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UvA-DARE is a service provided by the library of the University of Amsterdam (http://dare.uva.nl) UvA-DARE (Digital Academic Repository) Activity-dependent plasticity of neuronal excitability a role for short-term modulation of voltage-gated ion channels in neuronal function van Welie, I. Link to publication Citation for published version (APA): van Welie, I. (2004). Activity-dependent plasticity of neuronal excitability a role for short-term modulation of voltage-gated ion channels in neuronal function General rights It is not permitted to download or to forward/distribute the text or part of it without the consent of the author(s) and/or copyright holder(s), other than for strictly personal, individual use, unless the work is under an open content license (like Creative Commons). Disclaimer/Complaints regulations If you believe that digital publication of certain material infringes any of your rights or (privacy) interests, please let the Library know, stating your reasons. In case of a legitimate complaint, the Library will make the material inaccessible and/or remove it from the website. Please Ask the Library: http://uba.uva.nl/en/contact, or a letter to: Library of the University of Amsterdam, Secretariat, Singel 425, 1012 WP Amsterdam, The Netherlands. You will be contacted as soon as possible. Download date: 27 Feb 2019

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UvA-DARE is a service provided by the library of the University of Amsterdam (http://dare.uva.nl)

UvA-DARE (Digital Academic Repository)

Activity-dependent plasticity of neuronal excitability a role for short-term modulation ofvoltage-gated ion channels in neuronal functionvan Welie, I.

Link to publication

Citation for published version (APA):van Welie, I. (2004). Activity-dependent plasticity of neuronal excitability a role for short-term modulation ofvoltage-gated ion channels in neuronal function

General rightsIt is not permitted to download or to forward/distribute the text or part of it without the consent of the author(s) and/or copyright holder(s),other than for strictly personal, individual use, unless the work is under an open content license (like Creative Commons).

Disclaimer/Complaints regulationsIf you believe that digital publication of certain material infringes any of your rights or (privacy) interests, please let the Library know, statingyour reasons. In case of a legitimate complaint, the Library will make the material inaccessible and/or remove it from the website. Please Askthe Library: http://uba.uva.nl/en/contact, or a letter to: Library of the University of Amsterdam, Secretariat, Singel 425, 1012 WP Amsterdam,The Netherlands. You will be contacted as soon as possible.

Download date: 27 Feb 2019

REFERENCES S

References References

Abbottt LF & Nelson SB (2000). Synaptic plasticity: taming the beast. Nat. Neurosci. 3,1178-1183. .

Abrahamm WC, Gustafsson B & Wigstrom H (1987). Long-term potentiation involvess enhanced synaptic excitation relative to synaptic inhibition in guinea-pig hippocampus./.. Physiol. 394, 367-380.

Aizenmann CD & Linden DJ (2000). Rapid, synaptically driven increases in the intrinsicc excitability of cerebellar deep nuclear neurons. Nat. Neurosci. 3, 109-111.

Aizenmann CD, Akerman, CJ, Jensen, KR & Cline, HT (2003). Visually driven regulationn of intrinsic neuronal excitability improves stimulus detection in vivo. N«mw*39,831-842. .

Alcazarr A, Rivera J, Gomez-Calcerrada M, Munoz F, Salinas M & Fando JL

(1996).. Changes in the phosphorylation of eukaryotic initiation factor 2a, initiation

factorr 2B activity and translation rates in primary neuronal cultures under different

physiologicall growing conditions. Mol. Brain Res. 38,101-108.

Alkonn DL (1984). Calcium-mediated reduction of ionic currents: a biophysical memoryy trace. Science 226, 1037-1045.

Amarall DG & Witter MP (1995). Hippocampal formation. In The rat nervous system, 443-493.. Academic Press, San Diego, USA.

Andersenn P, Sundberg SH, Sveen O, Swann JW & Wigström H (1980). Possible mechanismss for long-lasting potentiation of synaptic transmission in hippocampal slicess from guinea-pigs. J. Physiol. 302, 463-482.

Alvarezz P, Zola-Morgan S & Squire LR (1994). The animal model of human amnesia:: long-term memory impaired and short-term memory intact. Proc. Natl. Acad.Acad. Sci. U. S. A. A. 91, 5637-5641.

Alvarezz P, Zola-Morgan S & Squire LR (1995). Damage limited to the hippocampall region produces long-lasting memory impairment in monkeys. ]. Neurosci.Neurosci. 15, 3796-3807.

Anagnostarass SG, Maren S & Fanselow MS (1999). Temporally graded retrograde amnesiaa of contextual fear after hippocampal damage in rats: within-subjects examination.. J. Neurosci. 19, 1106-1114.

129 9

Activity-dependentActivity-dependent plasticity of neuronal plasticity

Aptowiczz CO, Kunkler PE & Kraig RP (2004). Homeostatic plasticity in hippocampall slice cultures involves changes in voltage-gated Na+ channel expression.. Brain Res. 998, 155-163.

Armanoo S, Rossi P, Taglietti V & D^Angelo E (2000). Long-term potentiation of intrinsicc excitability at the mossy fiber-granule synapse of rat cerebellum. J. Neurosci.Neurosci. 20, 5208-5216.

Bainess RA, Uhler JP, Thompson A, Sweeney ST & Bate M (2001). Altered electricall properties in Drosophila neurons developing without synaptic transmission./.. Neurosci. 21, 1523-1531.

Bainess RA (2003). Postsynaptic protein kinase A reduces neuronal excitability in responsee to increased synaptic excitation in the Drosophila CNS. J. Neurosci. 23, 8664-8672. .

Bankss MI , Pearce RA & Smith PH (1993). Hyperpolarization-activated cation currentt (lb) in neurons of the medial nucleus of the trapezoid body: voltage-clamp analysiss and enhancement by norepinephrine and cAMP suggest a modulator}7

mechanismm in the auditory brain stem, ƒ Neurophysiol. 70, 1420-1432.

Barishh ME (1998). Intracellular calcium regulation of channel and receptor expressionn in the plasmalemma: potential sites of sensitivity along the pathways linkingg transcription, translation, and insertion./. Neurobiol. 37, 146-157.

