno Sunhwan Ro, Dalseong Gun 42994, Daegu, South Korea
Kim, Hyungmin
Youn, Inchan
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Korea Inst Sci & Technol, Biomed Res Inst, 5 Hwarang Ro,14 Gil, Seoul 02792, South KoreaKorea Inst Machinery & Mat, Daegu Res Ctr Med Devices & Rehabil Engn, 330 Techno Sunhwan Ro, Dalseong Gun 42994, Daegu, South Korea
机构:
Bion Inst, East Melbourne, Vic 3002, Australia
Univ Melbourne, Med Bion Dept, Parkville, Vic 3010, AustraliaBion Inst, East Melbourne, Vic 3002, Australia
Payne, Sophie C.
Osborne, Peregrine B.
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Univ Melbourne, Dept Anat & Physiol, Parkville, Vic 3010, AustraliaBion Inst, East Melbourne, Vic 3002, Australia
Osborne, Peregrine B.
Thompson, Alex
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Bion Inst, East Melbourne, Vic 3002, Australia
Univ Melbourne, Med Bion Dept, Parkville, Vic 3010, AustraliaBion Inst, East Melbourne, Vic 3002, Australia
Thompson, Alex
Eiber, Calvin D.
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Univ Melbourne, Dept Anat & Physiol, Parkville, Vic 3010, AustraliaBion Inst, East Melbourne, Vic 3002, Australia
Eiber, Calvin D.
Keast, Janet R.
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Univ Melbourne, Dept Anat & Physiol, Parkville, Vic 3010, AustraliaBion Inst, East Melbourne, Vic 3002, Australia
Keast, Janet R.
Fallon, James B.
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Bion Inst, East Melbourne, Vic 3002, Australia
Univ Melbourne, Med Bion Dept, Parkville, Vic 3010, Australia
Univ Melbourne, Dept Otolaryngol, Parkville, Vic 3010, AustraliaBion Inst, East Melbourne, Vic 3002, Australia