Upload Records Snowball Search Search OpenAlex
About the database ScholarIQanswers from OpenAlex & ORCID
How has David A. Bjånes's publication output changed over time?
ScholarIQpublication output · 2018–2025
Output grew0% over the shown period — from 1 works in 2018 to 1 in 2025.
1
1
4
3
1
20182019202220242025
What are the most-cited papers on David A. Bjånes?
ScholarIQmost cited works
Representation of internal speech by single neurons in human supramarginal gyrus
Sarah Kim Wandelt, David A. Bjånes, Kelsie Pejsa, Brian Lee, Charles Y. Liu, Richard A. Andersen
Nature Human Behaviour. 202473 CitationsOPEN ACCESS
Decoding grasp and speech signals from the cortical grasp circuit in a tetraplegic human
Sarah Kim Wandelt, Spencer Kellis, David A. Bjånes, Kelsie Pejsa, Brian Lee, Charles Y. Liu, Richard A. Andersen
Neuron. 202248 CitationsOPEN ACCESS
Exploring Cognition with Brain–Machine Interfaces
Richard A. Andersen, Tyson Aflalo, Luke Bashford, David A. Bjånes, Spencer Kellis
S90670110. 202241 Citations
Glassy carbon MEMS for novel origami-styled 3D integrated intracortical and epicortical neural probes
Noah Goshi, Elisa Castagnola, Maria Vomero, Calogero Gueli, Claudia Cea, Elena Zucchini, David A. Bjånes, Emma Maggiolini, Chet T. Moritz, Sam Kassegne, Davide Ricci, Luciano Fadiga
S170809390. 201837 CitationsOPEN ACCESS
A Robust Encoding Scheme for Delivering Artificial Sensory Information via Direct Brain Stimulation
David A. Bjånes, Chet T. Moritz
IEEE Transactions on Neural Systems and Rehabilitation Engineering. 201920 CitationsOPEN ACCESS
Related on ScholarIQ
California Institute of Technology
Institution
Representation of internal speech by single neurons in human supramarginal gyrus
Paper
Decoding grasp and speech signals from the cortical grasp circuit in a tetraplegic human
Paper
Exploring Cognition with Brain–Machine Interfaces
Paper
Glassy carbon MEMS for novel origami-styled 3D integrated intracortical and epicortical neural probes
Paper
A Robust Encoding Scheme for Delivering Artificial Sensory Information via Direct Brain Stimulation
Paper