Barrettt JN (1975). Motoneuron dendrites: role in synaptic integration. Fed. Proc. 34, 1398-1407. .

Bayleyy PJ, Hopkins RO & Squire LR (2003). Successful recollection of remote autobiographicall memories by amnesic patients with medial temporal lobe lesions. NeuronNeuron 38, 135-144.

Baylisss DA, Viana F, Bellingham MC, Berger AJ (1994). Characteristics and postnatall development of a hyperpolarization-activated inward current in rat hypoglossall motoneurons in vitro, ƒ Neurophysiol. 71, 119-128.

Beaumontt V, Zhong N, Froemke RC, Ball RW & Zucker RS (2002). Temporal synapticc tagging by 1(h) activation and actin: involvement in long-term facilitation andd cAMP-induced synaptic enhancement. Neuron 33, 601-613.

130 0

References References

Behrr J, Empson RM, Schmitz D, Gloveli T & Heinemann U (1996). Electrophysiologicall properties of rat subicular neurons in vitro. Neurosci. "Lett. 220,41-44. .

Belll CC, Han VZ, Sugawara Y & Grant K (1997). Synaptic plasticity in a cerebellum-likee structure depends on temporal order. Nature 387, 278-281.

Benderr RA, Brewster A, Santoro B, Ludwig A, Hofmann F, Biel M & Baram TZ (2001).. Differential and age-dependent expression of hyperpolarization-activated, cyclicc nucleotide-gated cation channel isoforms 1-4 suggests evolving roles in the developingg rat hippocampus. Neuroscience 106, 689-698.

Bergerr T, Larkum ME & Lüscher HR (2001). High Ih channel density in the distal apicall dendrite of layer V pyramidal cells increases bidirectional attenuation of EPSPs.. ƒ. NeuropbysioL 85, 855-868.

Bergerr T & Lüscher HR (2003). Timing and precision of spike initiation in layer V pyramidall cells of the rat somatosensory cortex. Cereb. Cortex 13, 274-281.

Bernanderr O, Douglas RJ, Martin KA & Koch C (1991). Synaptic background activityy influences spatiotemporal integration in single pyramidal cells. Proc. Natl Acad.Acad. Sri. U. S. A. 88,11569-11537.

Bii GQ & Poo MM (1998). Activity-induced synaptic modifications in hippocampal culture,, dependence on spike timing, synaptic strength and cell type. /. Neurosci. 18, 10464-10472. .

Bickmeyerr U, Heine M, Manzke T & Richter DW (2002). Differential modulation off Ih by 5-HT receptors in mouse CA1 hippocampal neurons. Eur. J. Neurosci. 16, 209-218. .

Bienenstockk EL, Cooper LN & Munro PW (1982). Theory for the development of neuronn selectivity, orientation specificity and binocular interaction in visual cortex. J.J. Neurosci. 2, 32-48.

Blisss TVP & Lomo T (1973). Long-lasting potentiation of synaptic transmission in thee dentate area of the anaesthetized rabbit following stimulation of the perforant path./.. Physiol 232, 331-356.

Braginn A, Jando G, Nadasdy Z, Hetke J, Wise K & Buzsaki G (1995). Gamma (40-1000 Hz) oscillation in the hippocampus of the behaving rat./. Neurosci. 15, 47-60.

131 1

Activity-dependentActivity-dependent plasticity of neuronal plasticity

Brownn HF, DiFrancesco D & Noble SJ (1979). How does adrenaline accelerate the

heart?? Nature 280, 235-236.

Burnashevv N, Monyer H, Seeburg PH & Sakmann B (1992). Divalent ion permeabilityy of AMPA receptor channels is dominated by the edited form of a singlee subunit. Neuron 8, 189-198.

Burrelll BD, Sahley CL & Muller KJ (2001). Non-associative learning and serotonin inducee similar bi-directional changes in excitability of a neuron critical for learning inn the medicinal leech./. Neurosci. 21,1401-1412.

Burronee J, CTByrne M & Murthy VN (2002). Multiple forms of synaptic plasticity triggeredd by selective suppression of activity in individual neurons. Nature 420, 414-418. .

Burwelll RD (2001). Borders and cytoarchitecture of the perirhinal and postrhinal corticess in the rat. ƒ Comp. Neurol. 437, 17-41.

Buszakii G (2002). Theta oscillations in the hippocampus. Neuron 33, 325-340.

Capognaa M, Gahwiler BH & Thompson SM (1996). Calcium-independent actions off alpha-latrotoxin on spontaneous and evoked synaptic transmission in the hippocampus,, ƒ Neuropbysiol 76, 3149-3158.

Chancee FS, Abbott LF & Reyes AD (2002). Gain modulation from background

synapticc input. Neuron 35, 773-782.

Chavez-Noriegaa LE, Bliss TV & Halliwell JV (1989). The EPSP-spike (E-S) componentt of long-term potentiation in the rat hippocampal slice is modulated by GABAergicc but not cholinergic mechanisms. Neurosci. Lett. 104, 58-64.

Chechikk G, Meilijson I & Ruppin E (2001). Effective neuronal learning with ineffectivee Hebbian learning rules. Neural Comput. 13, 817-840.

Chenn C (2004). ZD7288 inhibits postsynaptic glutamate receptor-mediated

responsess at hippocampal perforanth path-granule cell synapses. Eur. J. Neurosci.

19,, 643-649.

Chenn S, Wang J & Siegelbaum SA (2001). Properties of hyperpolarization-activated pacemakerr current defined by coassembly of HCN1 and HCN2 subunits and basal modulationn by cyclic nucleotide, ƒ Gen. Physiol. 117, 491-503.

132 132

References References

Chenn L, Chetkovich DM, Petralia RS, Sweeney NT, Kawasaki Y, Wenthold RJ, Bredtt DS, Nicoll RA (2000). Stargazin regulates synaptic targeting of AMPA receptorss by two distinct mechanisms. Nature 408, 936-943.

Chevaleyree V & Castillo PE (2002). Assessing the role of Ih channels in synaptic transmissionn and mossy fiber LTP. Proc. Natl. Acad. Sci. U. S. A. 99, 9538-9543.

