Grande G, Bui TV, Rose PK. (2007). Estimates of the location of L-type Ca2+ channels in motoneurons of different sizes: a computational study. Journal of neurophysiology. 97 [PubMed]

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References and models cited by this paper

Ballou EW, Smith WB, Anelli R, Heckman CJ. (2006). Measuring dendritic distribution of membrane proteins. Journal of neuroscience methods. 156 [PubMed]

Barrett JN, Crill WE. (1974). Specific membrane properties of cat motoneurones. The Journal of physiology. 239 [PubMed]

Bennett DJ, Hultborn H, Fedirchuk B, Gorassini M. (1998). Synaptic activation of plateaus in hindlimb motoneurons of decerebrate cats. Journal of neurophysiology. 80 [PubMed]

Bernander O, Douglas RJ, Martin KA, Koch C. (1991). Synaptic background activity influences spatiotemporal integration in single pyramidal cells. Proceedings of the National Academy of Sciences of the United States of America. 88 [PubMed]

Binder MD, Powers RK, Davenport C, Margolis D, Detwiler P. (2003). Multiphoton fluorescence imaging of calcium fluxes in the dendrites of rat hypoglossal motoneurons Soc Neurosci Abstr 499.

Booth V, Rinzel J, Kiehn O. (1997). Compartmental model of vertebrate motoneurons for Ca2+-dependent spiking and plateau potentials under pharmacological treatment. Journal of neurophysiology. 78 [PubMed]

Brännström T. (1993). Quantitative synaptology of functionally different types of cat medial gastrocnemius alpha-motoneurons. The Journal of comparative neurology. 330 [PubMed]

Brännström T, Kellerth JO. (1998). Changes in synaptology of adult cat spinal alpha-motoneurons after axotomy. Experimental brain research. 118 [PubMed]

Bui TV, Cushing S, Dewey D, Fyffe RE, Rose PK. (2003). Comparison of the morphological and electrotonic properties of Renshaw cells, Ia inhibitory interneurons, and motoneurons in the cat. Journal of neurophysiology. 90 [PubMed]

Bui TV, Ter-Mikaelian M, Bedrossian D, Rose PK. (2006). Computational estimation of the distribution of L-type Ca(2+) channels in motoneurons based on variable threshold of activation of persistent inward currents. Journal of neurophysiology. 95 [PubMed]

Burke RE et al. (1982). A HRP study of the relation between cell size and motor unit type in cat ankle extensor motoneurons. The Journal of comparative neurology. 209 [PubMed]

Burke RE, Glenn LL. (1996). Horseradish peroxidase study of the spatial and electrotonic distribution of group Ia synapses on type-identified ankle extensor motoneurons in the cat. The Journal of comparative neurology. 372 [PubMed]

Cameron WE, Averill DB, Berger AJ. (1985). Quantitative analysis of the dendrites of cat phrenic motoneurons stained intracellularly with horseradish peroxidase. The Journal of comparative neurology. 231 [PubMed]

Carlin KP, Jones KE, Jiang Z, Jordan LM, Brownstone RM. (2000). Dendritic L-type calcium currents in mouse spinal motoneurons: implications for bistability. The European journal of neuroscience. 12 [PubMed]

Clark BD, Dacko SM, Cope TC. (1993). Cutaneous stimulation fails to alter motor unit recruitment in the decerebrate cat. Journal of neurophysiology. 70 [PubMed]

Clements JD, Redman SJ. (1989). Cable properties of cat spinal motoneurones measured by combining voltage clamp, current clamp and intracellular staining. The Journal of physiology. 409 [PubMed]

Cullheim S, Fleshman JW, Glenn LL, Burke RE. (1987). Membrane area and dendritic structure in type-identified triceps surae alpha motoneurons. The Journal of comparative neurology. 255 [PubMed]

Elbasiouny SM, Bennett DJ, Mushahwar VK. (2005). Simulation of dendritic CaV1.3 channels in cat lumbar motoneurons: spatial distribution. Journal of neurophysiology. 94 [PubMed]

