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Memory Part II Memory Stages and Processes
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Overview Memory processes –encoding, storage, and retrieval Capacity & duration of memory stages –sensory memory –short-term memory –long-term memory Working memory
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Memory Processes Acquisition or “encoding” –turning sensory stimuli into a form that can be stored in memory Storage –retention of information in a memory trace Retrieval –bringing stored information into awareness where it can be reviewed/manipulated
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Properties of Memory Stages Capacity: how much information can be maintained Duration: how long information stays there
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Sensory Memory Decay Short-term Memory Response Rehearsal Encoding Retrieval Long-Term Memory Attention Stage theory of memory
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Sensory Memory Decay Short-term Memory Response Rehearsal Encoding Retrieval Long-Term Memory Attention Stage theory of memory
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Sensory Memory Impressions of sensory information that persist after the original stimulus has ended
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Experiments by Sperling on Sensory Memory Presented array consisting of three rows of four letters Participants were cued to report part of or whole display XMRJCNKPVFLBXMRJCNKPVFLB George Sperling Demo: http://bcs.worthpublishers.com/psychsim5/Iconic%20Memory/PsychSim_Shell.htmlhttp://bcs.worthpublishers.com/psychsim5/Iconic%20Memory/PsychSim_Shell.html Another demo: http://psiexp.ss.uci.edu/research/teaching9B/IconicMemory.ppshttp://psiexp.ss.uci.edu/research/teaching9B/IconicMemory.pps
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Full report condition Instruction: report any letter from the array M N X L R T J S K Y G B Results: participants report 4 out of 12 letters But… they saw more letters than that array flashed for 50msec blank screen T K J G Example response
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Partial Report Condition Instruction: report only cued letters from the array M N X L R T J S K Y G B Results: participants can report 3.3 of the 4 cued letters (on average) array flashed for 50msec auditory tone or visual cue indicates which set of letters to report (in this example: top row) M N X L Example response
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Implication for the Memory Capacity Participants did not know which letters would be cued By extrapolation, reporting 3.3 of 4 cued letters corresponds to reporting 10 letters out of 12 letters from whole display Participants retain most or all of the items displayed very briefly in a visual sensory register high capacity
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Rapid Decay Vary length of time between turning off the display and onset of the cue (tone/visual cue) Result: memory of display decays rapidly and is gone within one second if not attended
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Remember this array of letters:
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Sensory Memory Decay Short-term Memory Response Rehearsal Encoding Retrieval Long-Term Memory Attention Stage theory of memory
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Short-term memory Short-term memory is a limited capacity store for information -- place to rehearse new information from sensory buffers George Miller (1956): capacity of short-term memory is seven plus or minus two items
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Measuring Digit Span Remember the following digit sequences (6 digits)9 6 5 2 8 3 (4 digits)6 1 9 4 (7 digits)4 2 6 9 8 5 1 (8 digits)8 1 6 3 7 2 4 9 (10 digits)9 3 8 2 4 7 1 5 3 6
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Rehearsal of Words Verbal information is coded phonetically We use our “inner voice” when using silent rehearsal Memory span is influenced by pronunciation time
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Working Memory Capacity influenced by word length Experiment: Word length effect – mean number of words recalled in order (list 1 4.2 words; list 2 2.8 words) LIST 1: Burma Greece Tibet Iceland Malta Laos LIST 2: Switzerland Nicaragua Afghanistan Venezuela Philippines Madagascar (Baddeley)
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Working memory and Language Differences Recall for numbers are different across languages E.g. memory for English number sequences is better than Spanish or Arabic sequences (Naveh-Benjamin & Ayres, 1986)
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Growth in digit-span for one subject (S.F.) with practice
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Chunking Capacity of short-term memory is not fixed by number of digits, but by chunks A chunk is a meaningful way to group information
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Remember this sequence:
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Dividing the sequence into chunks
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Video: Chunking Digit Sequences (~2 min) full video clip available at: http://www.youtube.com/watch?v=6vsYCSmBcM0http://www.youtube.com/watch?v=6vsYCSmBcM0 (relevant section starts at 3:50)
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Chase & Simon (1973)
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Number of pieces successfully recalled by chess players after the first study of a chess board. (Chase & Simon, 1973)
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Conclusion from Chase & Simon (1973) Chess masters only expert with real chess positions. They do not have better memory in general Expertise allows chunking of salient information to promote memory of good moves
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Sensory Memory Decay Short-term Memory Response Rehearsal Encoding Retrieval Long-Term Memory Attention Role of Rehearsal Items need to be rehearsed in short-term memory to entering long-term memory
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a memory test... TABLECANDLEMAPLESUBWAYPENCILCOFFEETOWELSOFTBALLCURTAINPLAYERKITTENDOORKNOBFOLDERCONCRETERAILROADDOCTORSUNSHINELETTERTURKEYHAMMER
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Serial Position Effects In free recall, more items are recalled from start of list (primacy effect) and end of the list (recency effect) Distractor task (e.g. counting) after last item removes recency effect distractor task no distractor task
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Explaining Serial Position Effects Explanation from stage theory of memory –primacy effect: early items can be rehearsed more often: more likely to be transferred to long-term memory –recency effect: last items of list are still in short-term memory (with no distractor task)
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Working Memory and Prefrontal Cortex
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Correct response requires keeping location of food in mind. Monkeys and humans w/lesions of PFC fail these tasks. Delayed Match to Sample Tasks
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Delayed Saccade Task (Goldman-Rakic) Patricia Goldman-Rakic measurement of neurons from PFC
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Implication Evidence of brain-related activity during remembering
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Overview Memory processes –encoding, storage, and retrieval Capacity & duration of memory stages –sensory memory –short-term memory –long-term memory Working memory
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