Chrobakk JJ & Buzsaki G (1998). Gamma oscillations in the entorhinal cortex of thee freely behaving rat./. Neurvsci. 18, 388-398.

Clarkk RE, West AN, Zola SM & Squire LR (2001). Rats with lesions of the hippocampuss are impaired on the delayed nonmatching-to-sample task. HippocampusHippocampus11,11, 176-186.

Claphamm DE (1998). Not so funny anymore: pacing channels are cloned. Neuron 21,, 5-7.

Cohenn I, Navarro V, Clemenceau S, Baulac M & Miles R (2002). On the origin of interictall activity in human temporal lobe epilepsy in vitro. Science 298, 1418-1421.

Coulterr DA, Lo Turco JJ, Kubota M, Disterhoft JF, Moore JW & Alkon DL (1989).. Classical conditioning reduces amplitude and duration of calcium-dependentt afterhyperpolarization in rabbit hippocampal pyramidal cells. /. Neurophysiol.Neurophysiol. 61, 971-981.

Cudmoree RH & Turrigiano GG (2004). Long-term potentiation of intrinsic excitabilityy in LV visual cortical neurons./. Neurophysiol. 92, 341-348.

Daoudall G, Hanada Y & Debanne D (2002). Bi-directional plasticity of EPSP-spikee coupling in CA1 hippocampal pyramidal neurons. Proc. Natl. Acad. Sci. U. S. A.A. 99,14512-14517.

Daoudall G & Debanne D (2003). The role of Ih in the expression of EPSP-spike potentiationn in the area CA1 of the rat hippocampus. Soc. Neurosci. Abstr., 810.6.

Daoudall G & Debanne D (2003). Long-term plasticity of intrinsic excitability: learningg rules and mechanisms. Learning and memory 10, 456-465.

Deisserothh K, Bito H & Tsien RW (1996). Signaling from synapse to nucleus: postsynapticc CREB phosphorylation during multiple forms of hippocampal synapticc plasticity. Neuron 16,89-101.

133 3

Activity-dependentActivity-dependent plasticity of neuronal plasticity

Dee Jonge MC, Black J, Deyo RA & Disterhoft JF (1990). Learning-induced afterhyperpolarizationn reductions in hippocampus are specific for cell type and potassiumm conductance. Exp. Brain Res. 80, 456-462.

Desaii NS, Rutherford LC & Turrigiano GG (1999). Plasticity in the intrinsic excitabilityy of cortical pyramidal neurons. AW. Neurosci. 2, 515-520.

Destexhee A & Pare D (1999). Impact of network activity on the integrative propertiess of neocortical pyramidal neurons in vivo. /. Neurophysiol. 81, 1531-1547.

Destexhee A, Rudolph M & Pare D (2003). The high-conductance state of neocorticall neurons in vivo. Nat. Rev. Neurosci. 4, 739-751.

DiFrancescoo D (1981a). A new interpretation of the pace-maker current in calf

Purkinjee fibres./. Physiol. 314, 359-376.

DiFrancescoo D (1981b). A study of the ionic nature of the pace-maker current in

calff Purkinje fibres./. Physiol. 314, 377-393.

DiFrancescoo D (1986). Characterization of single pacemaker channels in cardiac sino-atriall node cells. Nature 324, 470-473.

Disterhoftt JF, Coulter DA & Alkon DL (1986). Conditioning-specific membrane changess of rabbit hippocampal neurons measured in vitro. Proc. Natl. Acad. Sci. U.

S.S. A. 83, 2733-2737.

Durandd GM, Kovalcuk Y & Konnerth A (1996). Long-term potentiation and functionall synapse induction in developing hippocampus. Nature 381, 71-75.

Edmann A, Gestrelius S & Grampp W (1987). Current activation by membrane hyperpolarizationn in the slowly adapting lobster stretch receptor neurone. /. Physiol.

384,, 671-690.

Edmann A & Grampp W (1989). Ion permeation through hyperpolarization-activatedd membrane channels (Q-channels) in the lobster stretch receptor neurone. PflügersPflügers Arch. 413, 249-255.

Egorovv AV, Hamam BN, Fransen E, Hasselmo ME & Alonso AA (2002). Graded persistentt activity in entorhinal cortex neurons. Nature 420,173-178.

134 4

References References

Feldmann DE (2000). Timing-based LTP and LTD at vertical inputs to layer II / I I I pyramidall cells in rat barrel cortex. Neuron 27, 45-56.

Fellouss JM, Rudolph M, Destexhe A & Sejnowski TJ (2003). Synaptic background noisee controls the input/output characteristics of single cells in an in vitro model off in vivo activity. Neuroscience 122, 811-829.

Fieldss RD, Eshete F, Stevens B & Itoh K (1997). Action potential-dependent regulationn of gene expression: temporal specificity in Ca2+, cAMP-responsive elementt binding proteins, and mitogen-activated protein kinase signaling. /. Neurosci.Neurosci. 17, 7252-7266.

Finkbeinerr S & Greenberg ME (1998). Ca2+ channel-regulated neuronal gene expression,, ƒ Neurobiol. 37,171-189.

Franzz O, Liss B, Neu A & Roeper J (2000). Single-cell mRNA expression of HCN11 correlates with a fast gating phenotype of hyperpolarization-activated cyclic nucleotide-gatedd ion channels (Ih) in central neurons. Eur. J. Neurosci. 12, 2685-2693. .

Freyy U, Krug M, Reymann KG & Matthies H (1988). Anisomycin, an inhibitor of proteinn synthesis, blocks late phases of LTP phenomena in the hippocampal CA1 regionn in vitro. Brain Res. 452, 27-65.

Freyy U & Morris RG (1997). Synaptic tagging and long-term potentiation. Nature 385,, 533-536.

Frickk A, Magee J & Johnston D (2004). LTP is accompanied by an enhanced local excitabilityy of pyramidal neuron dendrites. Nat. Neurosci. 7,126-135.

