The general objective of this research is to study the neurobiology of language using ASL, a language which displays complex linguistic structure but (unlike spoken language) does so in large part by manipulating spatial relations. Space is used in ASL to encode grammatical relations, discourse relations, and spatial layouts. The investigators plan to explore the properties of each of these uses of space, their interaction, and their neurobiological substrates, using new methods of brain imaging, and language and cognitive probes specially developed for these studies. The studies involve deaf life-long signers who have focal lesions to the left or right hemisphere. The proposal has three foci. (1) Left hemisphere organization for ASL grammar. Having shown in previous work that the core aspects of ASL grammar are predominantly left hemisphere functions, the investigators now focus on the neural organization of ASL within the left hemisphere. The goals are to specify the neural systems and pathways underlying ASL grammar, and to investigate relations between language and nonlanguage aspects of cognition. (2) Right hemisphere organization for spatialized discourse and mapping. Signers with lesions in their right hemispheres have no difficulty with the grammatical aspects of ASL but do often show impairments for extragrammatical functions that involve space. The goal is to investigate selective impairments of specific components of ASL spatialized discourse, and to illuminate the functions of the right hemiphere in processing linguistically-encoded spatial relations. (3) Neural systems underlying sign language. Five fMRI experiments that complement the lesion studies are propose to further probe the basis of sign language structure.

Agency
National Institute of Health (NIH)
Institute
National Institute on Deafness and Other Communication Disorders (NIDCD)
Type
Research Project (R01)
Project #
3R01DC000201-20S1
Application #
6785746
Study Section
Sensory Disorders and Language Study Section (CMS)
Program Officer
Cooper, Judith
Project Start
1983-04-01
Project End
2004-03-31
Budget Start
2002-08-01
Budget End
2004-03-31
Support Year
20
Fiscal Year
2003
Total Cost
$100,000
Indirect Cost
Name
Salk Institute for Biological Studies
Department
Type
DUNS #
078731668
City
La Jolla
State
CA
Country
United States
Zip Code
92037
Emmorey, Karen; Xu, Jiang; Gannon, Patrick et al. (2010) CNS activation and regional connectivity during pantomime observation: no engagement of the mirror neuron system for deaf signers. Neuroimage 49:994-1005
Hickok, Gregory; Pickell, Herbert; Klima, Edward et al. (2009) Neural dissociation in the production of lexical versus classifier signs in ASL: distinct patterns of hemispheric asymmetry. Neuropsychologia 47:382-7
Pa, Judy; Wilson, Stephen M; Pickell, Herbert et al. (2008) Neural organization of linguistic short-term memory is sensory modality-dependent: evidence from signed and spoken language. J Cogn Neurosci 20:2198-210
Hickok, G; Wilson, M; Clark, K et al. (1999) Discourse deficits following right hemisphere damage in deaf signers. Brain Lang 66:233-48
Hickok, G; Kirk, K; Bellugi, U (1998) Hemispheric organization of local- and global-level visuospatial processes in deaf signers and its relation to sign language aphasia. Brain Lang 65:276-86
Hickok, G; Bellugi, U; Klima, E S (1997) The basis of the neural organization for language: evidence from sign language aphasia. Rev Neurosci 8:205-22
Hickok, G; Klima, E; Kritchevsky, M et al. (1995) A case of 'sign blindness' following left occipital damage in a deaf signer. Neuropsychologia 33:1597-606