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UID:DSC-20181
DTSTART;TZID=Europe/Berlin:20231011T120000
SEQUENCE:1697002733
TRANSP:OPAQUE
DTEND;TZID=Europe/Berlin:20231011T130000
URL:https://dresden-science-calendar.de/calendar/en/detail/20181
LOCATION:TUD\,    
SUMMARY:Huang: Q. Huang: Spontaneous information organization in Working me
 mory
CLASS:PUBLIC
DESCRIPTION:Speaker: Dr. Qiaoli Huang\nInstitute of Speaker: MPI CBS Leipzi
 g\nTopics:\nPsychologie\n Location:\n  Name: TUD ()\n  Street:   \n  City:
   \n  Phone: \n  Fax: \nDescription: <p><strong>Abstract</strong></p>  <p>
 Working memory (WM) is a core cognitive function to flexibly inform and gu
 ide future behavior\, with its capacity constrains various cognitive abili
 ties. In real life\, individual item in a complicated scene is usually not
  independently from each other\, but depends largely on the background kno
 wledge and structure our visual system brings to bear on it. For example\,
  when remembering a telephone number\, we not only need to memorize all th
 e numbers\, but also the ordinal relationship between numbers. The ability
  to encode and represent the temporal order of discrete elements occurring
  in a sequence is defined as sequence memory. To answer how a sequence is 
 represented and stored in WM\, in our tasks\, we asked participant to memo
 rize a sequence of item in combination with EEG/MEG recording. We find tha
 t serially remembered items are successively reactivated in a reverse orde
 r\, and this backward replay pattern is highly related to behavioral recen
 cy effect. These findings consistent with observed neural replay in episod
 ic memory\, decision making and so on\, reveals general neural mechanism f
 or mental organization of external information. Meanwhile\, daily experien
 ces also involve the processing of multiple sequences\, yet storing them m
 ay challenge the limited capacity of working memory. Therefore\, in our re
 cent study\, we aim to investigate whether relational structures shared by
  multiple sequences would be spontaneously leveraged to reorganize and com
 press multiple information and its neural mechanism. We demonstrate that s
 hared structure facilitates WM of multiple sequences and improve memory pe
 rformance. Interestingly\, when asking participant to recall one sequence\
 , the other sequence sharing the same structure undergo spontaneous forwar
 d neural replay. These results suggest that replay-based neural mechanisms
  in WM mediate sequence combinations based on common structures.</p>  <p>W
 ebsite of Dr. Qiaoli Huang (https://www.cbs.mpg.de/person/huang/903231)</p
 >  <p>Zoom-Link (https://tu-dresden.zoom-x.de/j/61801501352?pwd=TnlveTl5bX
 VUM0orU016VDJWeENkUT09)</p>
DTSTAMP:20260826T000302Z
CREATED:20230927T054208Z
LAST-MODIFIED:20231011T053853Z
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