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“Nonlinear interaction between shunting and adaptation controls a switch between integration and coincidence detection in pyramidal neurons.”, J Neurosci, vol. 26, no. 36, pp. 9084-97, 2006.
, “Reduction of anion reversal potential subverts the inhibitory control of firing rate in spinal lamina I neurons: towards a biophysical basis for neuropathic pain.”, Mol Pain, vol. 2, p. 32, 2006.
, “Spatial and temporal relationship between monocyte chemoattractant protein-1 expression and spinal glial activation following peripheral nerve injury.”, J Neurochem, vol. 97, no. 3, pp. 772-83, 2006.
, “Two-photon excitation fluorescence microscopy with a high depth of field using an axicon.”, Appl Opt, vol. 45, no. 36, pp. 9246-52, 2006.
, “[Two-photon laser scanning fluorescence microscopy for functional cellular imaging: Advantages and challenges or One photon is good.. but two is better!].”, Med Sci (Paris), vol. 22, no. 10, pp. 837-44, 2006.
, “BDNF from microglia causes the shift in neuronal anion gradient underlying neuropathic pain.”, Nature, vol. 438, no. 7070, pp. 1017-21, 2005.
, “Destruction of polymer growth substrates for cell cultures in two-photon microscopy.”, J Microsc, vol. 220, no. Pt 2, pp. 120-7, 2005.
, “Differential maturation of GABA action and anion reversal potential in spinal lamina I neurons: impact of chloride extrusion capacity.”, J Neurosci, vol. 25, no. 42, pp. 9613-23, 2005.
, “Integration time in a subset of spinal lamina I neurons is lengthened by sodium and calcium currents acting synergistically to prolong subthreshold depolarization.”, J Neurosci, vol. 25, no. 19, pp. 4743-54, 2005.
, “Morphology and neurokinin 1 receptor expression of spinothalamic lamina I neurons in the rat spinal cord.”, J Comp Neurol, vol. 491, no. 1, pp. 56-68, 2005.
, “Role of cation-chloride-cotransporters (CCC) in pain and hyperalgesia.”, Curr Top Med Chem, vol. 5, no. 6, pp. 547-55, 2005.
, “Gain control of firing rate by shunting inhibition: roles of synaptic noise and dendritic saturation.”, Proc Natl Acad Sci U S A, vol. 100, no. 4, pp. 2076-81, 2003.
, “Trans-synaptic shift in anion gradient in spinal lamina I neurons as a mechanism of neuropathic pain.”, Nature, vol. 424, no. 6951, pp. 938-42, 2003.
, “Aging causes a preferential loss of cholinergic innervation of characterized neocortical pyramidal neurons.”, Cereb Cortex, vol. 12, no. 3, pp. 329-37, 2002.
, “Four cell types with distinctive membrane properties and morphologies in lamina I of the spinal dorsal horn of the adult rat.”, J Physiol, vol. 539, no. Pt 3, pp. 817-36, 2002.
, “Cholinergic nerve terminals establish classical synapses in the rat cerebral cortex: synaptic pattern and age-related atrophy.”, Neuroscience, vol. 105, no. 2, pp. 277-85, 2001.
, “Region-specific developmental specialization of GABA-glycine cosynapses in laminas I-II of the rat spinal dorsal horn.”, J Neurosci, vol. 21, no. 20, pp. 7871-80, 2001.
, “Differential progression of Dark Neuron and Fluoro-Jade labelling in the rat hippocampus following pilocarpine-induced status epilepticus.”, Neuroscience, vol. 97, no. 1, pp. 59-68, 2000.
, “GABA(B) receptors are the first target of released GABA at lamina I inhibitory synapses in the adult rat spinal cord.”, J Neurophysiol, vol. 84, no. 2, pp. 1006-11, 2000.
, “Loss of presynaptic and postsynaptic structures is accompanied by compensatory increase in action potential-dependent synaptic input to layer V neocortical pyramidal neurons in aged rats.”, J Neurosci, vol. 20, no. 22, pp. 8596-606, 2000.
, “Visualization of lamina I of the dorsal horn in live adult rat spinal cord slices.”, J Neurosci Methods, vol. 96, no. 2, pp. 133-42, 2000.
, “An ambiguous fast synapse: a new twist in the tale of two transmitters.”, Nat Neurosci, vol. 2, no. 3, pp. 199-200, 1999.
, “Junctional versus extrajunctional glycine and GABA(A) receptor-mediated IPSCs in identified lamina I neurons of the adult rat spinal cord.”, J Neurosci, vol. 19, no. 17, pp. 7342-55, 1999.
, “NK-1 receptor immunoreactivity in distinct morphological types of lamina I neurons of the primate spinal cord.”, J Neurosci, vol. 19, no. 9, pp. 3545-55, 1999.
, “Endogenous GABA activates small-conductance K+ channels underlying slow IPSCs in rat hippocampal neurons.”, J Neurophysiol, vol. 77, no. 4, pp. 2202-8, 1997.
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