{"database":"biostudies-literature","file_versions":[],"scores":null,"additional":{"omics_type":["Unknown"],"volume":["645(8081)"],"submitter":["Kaifosh P"],"pubmed_abstract":["Since the advent of computing, humans have sought computer input technologies that are expressive, intuitive and universal. While diverse modalities have been developed, including keyboards, mice and touchscreens, they require interaction with a device that can be limiting, especially in on-the-go scenarios. Gesture-based systems use cameras or inertial sensors to avoid an intermediary device, but tend to perform well only for unobscured movements. By contrast, brain-computer or neuromotor interfaces that directly interface with the body's electrical signalling have been imagined to solve the interface problem<sup>1</sup>, but high-bandwidth communication has been demonstrated only using invasive interfaces with bespoke decoders designed for single individuals<sup>2-4</sup>. Here, we descr"],"journal":["Nature"],"pagination":["702-711"],"full_dataset_link":["https://www.ebi.ac.uk/biostudies/studies/S-EPMC12443603"],"repository":["biostudies-literature"],"pubmed_title":["A generic non-invasive neuromotor interface for human-computer interaction."],"pmcid":["PMC12443603"],"pubmed_authors":["Rudnicki A","Chang CJ","Fuentes JR","Rojas JR","Rubin R","Chenet D","Shamash P","Otchy TM","Cunningham R","Sivakumar V","Bienkowski J","Russo A","Sacra J","Bosley D","Danielson N","Tank V","Yuan S","Sadoughi A","Morrison D","Kaifosh P","Sofuoglu SE","Morin Y","Connors J","Farsad N","Tasci T","Russell S","Beltran WP","Hui Y","Hertz S","Urquhart K","Jiang C","Farshchian A","Rajani S","Williams S","Juarez B","Jun NY","Hadjer K","Liao J","Tapia A","Suri A","Miller D","White E","Zhao J","Kakar N","Reardon D","Roy L","Hong L","DiMaiolo B","Siddiqi N","Orchard G","Menendez JA","Xing Y","Ye C","Hong K","Chung J","Ghosh S","Ghani M","London K","Kadakia N","Tsering M","Nakagaki N","Paredes J","Sergin ND","O'Connor L","Lee JA","Gayraud NTH","Monti RP","Rolotti S","Bhasin R","Gunther B","Arora R","Gupta C","Pnevmatikakis E","Sussillo D","Hernandez CX","Parker S","Tannady J","Tesileanu T","Plotkin N","Nathan A","Plaza SM","Bravate J","Nelson R","Garcia J","Du A","Li T","Bracaglia M","Hill DN","Sharma V","Zhong J","Maczak A","Islam S","Trabulsi J","Yembarwar A","Stefanini F","Maheswaranathan N","Masse NY","Chun W","Zheng K","Liu Y","Bolarinwa A","Jiang X","Ha A","Wetmore DZ","Perez M","Strauss E","Louie R","Moore S","Fine J","Hewitt C","Bard P","Davidson TJ","Perez Z","Chester J","Packer AM","Wiebe C","Gramfort A","Jun JJ","Reid J","Anderson C","Koh TW","Ranjan T","Stout C","Hou H","Kamdar A","Reisman J","Warriner CL","Hulet H","Zawadzki M","Costa J","Zhang M","Guo N","Martincik M","Tong C","Rosenkranz A","Savane A","Shen S","Brandwein M","Butler M","Tang Z","Gamutan J","Mandel M","Rivera LWNMY","Berenzweig A","Koshy CS","CTRL-labs at Reality Labs","Grosberg L","Walkington P","Gimler G","Schwab D","Shiah O","Milyavskiy I","Cramer M","Awad L","Calhoun AJ","Formento E","Springer M","Roth I","Osborn C","Pierard A","Lee J","Giebisch D","Morrell B","Cusack WF","Fahmi M","Lee C","Muth C","Hsiung V","Hsieh A","Zlobinsky D","Gajurel R","Ngeo J","Salim R","Feliz R","Zhou L","Allen BD","Chiarito R","Puri S","Schlager C","Moschella A","Reardon TR","Arnoud S","Baker N","Jayaram V","Lawn A","Suresh S","Edelson Z","Fu J","Kaya SG","Simpson J","Shi K","Naik K","McAnearney S","Mulumudi S","Warren R","Boegner L","Baker C","Weiss RJ","Huang R","Pool B","Kober S","Singh G","Wang M","Tormis B","Hruda S","Spurr A","Wang R","Bracklein M","Gagnon-Audet JC","Wang Z","Song IJ","Owolabi E","De Araujo B","Freeman D","Ohayon S","Kao TC","Pailla T","Gao S","Atray M","Siahpoosh Y","Merel J","Bittner S","Choi J","Draves S","Warden C","Barachant A","Enemuo P","Chitnis R","Tiwari A","Seltzer M","Marshall J","Ayerbe F","McHugh A","Marshall N","Lively S","Seely J","Luongo F","Nguyen K","Smith J","Shah A","Peixoto D","Gidwani V"],"additional_accession":[]},"is_claimable":false,"name":"A generic non-invasive neuromotor interface for human-computer interaction.","description":"Since the advent of computing, humans have sought computer input technologies that are expressive, intuitive and universal. While diverse modalities have been developed, including keyboards, mice and touchscreens, they require interaction with a device that can be limiting, especially in on-the-go scenarios. Gesture-based systems use cameras or inertial sensors to avoid an intermediary device, but tend to perform well only for unobscured movements. By contrast, brain-computer or neuromotor interfaces that directly interface with the body's electrical signalling have been imagined to solve the interface problem<sup>1</sup>, but high-bandwidth communication has been demonstrated only using invasive interfaces with bespoke decoders designed for single individuals<sup>2-4</sup>. Here, we descr","dates":{"release":"2025-01-01T00:00:00Z","publication":"2025 Sep","modification":"2026-06-03T12:09:22.111Z","creation":"2026-04-27T03:11:30.441Z"},"accession":"S-EPMC12443603","cross_references":{"pubmed":["40702190"],"doi":["10.1038/s41586-025-09255-w"]}}