Frickerr D & Johnston D (2001). Plastic changes in intrinsic excitability associated withh long-term synaptic potentiation in CA1 pyramidal neurons. Soc. Neurosci. Abstr.,Abstr., 501.13

Gandhii CC & Matzel LD (2000). Modulation of presynaptic action potential kineticss underlies synaptic facilitation of type B photoreceptors after associative conditioningg in Hermissenda. J. Neurosci. 20, 2022-2035.

Gasparinii S & DiFrancesco D (1997). Action of the hyperpolarization-activated currentt (Ih) blocker ZD7288 in hippocampal CA1 neurons. P/Iugers Arch. 435, 99-106. .

135 5

A-Ctivity-dependentA-Ctivity-dependent plasticity of neuronal plasticity

Gasparinii S & DiFrancesco D (1999). Action of serotonin on the hyperpolarization-activatedd cation current (Ih) in rat CA1 hippocampal neurons. Bur.].Bur.]. Neurosci. 12, 2685-2693.

Gausss R, Seifert R & Kaupp UB (1998). Molecular identification of a hyperpolarization-activatedd channel in sea urchin sperm. Nature 393, 583-587.

Giggg J, Finch DM & CTMara SM (2000). Responses of rat subicular neurons to convergentt stimulation of lateral entorhinal cortex and CA1 in vivo. Brain Res. 884, 35-50. .

Golowaschh J, Abbott LF & Marder E (1999). Activity-dependent regulation of potassiumm currents in an identified neuron of the stomatogastric ganglion of the crabb Cancer Borealis. J. Neurosci. 19, RC33.

Greenee JRT & Totterdel S (1997). Morphology and distribution of electrophysiologicallyy defined classes of pyramidal and nonpyramidal neurons in ratt ventral subiculum in vitro. J. Comp. Neurol. 380, 395-408.

Groverr LM & Teyler TJ (1990). Two components of long-term potentiation inducedd by different patterns of afferent activation. Nature 347, 477-479.

HalliwellJVV & Adams PR (1982). Voltage-clamp analysis of muscarinic excitation inn hippocampal neurons. Brain Res. 250, 71-92.

Harriss EW, Ganong AH & Cotman CW (1984). Long-term potentiation in the hippocampuss involves activation of N-methyl-D-aspartate receptors. Brain Res. 323,132-137. .

Harriss NC & Constanti A (1995). Mechanism of block by ZD7288 of the hyperpolarization-activatedd inward rectifying current in guinea pig substantia nigra neuronss in vitro. J. Neurophysiol. 74, 2366-2378.

Harriss E & Stewart M (2001). Intrinsic connectivity of the rat subiculum: II . Propertiess of synchronous spontaneous activity and a demonstration of multiple generatorr regions./. Comp. Neurol. 436, 506-518.

Hebbb DO (1949). The organisation oj'behavior: a neurophysiological theory. John Wiley

andd Sons, New York, USA.

136 6

References References

Hestrinn S (1987). The properties and function of inward rectification in rod photoreceptorss of the tiger salamander./. Physiol. 390, 319-333.

Higuchii S & Miyashita Y (1996). Formation of mnemonic neuronal responses to visuall paired associates in inferotemporal cortex is impaired by perirhinal and entorhinall lesions. Proc. Natl. Acad. Sri. U. S. A. A. 93, 739-743.

Hill ee B (1992) Ionic channels of excitable membranes. Second edition, Sinauer Associates Inc.,, Sunderland, USA.

Hiness ML & Carnevale NT (1997). The NEURON simulation environment. NeuralNeural Comput. 9, 1179-1209.

Hoo N & Destexhe A (2000). Synaptic background activity enhances the responsivenesss of neocortical pyramidal neurons./. Neurophysiol. 84,1488-1496.

Holmess WR & Woody CD (1989). Effects of uniform and non-uniform synaptic "activity-distributions"" on the cable properties of modeled cortical pyramidal neurons.. Brain Res. 505,12-22.

Hsiaa AY, Malenka RC & Nicoll RA (1998). Development of excitatory circuitry in thee hippocampus./. Neurophysiol. 79, 2013-2024.

Huu BR, Yang YB & Wieloch T (1993). Depression of neuronal protein synthesis initiationn by protein tyrosine kinase inhibitors./. Neurochem. 61, 1789-1794.

Huertaa PT, Sun LD, Wilson MA & Tonegawa S (2000). Formation of temporal memoryy requires NMD A receptors within CA1 pyramidal neurons. Neuron 25, 473-480. .

Ingramm SL & Williams JT (1996). Modulation of the hyperpolarization-activated currentt (Ih) by cyclic nucleotides in guinea-pig primary afferent neurons. / Physiol. 431,, 319-342.

Insaustii R, Herrero MT & Witter MP (1997). Entorhinal cortex of the rat: cytoarchitectonicc subdivisions and the origin and distribution of cortical efferents. HippocampusHippocampus 7, 146-183.

Isaacc JTR, Nicoll RA & Malenka RC (1995). Evidence for silent synapses: implicationss for the expression of LTP. Neuron 15, 427-434.

137 7

Activity-dependentActivity-dependent plasticity of neuronal plasticity

Ishiii TM, Takano M, Xie LH, Noma A, Ohmori H (1999). Molecular characterizationn of the hyperpolarization-activated cation channel in rabbit heart sinoatriall node./. Biol. Chem. 274,12835-12839.

Ishiii TM, Takano M & Ohmori H (2001). Determinants of activation kinetics in mammaliann h)^erpolarization-activated cation channels, ƒ Physiol. 537.1, 93-100.

Jesterr JM, Campbell LW & Sejnowski TJ (1995). Associative EPSP-spike potentiationn induced by pairing orthodromic and antidromic stimulation in rat hippocampall slices./. Physiol. 484, 689-705.

Jungg HY, Staff NP & Spruston N (2001). Action potential bursting in subicular pyramidall neurons is driven by a calcium tail current./. Neurosci. 21, 3312-3321.

Kamondii A & Reiner PB (1991). Hyperpolarization-activated inward current in

histaminergicc tuberomammillary neurons of the rat hypothalamus. /. Neurophysiol.

66,1902-1911. .

Kilmann V, van Rossum MCW & Turrigiano GG (2002). Activity deprivation reducess miniature IPSC amplitude by decreasing the number of postsynaptic G A B A AA receptors clustered at neocortical synapses./. Neurosci. 22, 1328-1337.