Fleshman JW, Segev I, Burke RB. (1988). Electrotonic architecture of type-identified alpha-motoneurons in the cat spinal cord. Journal of neurophysiology. 60 [PubMed]

Fukunishi Y et al. (1999). Quantitative analysis of the dendritic architectures of cat hypoglossal motoneurons stained intracellularly with horseradish peroxidase. The Journal of comparative neurology. 405 [PubMed]

Garnett R, Stephens JA. (1981). Changes in the recruitment threshold of motor units produced by cutaneous stimulation in man. The Journal of physiology. 311 [PubMed]

Gogan P, Tyc-Dumont S, Bras H, Destombes J. (1987). The dendrites of single brain-stem motoneurons intracellularly labelled with horseradish peroxidase in the cat. An ultrastructural analysis of the synaptic covering and the microenvironment. Neuroscience. 22

Grande G, Armstrong S, Neuber-Hess M, Rose PK. (2005). Distribution of contacts from vestibulospinal axons on the dendrites of splenius motoneurons. The Journal of comparative neurology. 491 [PubMed]

Gustafsson B, Pinter MJ. (1984). Relations among passive electrical properties of lumbar alpha-motoneurones of the cat. The Journal of physiology. 356 [PubMed]

Heckman CJ, Binder MD. (1988). Analysis of effective synaptic currents generated by homonymous Ia afferent fibers in motoneurons of the cat. Journal of neurophysiology. 60 [PubMed]

Heckman CJ, Binder MD, Powers RK. (1996). The physiological control of motoneuron activity. In: Handbook of Physiology. Exercise: Regulation and Integration of Multiple Systems.. 12

Heckmann CJ, Gorassini MA, Bennett DJ. (2005). Persistent inward currents in motoneuron dendrites: implications for motor output. Muscle & nerve. 31 [PubMed]

Hounsgaard J, Mintz I. (1988). Calcium conductance and firing properties of spinal motoneurones in the turtle. The Journal of physiology. 398 [PubMed]

Jones SM, Lee RH. (2006). Fast amplification of dynamic synaptic inputs in spinal motoneurons in vivo. Journal of neurophysiology. 96 [PubMed]

Kanda K, Burke RE, Walmsley B. (1977). Differential control of fast and slow twitch motor units in the decerebrate cat. Experimental brain research. 29 [PubMed]

Kernell D, Zwaagstra B. (1989). Size and remoteness: two relatively independent parameters of dendrites, as studied for spinal motoneurones of the cat. The Journal of physiology. 413 [PubMed]

Lee RH, Heckman CJ. (1998). Bistability in spinal motoneurons in vivo: systematic variations in persistent inward currents. Journal of neurophysiology. 80 [PubMed]

Lee RH, Heckman CJ. (1999). Paradoxical effect of QX-314 on persistent inward currents and bistable behavior in spinal motoneurons in vivo. Journal of neurophysiology. 82 [PubMed]

Lee RH, Heckman CJ. (2000). Adjustable amplification of synaptic input in the dendrites of spinal motoneurons in vivo. The Journal of neuroscience : the official journal of the Society for Neuroscience. 20 [PubMed]

Lee RH, Heckman CJ. (2001). Essential role of a fast persistent inward current in action potential initiation and control of rhythmic firing. Journal of neurophysiology. 85 [PubMed]

Lee RH, Kuo JJ, Jiang MC, Heckman CJ. (2003). Influence of active dendritic currents on input-output processing in spinal motoneurons in vivo. Journal of neurophysiology. 89 [PubMed]

Li Y, Bennett DJ. (2003). Persistent sodium and calcium currents cause plateau potentials in motoneurons of chronic spinal rats. Journal of neurophysiology. 90 [PubMed]

Lipscombe D, Helton TD, Xu W. (2004). L-type calcium channels: the low down. Journal of neurophysiology. 92 [PubMed]

Maltenfort MG, Hamm TM. (2004). Estimation of the electrical parameters of spinal motoneurons using impedance measurements. Journal of neurophysiology. 92 [PubMed]

Mendell LM, Henneman E. (1981). Functional organization of motoneuron pool and its inputs Handbook of Physiology, The Nervous System, Motor Control.

