Ha kapcsolatba szeretne lépni a Tudóstér adminisztrátoraival, kérjük töltse ki az alábbi űrlapot, vagy küldjön e-mailt a publikacioklib.unideb.hu címre.
Bejelentkezés
A Tudóstér funkcióinak nagy része bejelentkezés nélkül is elérhető. Bejelentkezésre az alábbi műveletekhez van szükség:
Birinyi, A.,
Rácz, N.,
Kecskés, S.,
Matesz, K.,
Kovalecz, G.:
Neural circuits underlying jaw movements for the prey-catching behavior in frog: distribution of vestibular afferent terminals on motoneurons supplying the jaw.
Brain Struct. Funct. 223 (4), 1683-1696, 2018.
Kecskés, S.,
Matesz, K.,
Gaál, B. Á.,
Birinyi, A.:
Neural circuits underlying tongue movements for the prey-catching behavior in frog: distribution of primary afferent terminals on motoneurons supplying the tongue.
Brain Struct. Funct. 221 (3), 1533-1553, 2016.
Kovalecz, G.,
Kecskés, S.,
Birinyi, A.,
Matesz, K.:
Primer trigeminalis afferensek eloszlása a szájnyitásban résztvevő nervus facialis motoneuronjain.
In: Árkövy Vándorgyűlés - Perspektívák a Paroimplantológiában és a Komprehenzív Fogászatban. Kiadta: a MFE, MFE, Szeged, 1, 2016.
Gaál, B. Á.,
Kecskés, S.,
Matesz, K.,
Birinyi, A.,
Hunyadi, A.,
Rácz, É.:
Molecular composition and expression pattern of the extracellular matrix in a mossy fiber-generating precerebellar nucleus of rat, the prepositus hypoglossi.
Neurosci. Lett. 594, 122-126, 2015.
Kecskés, S.,
Matesz, K.,
Birinyi, A.:
Termination of trigeminal primary afferents on glossopharyngeal-vagal motoneurons: possible neural networks underlying the swallowing phase and visceromotor responses of prey-catching behavior.
Brain Res. Bull. 99C, 109-116, 2013.
Birinyi, A.:
Anatomy of spinal motoneurons.
In: Motor Functions of the spinal cord. Ed.: Birinyi András, Transworld Research Network, Kerala, India, 1-19, 2012.
Birinyi, A.:
Organization of spinal motor networks.
In: Motor Functions of the spinal cord. Ed.: Birinyi András, Transworld Research Network, Kerala, India, 19-47, 2012.
Stelescu, A.,
Sümegi, J.,
Wéber, I.,
Birinyi, A.,
Wolf, E.:
Somato-dendritic morphology and dendritic signal transfer properties differentiate between fore- and hindlimb innervating motoneurons in the frog Rana esculenta.
BMC Neurosci. 13 (1), 68, 2012.
Matesz, K.,
Birinyi, A.,
Rácz, É.,
Székely, G.,
Bácskai, T.:
Organization of the hypoglossal nucleus in the frog, Rana exculenta.
In: Tongue: Anatomy, Kinematics, Disaeses. Eds.: Hiroto Kato, Taiga Shimizu, Nova Science Publishers, Hauppauge, USA, 1-11, 2011. ISBN: 9781621006282
Wéber, I.,
Veress, G.,
Szűcs, P.,
Antal, M.,
Birinyi, A.:
Neurotransmitter systems of commissural interneurons int he lumbar spinal cord of neonatal rats.
Brain Res. 1178, 65-72, 2007.
Birinyi, A.,
Székely, G.,
Csapó, K.,
Matesz, K.:
Quantitative morphological analysis of the motoneurons innervating muscles involved in tongue movements of the frogRana esculenta.
J. Comp. Neurol. 470 (4), 409-421, 2004.
Birinyi, A.,
Viszokay, K.,
Wéber, I.,
Kiehn, O.,
Antal, M.:
Synaptic targets of commissural interneurons in the lumbar spinal cord of neonatal rats.
J. Comp. Neurol. 461 (4), 429-440, 2003.
Gustafsson, J. S.,
Birinyi, A.,
Crum, J.,
Ellisman, M.,
Brodin, L.,
Shupliakov, O.:
Ultrastructural organization of lamprey reticulospinal synapses in three dimensions.
J. Comp. Neurol. 450 (2), 167-182, 2002.
Dityatev, A. E.,
Birinyi, A.,
Puskár, Z.,
Antal, M.,
Clamann, P.:
A correlative physiological and morphological analysis of monosynaptically connected propriospinal axon - motoneuron pairs in the lumbar spinal cord of frogs.
Neuroscience. 106 (2), 405-417, 2001.
Birinyi, A.,
Straka, H.,
Matesz, K.,
Dieringer, N.:
Location of dye-coupled second order and of efferent vestibular neurons labeled from individual semicircular canal or otolith organs in the frog.
Brain Res. 921 (1-2), 44-39, 2001.
Birinyi, A.,
Parker, D.,
Antal, M.,
Shupliakov, O.:
Zinc co-localizes with GABA and glycine in synapses in the lamprey spinal cord.
J. Comp. Neurol. 433 (2), 208-221, 2001.
Antal, M.,
Puskár, Z.,
Birinyi, A.,
Storm-Mathisen, J.:
Development, neurochemical properties and axonal projections of a population of last-order premotor interneurons in the white matter of the chick lumbosacral spinal cord.
J. Exp. Zool. 286 (2), 157-172, 2000.
Shayan, A. J.,
Brodin, L.,
Ottersen, O. P.,
Birinyi, A.,
Hill, C. E.,
Govind, C. K.,
Atwood, H. L.,
Shupliakov, O.:
Neurotransmitter levels and synaptic strength at the drosophila larval neuromuscular junction are not altered by mutation in the sluggish-a gene, which encodes proline oxidase and affects adult locomotion.
J. Neurogenet. 14 (3), 165-192, 2000.