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Science 27 October 2000: Vol. 290. no. 5492, pp. 744 - 750 DOI: 10.1126/science.290.5492.744
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Review
Untangling Dendrites with Quantitative Models
Idan Segev,
Michael London
Our understanding of the function of dendrites has been
greatly enriched by an inspiring dialogue between theory and
experiments. Rather than functionally ignoring dendrites, representing
neurons as single summing points, we have realized that dendrites are electrically and chemically distributed nonlinear units and that this
has important consequences for interpreting experimental data and for
the role of neurons in information processing. Here, we examine the
route to unraveling some of the enigmas of dendrites and highlight the
main insights that have been gained. Future directions are discussed
that will enable theory and models to keep shedding light on dendrites,
where the most fundamental input-output adaptive processes take place.
Department of Neurobiology and Interdisciplinary Center for Neural
Computation, The Hebrew University of Jerusalem, Jerusalem, 91904, Israel.
E-mail: idan{at}lobster.ls.huji.ac.il (I.S.);
mikilon{at}lobster.ls.huji.ac.il (M.L.)
Read the Full Text
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