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Advanced Materials Technologies|March 11, 2021
A gel-free Ti<sub>3</sub>C<sub>2</sub>T<sub>x</sub>-based electrode array for high-density, high-resolution surface electromyographyBrendan B Murphy, Patrick J Mulcahey, Nicolette Driscoll, et al.Materials Today (Kidlington, England)|May 14, 2026
MXene-enabled textile-based energy grid utilizing wireless chargingAlex Inman, Bita Soltan Mohammadlou, Kateryna Shevchuk, et al.Comparative Medicine|April 22, 2020
Functional Deficits in Mice Expressing Human Interleukin 8Julie Michelle Brent, Zuozhen Tian, Lutian Yao, et al.Journal of Neural Engineering|September 2, 2017
Intracranial EEG fluctuates over months after implanting electrodes in human brainHoameng Ung, Steven N Baldassano, Hank Bink, et al.Microsystems & Nanoengineering|September 27, 2021
Wireless, battery-free, and fully implantable electrical neurostimulation in freely moving rodentsAlex Burton, Sang Min Won, Arian Kolahi Sohrabi, et al.ACS Nano|May 12, 2023
Stability of Ti<sub>3</sub>C<sub>2</sub>T<sub></sub> MXene Films and Devices under Clinical Sterilization ProcessesSpencer R Averbeck, Doris Xu, Brendan B Murphy, et al.Microsystems & Nanoengineering|May 7, 2019
Microfabricated intracortical extracellular matrix-microelectrodes for improving neural interfacesWen Shen, Suradip Das, Flavia Vitale, et al.Communications Biology|January 30, 2021
Multimodal in vivo recording using transparent graphene microelectrodes illuminates spatiotemporal seizure dynamics at the microscaleNicolette Driscoll, Richard E Rosch, Brendan B Murphy, et al.Biosensors & Bioelectronics|March 18, 2026
Artifact-free, colocalized opto-electrophysiology enabled by a flexible, multimodal interface integrating transparent MXene microelectrodes and microLEDsRoyce Dong, Yuzhang Chen, Raghav Garg, et al.Plos One|November 2, 2018
Biomimetic extracellular matrix coatings improve the chronic biocompatibility of microfabricated subdural microelectrode arraysFlavia Vitale, Wendy Shen, Nicolette Driscoll, et al.Pageof 6