Kloostermann F (2003). Interactions between the entorhinal cortex and hippocampal formation.

PhDD thesis, University of Amsterdam, The Netherlands.

Kochh U & Grothe B (2003). Hyperpolarization-activated current (Ih) in the inferiorr colliculus: distribution and contribution to temporal processing. /. Neurophysiol.Neurophysiol. 90, 3679-3687

Kullmannn DM & Siegelbaum SA (1995). The site of expression of NMDA receptor-dependentt LTP: new fuel for an old fire. Neuron 15, 997-1002.

LeMassonn G, Marder E & Abbott LF (1993). Activity-dependent regulation of

conductancess in model neurons. Science 259, 1915-1917.

Liaoo D, Hessler NA & Malinow R (1995). Activation of postsynaptically silent

synapsess during pairing-induced LTP in CA1 region of hippocampal slice. Nature

375,, 400-404.

Lismann JE (1997). Bursts as a unit of neural information: making unreliable

synapsess reliable. Trends Neurosci. 20, 38-43.

138 8

References References

Liss sin DV, Gomperts SN, Carroll RC, Christine CW, Kalman D, Kitamura M, Hardyy S, Nicoll RA, Malenka RC & von Zastrow M (1998). Activity differentially regulatess the surface expression of synaptic AMPA and NMDA glutamate receptors.. Proc. Natl. Acad. Sa. U. S. A. A. 95, 7097-7102.

Liuu Z, Golowasch J, Marder E & Abbott LF (1998). A model neuron with activity-dependentt conductances regulated by multiple calcium sensors. J. Neurosci. 18, 2309-2320. .

Lopess da Sila FH, Witter MP, Boeijinga PH & Lohman AH (1990). Anatomic organizationn and physiology of the limbic cortex. Physiol. Rep. 70, 453-511.

Lörinczz A, Notomi T, Tamas G, Shigemoto R & Nusser Z (2002). Polarized and compartment-dependentt distribution of HCN1 in pyramidal cell dendrites. Nat. Neurosci.Neurosci. 5,1185-1193.

Lowee EJ (2000). An introduction to the philosophy of mind. Cambridge University Press, Cambridge,, UK.

Luu YM, Mansuy IM, Kandel ER & Roder J (2000). Calcineurin-mediated LTD of GABAergicc inhibition underlies the increased excitability of CA1 neurons associatedd with LTP. Neuron 26, 197-205.

Ludwigg A, Zong X, Jeglitsch M, Hofmann F & Biel M (1998). A family of hyperpolarization-activatedd mammalian cation channels. Nature 393, 587-591.

Ludwigg A, Zong X, Stieber J, Hullin R, Hofmann F & Biel M (1999). Two pacemakerr channels from human heart with profoundly different activation kinetics.. EMBOJ. 18, 2323-2329.

Lüthii A & McCormick DA (1998). Periodicity of thalamic synchronized oscillations:: the role of Ca2+- mediated upregulation of Ih. Neuron 20, 553-563.

Lüthii A & McCormick DA (1999). Modulation of a pacemaker current through Ca2+—inducedd stimulation of cAMP production. Nat. Neurosci. 2, 634-641.

Maccaferrii G, Mangoni M, Lazzari A & DiFrancesco D (1993). Properties of the hyperpolarization-activatedd current in rat hippocampal CA1 pyramidal cells. J. Neurophysiol.Neurophysiol. 69, 2129-2136.

139 9

Activity-dependentActivity-dependent plasticity of neuronal plasticity

Mageee JC & Johnston D (1997). A synaptically controlled, associative signal for

Hebbiann plasticity in hippocampal neurons. Science 275, 209-213.

Mageee JC (1998). Dendritic hyperpolarization-activated currents modify the integrativee properties of hippocampal CA1 pyramidal neurons. J. Neurosci. 18, 7613-7624. .

Mageee JC (1999). Dendritic h normalizes temporal summation in hippocampal

CA11 neurons. Nat. Neurosci. 2, 508-514.

Maletic-Savaticc MM, Koothan T & Malinow R (1995). Dendritic calcium-dependentt exocytosis in cultured hippocampal neurons: role of calcium/calmodulinn protein kinase II . Soc. Neurosci. Abstr. 21, 1743.

Maletic-Savaticc M, Koothan T & Malinow R (1996). CaMKII action on microtubuless promotes calcium-evoked dendritic exocytosis. Soc. Neurosci. Abstr.

22,515. .

Mannss JR, Hopkins RO & Squire LR (2003). Semantic memory and the

hippocampus.. Neuron 38, 127-133.

Marderr E, Abbott LF, Turrigiano GG, Liu Z & Golowasch J (1996). Memory fromm the dynamics of intrinsic membrane currents. Proc. Natl. Acad. Sci. U. S. A.

93,13481-13486. .

Maricqq AV & Korenbrot JI (1990). Inward rectification in the inner segment of singlee retinal cone photoreceptors. J. Neuropbysiol. 64, 1917-1928.

Marinn P, Nastiuk KL , Daniel N, Girault JA, Czernik AJ, Glowinksy J, Nairn AC & Prémontt J (1997). Glutamate-dependent phosphorylation of elongation factor-2 andd inhibition of protein synthesis in neurons. J. Neurosci. 17, 3445-3454.

Markramm H, Lübke J, Frotscher M & Sakmann B (1997). Regulation of synaptic efficacyy by coincidence of postsynaptic APs and EPSPs. Science 275, 213-215.

Martinn KC, Casadio A, Zhu HEY, Rose JC, Chen M, Bailey CH & Kandel E (1998).. Synapse-specific, long-term facilitation of aplysia sensory to motor synapses:: a function for local protein synthesis in memory storage. Cell 92, 927-938. .

140 0

References References

Masonn A (1993) Electrophysiology and burst-firing of rat subicular pyramidal neuronss in vitro: a comparison with area CA1. Brain Res. 600, 174-178.

Matteolii M, Takei K, Perin MS, Südhof TC & DeCamilli P (1992). Exo-endocytoticc recycling of synaptic vesicles in developing processes of cultured hippocampall neurons./. Cell Biol. 117, 849-861.