Müller W, Lux HD. (1993). Analysis of voltage-dependent membrane currents in spatially extended neurons from point-clamp data. Journal of neurophysiology. 69 [PubMed]

Oviedo H, Reyes AD. (2005). Variation of input-output properties along the somatodendritic axis of pyramidal neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 25 [PubMed]

Powers RK, Binder MD. (2000). Summation of effective synaptic currents and firing rate modulation in cat spinal motoneurons. Journal of neurophysiology. 83 [PubMed]

Rall W. (1977). Core conductor theory and cable properties of neurons Handbook of Physiology. The Nervous System. Cellular Biology of Neurons. 1(1.1)

Rose PK, Neuber-Hess M. (1991). Morphology and frequency of axon terminals on the somata, proximal dendrites, and distal dendrites of dorsal neck motoneurons in the cat. The Journal of comparative neurology. 307 [PubMed]

Rose PK, Vanner SJ. (1988). Differences in somatic and dendritic specific membrane resistivity of spinal motoneurons: an electrophysiological study of neck and shoulder motoneurons in the cat. Journal of neurophysiology. 60 [PubMed]

Schwindt PC, Crill WE. (1980). Properties of a persistent inward current in normal and TEA-injected motoneurons. Journal of neurophysiology. 43 [PubMed]

Segev I, Fleshman JW, Burke RE. (1990). Computer simulation of group Ia EPSPs using morphologically realistic models of cat alpha-motoneurons. Journal of neurophysiology. 64 [PubMed]

Simon M, Perrier JF, Hounsgaard J. (2003). Subcellular distribution of L-type Ca2+ channels responsible for plateau potentials in motoneurons from the lumbar spinal cord of the turtle. The European journal of neuroscience. 18 [PubMed]

Sjöström AM, Ulinski PS. (1985). Morphology of retinogeniculate terminals in the turtle, Pseudemys scripta elegans. The Journal of comparative neurology. 238 [PubMed]

Svirskis G, Gutman A, Hounsgaard J. (2001). Electrotonic structure of motoneurons in the spinal cord of the turtle: inferences for the mechanisms of bistability. Journal of neurophysiology. 85 [PubMed]

Taylor AM, Enoka RM. (2004). Quantification of the factors that influence discharge correlation in model motor neurons. Journal of neurophysiology. 91 [PubMed]

Ulfhake B, Kellerth JO. (1981). A quantitative light microscopic study of the dendrites of cat spinal alpha-motoneurons after intracellular staining with horseradish peroxidase. The Journal of comparative neurology. 202 [PubMed]

Westenbroek RE, Binder MD, Powers RK, Newkirk GS. (2005). Distribution of Cav 1.2, Cav 1.3, Cav 2.1, and Cav 2.2 channels on the somata and dendrites of rat hypoglossal motoneurons Soc Neurosci Abstr 750:11.

Westenbroek RE, Hoskins L, Catterall WA. (1998). Localization of Ca2+ channel subtypes on rat spinal motor neurons, interneurons, and nerve terminals. The Journal of neuroscience : the official journal of the Society for Neuroscience. 18 [PubMed]

Williams SR, Stuart GJ. (2003). Role of dendritic synapse location in the control of action potential output. Trends in neurosciences. 26 [PubMed]

Zengel JE, Reid SA, Sypert GW, Munson JB. (1985). Membrane electrical properties and prediction of motor-unit type of medial gastrocnemius motoneurons in the cat. Journal of neurophysiology. 53 [PubMed]

Zhang M et al. (2006). Localization of L-type calcium channel Ca(V)1.3 in cat lumbar spinal cord--with emphasis on motoneurons. Neuroscience letters. 407 [PubMed]

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