Ashby P, Zilm D (1982) Relationship between EPSP shape and cross-correlation profile explored by computer simulation for studies on human motoneurons. Exp Brain Res 47:33–40
Google Scholar
Baker JR, Davey NJ, Ellaway PH, Friedland CL (1992) Short-term synchrony of motor unit discharge during weak isometric contraction in Parkinson’s disease. Brain 115:137–154
Google Scholar
Baldissera F, Gustafsson B (1974) Afterhyperpolarization conductance time course in lumbar motoneurones of the cat. Acta Physiol Scand 91:512–527
Google Scholar
Bremner FD, Baker JR, Stephens JA (1991) Effect of task on the degree of synchronization of intrinsic hand muscle motor units in man. J Neurophysiol 66:2072–2083
Google Scholar
Bussel B, Pierrot-Deseilligny E (1977) Inhibition of human motoneurons, probably of Renshaw origin, elicited by an orthodromic motor discharge. J Physiol Lond 269:319–339
Google Scholar
Calvin WH (1974) Three modes of repetitive firing and the role of threshold time course between spikes. Brain Res 69:341–346
Google Scholar
Calvin WH, Stevens CF (1968) Synaptic noise and other sources of randomness in motoneuron interspike intervals. J Neurophysiol 31:574–587
Google Scholar
Calvin WH, Schwindt PC (1972) Steps in production of motoneuron spikes during rhythmic firing. J Neurophysiol 35:297–310
Google Scholar
Cullheim S, Kellerth J-O (1978) A morphological study of the axons and recurrent collaterals of cat α-motoneurones as differentiated morphologically. J Physiol Lond 281:301–313
Google Scholar
Datta AK, Stephens JA (1979) The effect of digital nerve stimulation on motor unit interspike intervals recorded during voluntary contraction of first dorsal interosseous muscle in man [proceedings]. J Physiol 292:16P–17P
Google Scholar
Datta AK, Stephens JA (1990) Synchronization of motor unit activity during voluntary contraction in man. J Physiol 422:397–419
Google Scholar
Datta AK, Farmer SF, Stephens JA (1991) Central nervous pathways underlying synchronization of human motor unit firing studied during voluntary contractions. J Physiol 432:401–425
Google Scholar
Davey NJ, Ellaway PH, Baker JR, Friedland CL (1993) Rhythmicity associated with a high degree of short-term synchrony of motor unit discharge in man. Exp Physiol 78:649–661
Google Scholar
Davey NJ, Ellaway PH, Friedland CL, Short DJ (1990) Motor unit discharge characteristics and short term synchrony in paraplegic humans. J Neurol Neurosurg Psychiatry 53:764–769
Google Scholar
Eccles JC (1966) The ionic mechanisms of excitatory and inhibitory synaptic action. Ann NY Acad Sci 137:473–494
Google Scholar
Ellaway PH (1978) Cumulative sum technique and its application to the analysis of peristimulus time histograms. Electroencephalogr Clin Neurophysiol 45:302–304
Google Scholar
Farmer SF, Halliday DM, Conway BA, Stephens JA, Rosenberg JR (1997) A review of recent applications of cross-correlation methodologies to human motor unit recording. J Neurosci Methods 74:175–187
Google Scholar
Fetz EE, Gustafsson B (1983) Relation between shapes of post-synaptic potentials and changes in firing probability of cat motoneurones. J Physiol 341:387–410
Google Scholar
Hamm TM, Sasaki S, Stuart DG, Windhorst U, Yuan CS (1987) The measurement of single motor-axon recurrent inhibitory post-synaptic potentials in the cat. J Physiol 388:631–651
Google Scholar
Hultborn H, Pierrot-Deseilligny E (1979) Changes in recurrent inhibition during voluntary soleus contractions in man studied by an H-reflex technique. J Physiol 297:229–251
Google Scholar
Hultborn H, Pierrot-Deseilligny E, Wigstrom H (1979) Recurrent inhibition and afterhyperpolarization following motoneuronal discharge in the cat. J Physiol 297:253–266
Google Scholar
Katz R, Pierrot-Deseilligny E (1999) Recurrent inhibition in humans. Prog Neurobiol 57:325–355
Google Scholar
Kernell D (1984) The meaning of discharge rate: excitation-to-frequency transduction as studied in spinal motoneurones. Arch Ital Biol 122:5–15
Google Scholar
Kernell D, Bakels R, Copray JC (1999) Discharge properties of motoneurones: how are they matched to the properties and use of their muscle units? J Physiol Paris 93:87–96
Google Scholar
Kudina LP (1980) Reflex effects of muscle afferents on antagonist studied on single firing motor units in man. Electroencephalogr Clin Neurophysiol 50:214–221
Google Scholar
Kudina LP (1988) Excitability of firing motoneurones tested by Ia afferent volleys in human triceps surae. Electroencephalogr Clin Neurophysiol 69:576–580
Google Scholar
Kudina LP, Pantseva RE (1988) Recurrent inhibition of firing motoneurones in man. Electroencephalogr Clin Neurophy- siol 69:179–185
Google Scholar
Lindsay AD, Binder MD (1991) Distribution of effective synaptic currents underlying recurrent inhibition in cat triceps surae motoneurons. J Neurophysiol 65:168–177
Google Scholar
Maltenfort MG, Heckman CJ, Rymer WZ (1998) Decorrelating actions of Renshaw interneurons on the firing of spinal motoneurons within a motor nucleus: a simulation study. J Neurophysiol 80:309–323
Google Scholar
