English  |  正體中文  |  简体中文  |  Items with full text/Total items : 94274/94274 (100%)
Visitors : 82839928      Online Users : 1788
RC Version 7.0 © Powered By DSPACE, MIT. Enhanced by NTU Library IR team.
Scope Tips:
  • please add "double quotation mark" for query phrases to get precise results
  • please goto advance search for comprehansive author search
  • Adv. Search
    HomeLoginUploadHelpAboutAdminister Goto mobile version


    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/108468


    Title: Velocity selective networks in human cortex reveal two functionally distinct auditory motion systems
    Authors: 謝宜蕙;Hsieh, I-Hui;Meng, Jhao-An;Saberi, Kourosh
    Contributors: 生醫理工學院認知神經科學研究所
    Keywords: Acoustic Stimulation;Adult;Auditory Cortex;Auditory Pathways;Auditory Perception;Brain Mapping;Female;Humans;Magnetic Resonance Imaging;Male;Medicine;Motion;Q;R;Research Article;Science;Sound;Sound Localization;Young Adult
    Date: 2016-06-01
    Issue Date: 2026-04-23 14:50:52 (UTC+8)
    Publisher: Public Library of Science;Public Library of Science (PLoS)
    Abstract: 摘要: The auditory system encounters motion cues through an acoustic object's movement or rotation of the listener's head in a stationary sound field, generating a wide range of naturally occurring velocities from a few to several hundred degrees per second. The angular velocity of moving acoustic objects relative to a listener is typically slow and does not exceed tens of degrees per second, whereas head rotations in a stationary acoustic field may generate fast-changing spatial cues in the order of several hundred degrees per second. We hypothesized that these two types of systems (i.e., encoding slow movements of an object or fast head rotations) may engage functionally distinct substrates in processing spatially dynamic auditory cues, with the latter potentially involved in maintaining perceptual constancy in a stationary field during head rotations and therefore possibly involving corollary-discharge mechanisms in premotor cortex. Using fMRI, we examined cortical response patterns to sound sources moving at a wide range of velocities in 3D virtual auditory space. We found a significant categorical difference between fast and slow moving sounds, with stronger activations in response to higher velocities in the posterior superior temporal regions, the planum temporale, and notably the premotor ventral-rostral (PMVr) area implicated in planning neck and head motor functions.
    出版者: Public Library of Science (PLoS)
    出版日期: 2016-06-13
    出處: PLOS ONE, 2016-06, Vol.11, p.e0
    資源來源: Agricultural & Environmental Science Collection
    識別號: EISSN: 1932-6203
    識別號: DOI: 10.1371/journal.pone.0157131
    Appears in Collections:[College of Science Institute of Cognitive Neuroscience] journal & Dissertation

    Files in This Item:

    File Description SizeFormat
    index.html0KbHTML31View/Open


    All items in NCUIR are protected by copyright, with all rights reserved.

    社群 sharing

    ::: Copyright National Central University. | 國立中央大學圖書館版權所有 | 收藏本站 | 設為首頁 | 最佳瀏覽畫面: 1024*768 | 建站日期:8-24-2009 :::
    DSpace Software Copyright © 2002-2004  MIT &  Hewlett-Packard  /   Enhanced by   NTU Library IR team Copyright ©   - 隱私權政策聲明