Mattiaa D, Hwa GGC & Avoli M (1993). Membrane properties of rat subicular neuronss in vitro./. Neurophysiol. 70,1244-1248.

Mattiaa D, Kawasaki H & Avoli M (1997a). In vitro electrophysiology of rat subicularr bursting neurons. Hippocampus 7, 48-57.

McCormickk DA & Pape HC (1990). Noradrenergic and serotonergic modulation off a hyperpolarization-activated cation current in thalamic relay neurones. /. Physiol. 431,, 319-342.

McHughh TJ, Blum KI , Tsien JZ, Tonegawa S & Wilson MA (1996). Impaired hippocampall representation of space in CA1-specific NMDAR1 knockout mice. O//87,, 1339-1349.

Megiass M, Emri ZS, Freund TF & Gulyas AI (2001). Total number and distributionn of inhibitory and excitatory synapses on hippocampal CA1 pyramidal cells.. Neuroscience 102, 527-540.

Mellorr J, Nicoll RA & Schmitz D (2002). Mediation of hippocampal mossy fiber long-termm potentiation by presynaptic Ih channels. Science 295,143-147.

Menendezz de la Prida L, Suarez F & Pozo MA (2003). Electrophysiological and morphologicall diversity of neurons from the rat subicular complex in vitro. HippocampusHippocampus 13, 728-744.

Miglioree M, Messineo L & Ferrante M (2004). Dendritic Ih selectively blocks temporall summation of unsynchronized distal inputs in CA1 pyramidal neurons./. Comput.Comput. Neurvsci. 16, 5-13.

Miless R & Wong RKS (1986). Excitatory synaptic interactions between CA3 neuroness in the guinea-pig hippocampus./ Physio/. 373, 397-418.

Mille rr KD (1996). Synaptic economics: competition and cooperation in synaptic

plasticity.. Neuron 17, 371-374.

141 1

Activity-dependentActivity-dependent plasticity of neuronal plasticity

Misonouu H, Mohapatra DP, Park EW, Leung V, Zhen D, Misonou K, Anderson AEE & Trimmer JS (2004). Regulation of ion channel localization and phosphorylationn by neuronal activity. AW. Neurosci. 7, 711-718.

Monteggiaa LM, Eisch AJ, Tang MD, Kaczmarek LK & Nesder EJ (2000). Cloning andd localization of the hyperpolarization-activated cyclic nucleotide-gated channel familyy in rat brain. Mol. Brain Res. 81, 129-139.

Moosmangg S, Biel M, Hofmann F & Ludwig A (1999). Differential distribution of fourr hyperpolarization-activated cation channels in mouse brain. Biol Chem. 380, 975-980. .

Moosmangg S, Stieber J, Zong X, Biel M, Hofmann F & Ludwig A (2001). Cellular expressionn and functional characterization of four hyperpolarization-activated pacemakerr channels in cardiac and neuronal tissues. Eur. J. Biochem. 268, 1646-1652. .

Moyerr JR, Thompson LT & Disterhoft JF (1996). Trace eyeblink conditioning increasess CA1 excitability in a transient learning-specific manner. J, Neurosci. 16, 5536-5546. .

Moyerr JR, Power JM, Thompson LT & Disterhoft JF (2000). Increased excitability off aged rabbit CA1 neurons after trace eyeblink conditioning. J. Neurosci. 20, 5476-5482. .

Nelsonn AB, Krispel CM, Sekirnjak C & du Lac S (2003). Long-lasting increases in intrinsicc excitability triggered by inhibition. Neuron 40, 609-620.

Nomaa A & Irisawa H (1976). Membrane currents in the rabbit sinoatrial node cell ass studied by the double microelectrode method. Pflügers Arch. 364, 45-52.

CTBrienn RJ, Kamboj S, Ehlers MD, Rosen KR, Fischbach GD & Huganir RL (1998).. Activity-dependent modulation of synaptic AMPA receptor accumulation. NeuronNeuron 21, 1067-1078.

Ohh MM, Kuo AG, Wu WW, Sametsky EA & Disterhoft JF (2003). Watermaze

learningg enhances excitability of CA1 pyramidal neurons, ƒ Neurophysiol. 90, 2171-

2191. .

CTMaraa SM, Commins S, Anderson M & Gigg J (2001). The subiculum: a review off form, physiology and function. Prog. Neurobiol. 64, 129-155.

142 2

References References

Overmann WH, Ormsby G & Mishkin M (1990). Picture recognition vs. picture Discriminationn learning in monkeys with medial temporal removals. Exp. Brain Res. 79,18-24. .

Pann ZZ (2003). K-Opioid receptor-mediated enhancement of the hyperpolarization-activatedd current (Ih) through mobili2ation of intracellular calciumm in rat nucleus raphe magnus. J. Physiol. 548.3, 765-775.

Papee HC & McCormick DA (1989). Noradrenaline and serotonin selectively modulatee thalamic burst firing by enhancing a hyperpolarization-activated cation current.. Nature 340, 715-718.

Papee HC (1996). Queer current and pacemaker: the hyperpolarization-activated cationn current in neurons. Annu. Rev. Physiol. 58, 299-327.

Paree D, Shink E, Gaudreau H, Destexhe A & Lang EJ (1998). Impact of spontaneouss synaptic activity on the resting properties of cat neocortical pyramidal neuronss in vivo./. Neurophysiol. 79, 1450-1460.

Passafaroo M, Piech V, Sheng M (2001). Subunit-specific temporal and spatial patternss of AMPA receptor exocytosis in hippocampal neurons. Nat NeurosciA, 917-926. .

Pedarzinii P & Storm JF (1995). Protein kinase A-independent modulation of ion channelss in the brain by cyclic AMP. Proc. Natl. Acad. Sci. U. S. A. 92, 11716-11720. .

Pooloss NP, Migliore M & Johnston D (2002). Pharmacological upregulation of h-channelss reduces the excitability of pyramidal neuron dendrites. Nat Neurosci. 5, 767-774. .

