Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Winnie Jensen is active.

Publication


Featured researches published by Winnie Jensen.


Introduction to Neural Engineering for Motor Rehabilitation | 2013

Introduction to Upper Limb Prosthetics

Dario Farina; Winnie Jensen; Metin Akay


Introduction to Neural Engineering for Motor Rehabilitation | 2013

Methods for Noninvasive Electroencephalogram Detection

Dario Farina; Winnie Jensen; Metin Akay


Introduction to Neural Engineering for Motor Rehabilitation | 2013

Motor Control Modules of Human Movement in Health and Disease

Dario Farina; Winnie Jensen; Metin Akay


Archive | 2014

Replace, Repair, Restore, Relieve - Bridging Clinical and Engineering Solutions in Neurorehabilitation: Proceedings of the 2nd International Conference, 24-26 June, 2014

Winnie Jensen; Ole Kseler Andersen; Metin Akay


Archive | 2013

Injuries of the Nervous System

Dario Farina; Winnie Jensen; Metin Akay


Archive | 2013

Signal Detection and Conditioning

Dario Farina; Winnie Jensen; Metin Akay


Archive | 2013

Rehabilitation through Neuromodulation

Dario Farina; Winnie Jensen; Metin Akay


Archive | 2013

Function Replacement (Prostheses and Orthosis)

Dario Farina; Winnie Jensen; Metin Akay


Introduction to Neural Engineering for Motor Rehabilitation | 2013

Brain-Computer Interface Applied to Motor Recovery after Brain Injury

Dario Farina; Winnie Jensen; Metin Akay


Introduction to Neural Engineering for Motor Rehabilitation | 2013

Peripheral and Spinal Plasticity after Nerve Injuries

Dario Farina; Winnie Jensen; Metin Akay

Collaboration


Dive into the Winnie Jensen's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar

Dario Farina

New York State Department of Health

View shared research outputs
Top Co-Authors

Avatar

Dario Farina

New York State Department of Health

View shared research outputs
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge