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      Toward Brain-Computer Interaction in Paralysis: A New Approach Based on Visual Evoked Potentials and Depth-of-Field

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      SKU 9783319522975 Categories ,
      This book presents up-to-date information on Brain-computer Interfaces (BCI). BCIs are systems that record brain signals, extract features and translate them into computer commands.

      This book presents up-to-date information on Brain-computer Interfaces (BCI).

      BCIs are systems that reco...

      £44.99

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      Description

      Product ID:9783319522975
      Product Form:Paperback / softback
      Country of Manufacture:CH
      Series:Human–Computer Interaction Series
      Title:Toward Brain-Computer Interaction in Paralysis
      Subtitle:A New Approach Based on Visual Evoked Potentials and Depth-of-Field
      Authors:Author: Anibal Cotrina
      Page Count:96
      Subjects:Neurology and clinical neurophysiology, Neurology & clinical neurophysiology, Image processing, Human–computer interaction, Image processing, Human-computer interaction
      Description:This book presents up-to-date information on Brain-computer Interfaces (BCI). BCIs are systems that record brain signals, extract features and translate them into computer commands.

      This book presents up-to-date information on Brain-computer Interfaces (BCI).

      BCIs are systems that record brain signals, extract features and translate them into computer commands. For instance, in BCIs based on the steady-state visual evoked potentials (SSVEP-BCI), brain potentials evoked by visual stimuli are used for controlling computer-based devices.

      Inspired by the optical phenomenon of depth of field, this book introduces, describes, and evaluates a novel way of setting visual stimuli for SSVEP-BCI. It employs two stimuli that were placed at different distances from the subjects so that if one stimulus is focused on, the other one is non-focused. This assessment allows SSVEP-BCI users to modulate their brain signals by shifting their focus because focused and non-focused stimuli evoke different brain potentials. It allows people to send two brain commands with high accuracy rate by shifting their focus. Hence, computer interaction systems can be proposed for people with paralysis, such as patients with amyotrophic lateral sclerosis since focusing mechanism does not demand head, neck, or eyeball movements.

      The matter assessed in this book that includes offline and online experiments, is useful for researchers in human-machine interaction who are looking for relevant possibilities of improving the quality of life of people in paralysis situation.


      Imprint Name:Springer International Publishing AG
      Publisher Name:Springer International Publishing AG
      Country of Publication:GB
      Publishing Date:2017-04-13

      Additional information

      Weight188 g
      Dimensions232 × 155 × 9 mm