Ramponn C, Tang YP, Goodhouse J, Shimizu E, Kyin M & Tsien JZ (2000). Enrichmentt induces structural changes and recovery from nonspatial memory deficitss in CA1 NMDAR1 -knockout mice. Nat. Neumsci. 3, 238-244.

Rappp M, Yarom Y & Segev I (1992). The impact of parallel fiber background activityy on the cable properties of cerebellar Purkinje cells. Neural Comput 4, 518-532. .

143 3

Activity-dependentActivity-dependent plasticity of neuronal plasticity

Rempel-Clowerr NL, Zola SM, Squire LR & Amaral DG (1996). Three cases of enduringg memory impairment after bilateral damage limited to the hippocampal formation.. /. Neurosci. 16, 5233-5255.

Robinsonn RB & Siegelbaum SA (2002). Hyperpolarization-activated cation currents:: from molecules to physiological function. Annu. Rev. Physiol. 65, 29.1-29.28. .

Saarr D, Grossman Y & Barkai E (1998). Reduced after-hyperpolarization in rat piriformm cortex pyramidal neurons is associated with increased learning capability duringg operant conditioning. Eur. J. Neurosci. 10, 1518-1523.

Saarr D, Grossman Y, Barkai E (2002). Learning-induced enhancement of postsynapticc potentials in pyramidal neurons, ƒ Neurophysiol. 87, 2358-2363.

Sanchez-Andress JV & Alkon DL (1991). Voltage-clamp analysis of the effects of classicall conditioning on the hippocampus. J. Neurophysiol. 65, 796-807.

Santoroo B, Liu DT, Yao H, Bartsch D, Kandel ER, Siegelbaum SA & Tibbs GR (1998).. Identification of a gene encoding a hyperpolarization-activated pacemaker channell of brain. Cell 93, 717-729.

Santoroo B, Chen S, Lüthi A, Pavlidis P, Shumyatsky GP, Tibbs GR & Siegelbaum SAA (2000). Molecular and functional heterogeneity of hyperpolarization-activated pacemakerr channels in the mouse CNS. ƒ. Neurosci. 20, 5264-5275.

Santoroo B & Baram TZ (2003). The multiple personalities of h-channels. Trends

Neurosci.Neurosci. 26, 550-554.

Schreurss BG, Tomsic D, Gusev PA & Alkon DL (1997). Dendritic excitability microzoness and occluded long-term depression after classical conditioning of the rabbit'ss nictitating membrane response./. Neurophysiol. 77, 86-92.

Schreurss BG, Gusev PA, Tomsic D, Alkon DL & Shi T (1998). Intracellular correlatess of acquisition and long-term memory of class conditioning in Purkinje celll dendrites in slices of rabbit cerebellar lobule HVL/ . Neurosci. 18, 5498-5507.

Scovillee WB & Milner B (1957). Loss of recent memory after bilateral hippocampal

lesions./.. Neurol. Neurosur. Ps. 20, 11-21.

144 4

References References

Seifertt R, Scholten A, Gauss R, Mincheva A, Lichter P, Kaupp UB (1999). Molecularr characterization of a slowly gating human hyperpolarization-activated channell predominantly expressed in thalamus, heart and testis. Proc. Natl. Acad. Sci. U ££ A 96, 9391-9396.

Shimizuu E, Tang YP, Rampon C & Tsien JZ (2000). NMDA receptor-dependent synapticc reinforcement as a crucial process for memory consolidation. Science 290, 1170-1174. .

Shuu Y, Hasenstaub A, Badoual M, Bal T & McCormick DA (2003). Barrages of synapticc activity control the gain and sensitivity of cortical neurons. J. Neurosci. 23, 10388-10401. .

Siegell M, Marder E & Abbott LF (1994). Activity-dependent current distributions inn model neurons. Proc. Natl. Acad. Set. U. S. A. 91,11308-11312.

Suvaa A, Stevens CF, Tonegawa S & Wang Y (1992a). Deficient hippocampal long-

termm potentiation in a-calcium calmodulin kinase II mutant mice. Science 257, 201-

206. .

Suvaa A, Paylor R, Wehner J & Tonegawa S (1992b). Impaired spatial learning in a-calciumm calmodulin kinase II mutant mice. Science 257, 206-211.

Sniderr RK, Kabara JF, Roig BR & Bonds AB (1998). Burst firing and modulation off functional connectivity in cat striate cortex. /. Neurophysiol. 80, 730-744.

Solomonn JS & Nerbonne JM (1993). Hyperpolarization-activated currents in isolatedd superior colliculus-projecting neurons from rat visual cortex. J. Physio/. 462, 393-420. .

Stefanaccii L, Buffalo EA, Schmolck H & Squire LR (2000). Profound amnesia followingg damage to the medial temporal lobe: a neuroanatomical and neuropsychologicall profile of patient E.P. ƒ. Neurosci. 20, 7024-7036.

Squiree LR, Stark CEL & Clark RE (2004). The medial temporal lobe. Anna. Rev. Neurosci.Neurosci. 27, 279-306.

Stafff NP, Jung HY, Thiagarajan T, Yao M & Spruston N (2000). Resting and activee properties of pyramidal neurons in subiculum and CA1 of rat hippocampus. / .. Neurophysiol. 84, 2398-2408.

145 5

Activity-dependentActivity-dependent plasticity of neuronal plasticity

Stantonn PK & Sarvey JM (1984). Blockade of long-term potentiation in

hippocampall CA1 region by inhibitors of protein synthesis. ]. Neurosci. 4, 3080-

3088. .

Stemmlerr M & Koch C (1999). How voltage-dependent conductances can adapt to

maximizee the information encoded by neuronal firing rate. Nat. Neurosci. 2, 521-

527. .

Stewartt M (1997). Antidromic and orthodromic responses by subicular neurons in

ratt brain slices. Brain Res. 769, 71-85.

Stewartt M & Wong RKS (1993). Intrinsic properties and evoked responses of guineaa pig subicular neurons in vitro. /. NeurophysioL 70, 232-245.

Stoccaa G, Constanti A & Nistri A (1999). Do hippocampal CA1 neurones of the

adultt rat posses a slow inward rectifying chloride conductance? Neurosci. Lett. 259,

186-190. .

