Neural Correlates of Natural Human Echolocation in Early and Late Blind Echolocation Experts
Нейронные корреляты естественной эхолокации у людей — экспертов по эхолокации, ослепших в раннем и позднем возрасте
2011-05-25
SCID: 54.1/fg3s5dcg
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auditory cortexblind echolocation expertscalcarine cortexhuman echolocationneural correlates
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Abstract (AI)
BACKGROUND: A small number of blind people are adept at echolocating silent objects simply by producing mouth clicks and listening to the returning echoes. Yet the neural architecture underlying this type of aid-free human echolocation has not been investigated. To tackle this question, we recruited echolocation experts, one early- and one late-blind, and measured functional brain activity in each of them while they listened to their own echolocation sounds. RESULTS: When we compared brain activity for sounds that contained both clicks and the returning echoes with brain activity for control sounds that did not contain the echoes, but were otherwise acoustically matched, we found activity in calcarine cortex in both individuals. Importantly, for the same comparison, we did not observe a difference in activity in auditory cortex. In the early-blind, but not the late-blind participant, we also found that the calcarine activity was greater for echoes reflected from surfaces located in contralateral space. Finally, in both individuals, we found activation in middle temporal and nearby cortical regions when they listened to echoes reflected from moving targets. CONCLUSIONS: These findings suggest that processing of click-echoes recruits brain regions typically devoted to vision rather than audition in both early and late blind echolocation experts.
Key Findings
1
Both participants activated middle temporal and nearby cortical regions when listening to echoes from moving targets.
2
Click-echo sounds elicited activity in the calcarine cortex of both participants compared with acoustically matched sounds lacking returning echoes.
3
Only the early-blind participant showed stronger calcarine activity for echoes reflected from surfaces in contralateral space.
4
The same click-echo comparison produced no differential activity in auditory cortex, suggesting reliance on visual rather than auditory cortical regions.
5
The study identified neural correlates of aid-free human echolocation in one early-blind and one late-blind echolocation expert.
Research Object
neural processing of natural human echolocation in early- and late-blind echolocation experts
Research Subject
recruitment and spatially and motion-sensitive activation of visual and auditory cortical regions during click-echo processing
Publication Details
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2011-05-25
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