Mattei B, Schmied A, Mazzocchio R, Decchi B, Rossi A, Vedel JP (2003) Pharmacologically induced enhancement of recurrent inhibition in humans: effects on motoneurone discharge patterns. J Physiol 548:615–629
Google Scholar
Matthews PB (1999a) The effect of firing on the excitability of a model motoneurone and its implications for cortical stimulation. J Physiol 518:867–882
Google Scholar
Matthews PB (1999b) Properties of human motoneurones and their synaptic noise deduced from motor unit recordings with the aid of computer modelling. J Physiol Paris 93:135–145
Google Scholar
Mazurkiewicz L, Piotrkiewicz M (2004) Investigation of healthy and sick motoneuron properties by means of a system for identification and analysis of motor unit potential trains. Biocybern Biomed Eng (in press)
Meunier S, Pierrot-Deseilligny E, Simonetta-Moreau M (1994) Pattern of heteronymous recurrent inhibition in the human lower limb. Exp Brain Res 102:149–159
Google Scholar
Miles TS, Le TH, Turker KS (1989) Biphasic inhibitory responses and their IPSPs evoked by tibial nerve stimulation in human soleus motor neurones. Exp Brain Res 77:637–645
Google Scholar
Moore GP, Perkel DH, Segundo JP (1966) Statistical analysis and functional interpretation of neuronal spike data. Annu Rev Physiol 28:493–522
Google Scholar
Nelson PG (1966) Interaction between spinal motoneurons of the cat. J Neurophysiol 29:275–287
Google Scholar
Nordstrom MA, Fuglevand AJ, Enoka RM (1992) Estimating the strength of common input to human motoneurons from the cross-correlogram. J Physiol 453:547–574
Google Scholar
Pantseva RE (1984) Study of recurrent inhibition during orthodromic stimulation of motoneurons. Hum Physiol 10:184–188
Google Scholar
Person RS, Kozhina GV (1978) Study of orthodromic and antidromic effects of nerve stimulation on single motoneurones of human hand muscles. Electromyogr Clin Neurophysiol 18:437–456
Google Scholar
Pierrot-Deseilligny E, Bussel B (1975) Evidence for recurrent inhibition by motoneurons in human subjects. Brain Res 88:105–108
Google Scholar
Piotrkiewicz M (1999) An influence of afterhyperpolarization on the pattern of motoneuronal rhythmic activity. J Physiol Paris 93:125–133
Google Scholar
Piotrkiewicz M, Churikova L, Person R (1992) Excitability of single firing human motoneurones to single and repetitive stimulation (experiment and model). Biol Cybern 66:253–259
Google Scholar
Piotrkiewicz M, Kudina L, Hausmanowa-Petrusewicz I, Zhoukovskaya N, Mierzejewska J (2001) Discharge properties and afterhyperpolarization of human motoneurons. Biocybern Biomed Eng 21:53–75
Google Scholar
Powers RK, Binder MD (1996) Experimental evaluation of input-output models of motoneuron discharge. J Neurophysiol 75:367–379
Google Scholar
Powers RK, Binder MD (2000) Relationship between the time course of the afterhyperpolarization and discharge variability in cat spinal motoneurones. J Physiol 528:131–150
Google Scholar
Renshaw B (1941) Influence of discharge of motoneurons upon excitation of neighboring motoneurones. J Neurophysiol 4:167–183
Google Scholar
Reyes AD, Fetz EE (1993) Two modes of interspike interval shortening by brief transient depolarizations in cat neocortical neurons. J Neurophysiol 69:1661–1672
Google Scholar
Schmied A, Pagni S, Sturm H, Vedel JP (2000) Selective enhancement of motoneurone short-term synchrony during an attention-demanding task. Exp Brain Res 133:377–390
Google Scholar
Stuart G, Sakmann B (1995) Amplification of EPSPs by axosomatic sodium channels in neocortical pyramidal neurons. Neuron 15:1065–1076
Google Scholar
Turker KS, Powers RK (1999) Effects of large excitatory and inhibitory inputs on motoneuron discharge rate and probability. J Neurophysiol 82:829–840
Google Scholar
Turker KS, Schmied A, Cheng HB (1996) Correlated changes in the firing rate of human motor units during voluntary contraction. Exp Brain Res 111:455–464
Google Scholar
Uchiyama T, Johansson H, Windhorst U (2003a) A model of the feline medial gastrocnemius motoneuron-muscle system subjected to recurrent inhibition. Biol Cybern 89:139–151
Google Scholar
Uchiyama T, Johansson H, Windhorst U (2003b) Static and dynamic input-output relations of the feline medial gastrocnemius motoneuron-muscle system subjected to recurrent inhibition:a model study. Biol Cybern 89:264–273
Google Scholar
Veale JL, Rees S (1973) Renshaw cell activity in man. J Neurol Neurosurg Psychiatry 36:674–683
Google Scholar
Westgaard RH, De Luca CJ (2001) Motor control of low-threshold motor units in the human trapezius muscle. J Neurophysiol 85:1777–1781
Google Scholar
Windhorst U (1990) Activation of Renshaw cells. Prog Neurobiol 35:135–179
Google Scholar
Windhorst U (1996) On the role of recurrent inhibitory feedback in motor control. Prog Neurobiol 49:517–587
Google Scholar
Zengel JE, Reid SA, Sypert GW, Munson JB (1983) Presynaptic inhibition, EPSP amplitude, and motor-unit type in triceps surae motoneurons in the cat. J Neurophysiol 49:922–931
Google Scholar
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. J Neurophysiol 53:1323–1344
Google Scholar