Find-Health-Articles.com - making medical research available to everyone
Research article summary (published 29 Jun 2002):
Free Full Text!
See links below

The neural substrates of biological motion perception: an fMRI study.

Full Abstract

We used fMRI to identify the brain areas related to the perception of biological motion (4 T EPI; whole brain). In experiment 1, 10 subjects viewed biological motion (a human figure jumping up and down, composed of 21 dots), alternating with a control stimulus created by applying autoregressive models to the biological motion stimulus (such that the dots' speeds and amplitudes were preserved whereas their linking structure was not). The lengths of the stimulus bouts varied, and therefore the transitions between biological motion and control stimuli were unpredictable. Subjects had to indicate with a button press when each transition occurred. In a related biological motion task, subjects detected short (1 s) disturbances within these displays. We also examined the neural substrates of motion and shape perception, as well as motor imagery, to determine whether or not the cortical regions involved in these processes are also recruited during biological motion perception. Subjects viewed linear motion displays alternating with static dots and a series of common objects alternating with band-limited white noise patterns. Subjects also generated imagery of their own arm movements alternating with visual imagery of common objects. Biological motion specific BOLD signal was found within regions of the lingual gyrus at the cuneus border, showing little overlap with object recognition, linear motion or motion imagery areas. The lingual gyrus activation was replicated in a second experiment that also mapped retinotopic visual areas in three subjects. The results suggest that a region of the lingual gyrus within VP is involved in higher-order processing of motion information.

 

Learn Faster Today      Improve your study skills

Author information

Author/s: Servos, Philip (P); Osu, Rieko (R); Santi, Andrea (A); Kawato, Mitsuo (M);

Affiliation: Department of Psychology, Wilfrid Laurier University, Waterloo, Canada. pservos(-atsign-)wlu.ca

Journal and publication information

Publication Type: Journal Article; Research Support, Non-U.S. Gov't

Journal: Cerebral cortex (New York, N.Y. : 1991) (Cereb Cortex), published in United States. (Language: eng)

Reference: 2002-Jul; vol 12 (issue 7) : pp 772-82

Dates: Created 2002/06/06; Completed 2002/10/30; Revised 2006/11/15;

PMID: 12050089, status: MEDLINE (last retrieval date: 12/26/2008)

Sourced from the National Library of Medicine. Abstract text and other information may be subject to copyright.

External Links for this article (including full text providers, if available):

Click Electronic Full-text Provider Links to see options for finding the electronic full text links to this article. Note there may be a subscription or fee required for access to the full text. See our FAQ for information on finding FREE full text articles.

This article may also be located in paper journal collections available in many libraries. Use the Journal and Publication Information above to find the full article.

MeSH headings (categories)

This article was linked to the MESH Headings shown below.

Related articles

These are the highest related articles currently in the database:

See 100+ related articles.

Related Article Map

12/31/2007
9/5/2008
Higher Relevance Score (11)
Lower Relevance Score (9)

Legend: - FREE Full text Article. - Abstract only. - Title only. More help.

See a large map of 100+ related articles.

© Advanogy.com 2003-2009 (ACN 104 198 263) - All rights reserved. Terms of Use | Contact Us | Index