Optical recording of trisynaptic pathway in rat hippocampal slices with a voltage-sensitive dye
暂无分享,去创建一个
H Saito | N. Matsuki | H. Saito | Y. Nakagami | N Matsuki | Y Nakagami
[1] M. Yeckel,et al. Feedforward excitation of the hippocampus by afferents from the entorhinal cortex: redefinition of the role of the trisynaptic pathway. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[2] D. Amaral,et al. Organization of intrahippocampal projections originating from CA3 pyramidal cells in the rat , 1990, The Journal of comparative neurology.
[3] M. Witter,et al. Entorhinal-Hippocampal Interactions Revealed by Real-Time Imaging , 1996, Science.
[4] B M Salzberg,et al. Optical recording of electrical activity from parallel fibres and other cell types in skate cerebellar slices in vitro. , 1987, The Journal of physiology.
[5] R. Frostig,et al. Optical imaging of neuronal activity. , 1988, Physiological reviews.
[6] Nobuaki Tamamaki,et al. Columnar organization in the subiculum formed by axon branches originating from single CA1 pyramidal neurons in the rat hippocampus , 1987, Brain Research.
[7] P. Somogyi,et al. A High Degree of Spatial Selectivity in the Axonal and Dendritic Domains of Physiologically Identified Local‐circuit Neurons in the Dentate Gyms of the Rat Hippocampus , 1993, The European journal of neuroscience.
[8] B M Salzberg,et al. Optical recording of voltage changes in nerve terminals and in fine neuronal processes. , 1989, Annual review of physiology.
[9] N. Matsuki,et al. Optical recording of rat entorhino-hippocampal system in organotypic culture , 1996, Neuroscience Letters.
[10] D. Amaral,et al. The three-dimensional organization of the hippocampal formation: A review of anatomical data , 1989, Neuroscience.
[11] R. Nicoll,et al. Contrasting properties of two forms of long-term potentiation in the hippocampus , 1995, Nature.
[12] B M Salzberg,et al. Dendritic origin of late events in optical recordings from salamander olfactory bulb. , 1992, Journal of neurophysiology.
[13] N. Onoda,et al. Signal propagation from piriform cortex to the endopiriform nucleus in vitro revealed by optical imaging , 1994, Neuroscience Letters.
[14] T. Knöpfel,et al. Signal transmission in the parallel fiber-Purkinje cell system visualized by high-resolution imaging. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[15] Manabu Tanifuji,et al. Optical imaging of the in vitro guinea pig piriform cortex activity using a voltage-sensitive dye , 1994, Neuroscience Letters.
[16] S. Laurberg,et al. Associational and commissural collaterals of neurons in the hippocampal formation (Hilus fasciae dentatae and subfield CA3) , 1981, Brain Research.
[17] P. Somogyi,et al. Subdivisions in the Multiple GABAergic Innervation of Granule Cells in the Dentate Gyrus of the Rat Hippocampus , 1993, The European journal of neuroscience.
[18] P. Saggau,et al. Long-term potentiation in guinea pig hippocampal slices monitored by optical recording of neuronal activity , 1986, Neuroscience Letters.
[19] Y. Yaari,et al. The relationship between interictal and ictal paroxysms in an in vitro model of focal hippocampal epilepsy , 1988, Annals of neurology.
[20] M. Tanifuji,et al. Horizontal Propagation of Excitation in Rat Visual Cortical Slices Revealed by Optical Imaging , 1994 .
[21] K Kamino,et al. Optical approaches to ontogeny of electrical activity and related functional organization during early heart development. , 1991, Physiological reviews.
[22] G. Matsumoto,et al. Enhanced Fast Synaptic Transmission and a Delayed Depolarization Induced by Transient Potassium Current Blockade in Rat Hippocampal Slice as Studied by Optical Recording , 1996, The Journal of Neuroscience.
[23] A Grinvald,et al. Visualization of the spread of electrical activity in rat hippocampal slices by voltage‐sensitive optical probes , 1982, The Journal of physiology.
[24] B. Salzberg,et al. Micromolar 4-aminopyridine enhances invasion of a vertebrate neurosecretory terminal arborization: optical recording of action potential propagation using an ultrafast photodiode-MOSFET camera and a photodiode array , 1996, The Journal of general physiology.
[25] P. Saggau,et al. Spontaneous interictal-like activity originates in multiple areas of the CA2-CA3 region of hippocampal slices. , 1994, Journal of neurophysiology.