Surgess R, Freiman TM & Feuerstein TJ (2003). Gabapentin increases the

hyperpolarization-activatedd cation current Ih in rat CA1 pyramidal cells. Epilepsia

44,, 150-156.

Takahashii T (1990). Inward rectification in neonatal rat spinal motoneurones. J.

Physiol.Physiol. 423,47-62.

Tangg YP, Shimizu E, Dube GR, Rampon C, Kerchner GA, Zhuo M, Liu G &

Tsienn JZ (1999). Genetic enhancement of learning and memory in mice. Nature

401,63-69. .

Taubee JS & Schwartzkroin PA (1988). Mechanisms of long-term potentiation:

EPSP/spikee dissociation, intradendritic recordings, and glutamate sensitivity. J.

Neurosci.Neurosci. 8, 1632-1644.

Taubee JS (1993). Electrophysiological properties of neurons in the rat subiculum in

vitro.. Exp. Brain Res. 96, 304-318.

Thompsonn LT, Moyer JR & Disterhoft JF (1996). Transient changes in excitability

off rabbit CA3 neurons with a time course appropriate to support memory

consolidation.. /. NeurophysioL 76, 1836-1849.

146 6

References References

Tsienn JZ, Huerta PT & Tonegawa S (1996). The essential role of hippocampal CAII NMDA receptor-dependent synaptic plasticity in spatial memory. Cell 87, 1327-1338. .

Turrigianoo GG, Abbott LF & Marder E (1994). Activity-dependent changes in the intrinsicc properties of cultured neurons. Science 264, 974-977.

Turrigianoo GG, LeMasson G & Marder E (1995). Selective regulation of current densitiess underlies spontaneous changes in the activity of cultured neurons, ƒ. Neurosci.Neurosci. 15, 3640-3652.

Turrigianoo GG, Leslie KR, Desai NS, Rutherford LC & Nelson SB (1998). Activity-dependentt scaling of quantal amplitude in neocortical neurons. Nature 391, 892-895. .

Turrigianoo GG (1999). Homeostatdc plasticity in neuronal networks: the more thingss change, the more they stay the same. Trends Neurosci. 22, 221-227.

Ulenss C & Tytgat J (2001). Functional heteromerization of HCN1 and HCN2 pacemakerr channels. ]. Biol. Chem. 276, 6069-6072.

Vann Hooft JA (2002). Fast green FCF (Food Green 3) inhibits synaptic activity in ratt hippocampal interneurons. Neurosci. Lett. 318, 163-165.

Vann Welie I, van Hooft J A & Wadman WJ (2002). Rapid modulation of somatic hyperpolarization-activatedd inward currents by synaptic activity. Soc. Neurosci. Abstr. 344A 344A

Vann Welie I, van Hooft JA & Wadman WJ (2004). Homeostatic scaling of neuronall excitability by synaptic modulation of somatic hyperpolarization-activated Ihh channels. Proc. Natl. Acad. Sci. U. S. A. 101, 5123-5128.

Vargha-Khademm F, Gadian DG, Watkins KE, Connelly A, Van Paesschen W & Mishkinn M (1997). Differential effects of early hippocampal pathology on episodic andd semantic memory. Science 277, 376-380.

Vonn der Malsburg C (1973). Self-organization of orientation sensitive cells in the striatee cortex. Kybernetic 14, 85400.

147 7

Activity-dependentActivity-dependent plasticity of neuronal plasticity

Wangg Z, Xu NL, Wu CP, Duan S & Poo MM (2003). Bidirectional changes in

spatiall dendritic integration accompanying long-term synaptic modifications.

NeuronNeuron 37, 463-472.

Wattt AJ, van Rossum MCW, MacLeod KM, Nelson SB & Turrigiano GG (2000).

Activit yy co-regulates quantal AMPA and NMDA currents at neocortical synapses.

NeuronNeuron 26, 659-670.

Williamss SR & Stuart GJ (2000) Site independence of EPSP time course is mediatedd by dendritic Ih in neocortical neurons, ƒ Neurophysiol. 83, 3177-3182.

Wittenbergg GM & Tsien JZ (2002). An emerging molecular and cellular framework

forr memory processing by the hippocampus. Trends Neurosci. 25, 501-505.

Wollmuthh LP (1995). Multiple ion binding sites in Ih channels of rod photoreceptorss from tiger salamanders. Pfliigers Archiv. 430, 34-43.

Wuu G, Malinow R & Cline HT (1996). Maturation of a central glutamatergic

synapse.. Science 274, 972-976.

Yuu H, Wu J, Potapova I, Wymore RT, Holmes B, Zuckerman J, Pan Z, Wang H, Shii W, Robinson RB, El Maghrabi MR, Benjamin W, Dixon J, McKinnon D, Cohenn IS & Wymore R (2001). MinK-related peptide 1: a beta subunit for the HCNN ion channel subunit family enhances expression and speeds activation. Circ.

Res.Res. 88, E84-87.

Yuu X, Duan KL , Shang CF, Yu HG & Zhou Z (2004). Calcium influx through hyperpolarization-activatedd cation channels (Ih channels) contributes to activity-evokedd neuronal secretion. Proc. Natl Acad. Sri. U. S. A. 101, 1051-1056.

Zamanilloo D, Sprengel R, Hvalby 0, Jensen V, Burnashev N, Rozov A, Kaiser KMM ,, Koster HJ, Borchardt T, Worley P, Lubke J, Frotscher M, Kelly PH, Sommerr B, Andersen P, Seeburg PH & Sakmann B (1999). Importance of AMPA receptorss for hippocampal synaptic plasticity but not for spatial learning. Science

284,1805-1811. .

Zigmondd MJ, Bloom FE, Landis SC, Roberts JL & Squire LR (1999). Fundamental

neuroscience.neuroscience. Academic Press, San Diego, USA.

Zola-Morgann S, Squire LR & Amaral DG (1986). Human amnesia and the medial temporall region: enduring memory impairment following a bilateral lesion limited too field CA1 of the hippocampus, ƒ Neurosci. 6, 2950-2967.

148 8