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Katrina Barth

Showing results (1-10 of 8) with videos related to

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Journal of Neural Engineering|June 12, 2024
Intan Technologies integrated circuits can produce analog-to-digital conversion artifacts that affect neural signal acquisitionKatrina Barth, Cecilia Schmitz, Thomas Jochum, et al.
Journal of Neurosurgery. Case Lessons|February 9, 2026
High-resolution cortical mapping within and across the central sulcus using 1024-electrode micro-electrocorticography arrays: illustrative caseDaniel D Cummins, Katrina Barth, Elton Ho, et al.
Journal of Neural Engineering|July 26, 2022
Flexural bending to approximate cortical forces exerted by electrocorticography (ECoG) arraysNicholas S Witham, Christopher F Reiche, Thomas Odell, et al.
Nature Communications|November 6, 2023
High-resolution neural recordings improve the accuracy of speech decodingSuseendrakumar Duraivel, Shervin Rahimpour, Chia-Han Chiang, et al.
Neurosurgical Focus|February 1, 2026
Initial experience with the precision neuroscience Layer 7 micro-electrocorticography interface for real-time intraoperative neural decodingKurt R Lehner, Shiyu Luo, Becca Greene, et al.
Research Square|May 7, 2026
Microscale organization and separability of upper extremity representations in the human motor homunculusIahn Cajigas, Pedro Borges, Qasim Qureshi, et al.
Brain Communications|June 6, 2022
Intraoperative microseizure detection using a high-density micro-electrocorticography electrode arrayJames Sun, Katrina Barth, Shaoyu Qiao, et al.
Journal of Neural Engineering|May 19, 2021
Flexible, high-resolution thin-film electrodes for human and animal neural researchChia-Han Chiang, Charles Wang, Katrina Barth, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
Journal of Neural Engineering|June 12, 2024
Intan Technologies integrated circuits can produce analog-to-digital conversion artifacts that affect neural signal acquisitionKatrina Barth, Cecilia Schmitz, Thomas Jochum, et al.
Journal of Neurosurgery. Case Lessons|February 9, 2026
High-resolution cortical mapping within and across the central sulcus using 1024-electrode micro-electrocorticography arrays: illustrative caseDaniel D Cummins, Katrina Barth, Elton Ho, et al.
Journal of Neural Engineering|July 26, 2022
Flexural bending to approximate cortical forces exerted by electrocorticography (ECoG) arraysNicholas S Witham, Christopher F Reiche, Thomas Odell, et al.
Nature Communications|November 6, 2023
High-resolution neural recordings improve the accuracy of speech decodingSuseendrakumar Duraivel, Shervin Rahimpour, Chia-Han Chiang, et al.
Neurosurgical Focus|February 1, 2026
Initial experience with the precision neuroscience Layer 7 micro-electrocorticography interface for real-time intraoperative neural decodingKurt R Lehner, Shiyu Luo, Becca Greene, et al.
Research Square|May 7, 2026
Microscale organization and separability of upper extremity representations in the human motor homunculusIahn Cajigas, Pedro Borges, Qasim Qureshi, et al.
Brain Communications|June 6, 2022
Intraoperative microseizure detection using a high-density micro-electrocorticography electrode arrayJames Sun, Katrina Barth, Shaoyu Qiao, et al.
Journal of Neural Engineering|May 19, 2021
Flexible, high-resolution thin-film electrodes for human and animal neural researchChia-Han Chiang, Charles Wang, Katrina Barth, et al.
Pageof 1