TY - JOUR
T1 - Remodeling the cortex in memory
T2 - Increased use of a learning strategy increases the representational area of relevant acoustic cues
AU - Bieszczad, Kasia M.
AU - Weinberger, Norman M.
N1 - Funding Information:
This research was supported by research grants from the National Institutes of Health (NIDCD), DC-02938 and DC-010013 to NMW and DC-009163 to KMB. We thank Jacquie Weinberger, Natalie Gross and Gabriel K. Hui for technical assistance.
PY - 2010/9
Y1 - 2010/9
N2 - Associative learning induces plasticity in the representation of sensory information in sensory cortices. Such high-order associative representational plasticity (HARP) in the primary auditory cortex (A1) is a likely substrate of auditory memory: it is specific, rapidly acquired, long-lasting and consolidates. Because HARP is likely to support the detailed content of memory, it is important to identify the necessary behavioral factors that dictate its induction. Learning strategy is a critical factor for the induction of plasticity (Bieszczad & Weinberger, 2010b). Specifically, use of a strategy that relies on tone onsets induces HARP in A1 in the form of signal-specific decreased threshold and bandwidth. The present study tested the hypothesis that the form and degree of HARP in A1 reflects the amount of use of an "onset strategy" Adult male rats (n= 7) were trained in a protocol that increased the use of this strategy from ∼20% in prior studies to ∼80%. They developed signal-specific gains in representational area, transcending plasticity in the form of local changes in threshold and bandwidth. Furthermore, the degree of area gain was proportional to the amount of use of the onset strategy. A second complementary experiment demonstrated that use of a learning strategy that specifically did not rely on tone onsets did not produce gains in representational area; but rather produced area loss. Together, the findings indicate that the amount of strategy use is a dominant factor for the induction of learning-induced cortical plasticity along a continuum of both form and degree.
AB - Associative learning induces plasticity in the representation of sensory information in sensory cortices. Such high-order associative representational plasticity (HARP) in the primary auditory cortex (A1) is a likely substrate of auditory memory: it is specific, rapidly acquired, long-lasting and consolidates. Because HARP is likely to support the detailed content of memory, it is important to identify the necessary behavioral factors that dictate its induction. Learning strategy is a critical factor for the induction of plasticity (Bieszczad & Weinberger, 2010b). Specifically, use of a strategy that relies on tone onsets induces HARP in A1 in the form of signal-specific decreased threshold and bandwidth. The present study tested the hypothesis that the form and degree of HARP in A1 reflects the amount of use of an "onset strategy" Adult male rats (n= 7) were trained in a protocol that increased the use of this strategy from ∼20% in prior studies to ∼80%. They developed signal-specific gains in representational area, transcending plasticity in the form of local changes in threshold and bandwidth. Furthermore, the degree of area gain was proportional to the amount of use of the onset strategy. A second complementary experiment demonstrated that use of a learning strategy that specifically did not rely on tone onsets did not produce gains in representational area; but rather produced area loss. Together, the findings indicate that the amount of strategy use is a dominant factor for the induction of learning-induced cortical plasticity along a continuum of both form and degree.
KW - Associative learning
KW - Neurophysiology
KW - Primary auditory cortex
KW - Receptive field
KW - Representation
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U2 - 10.1016/j.nlm.2010.04.009
DO - 10.1016/j.nlm.2010.04.009
M3 - Article
C2 - 20434577
AN - SCOPUS:77955561324
SN - 1074-7427
VL - 94
SP - 127
EP - 144
JO - Neurobiology of Learning and Memory
JF - Neurobiology of Learning and Memory
IS - 2
ER -