The isolated mammalian spinal cord.
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Summary
Future preparations including the complete spinal cord, the two hind limbs, and a sagittal section of the complete brain will allow greater understanding of the multiple sensory and motor pathways and their interactions in the CNS.
- Type
- review
- Published
- 1995-05-01
- Cited by
- 62
- References
- 186
- OpenAlex
- https://openalex.org/W2001086120
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:37042160
Keywords
Spinal cord, Hindlimb, Neuroscience, Cord, Nociception
References
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- The responses recorded in vitro of deep dorsal horn neurons to direct and orthodromic stimulation in the young rat spinal cord.
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- Central pathways responsible for depolarization of primary afferent fibres
- Whole-cell recordings from sympathetic preganglionic neurons in rat spinal cord slices.
- A pharmacological study on respiratory rhythm in the isolated brainstem‐spinal cord preparation of the newborn rat
- Primary respiratory rhythm generator in the medulla of brainstem-spinal cord preparation from newborn rat.
- Respiratory rhythm generation in the in vitro brain stem‐spinal cord preparation of the neonatal rat.
- Serotonin via presynaptic 5-HT1 receptors attenuates synaptic transmission to immature rat motoneurons in vitro.
- Uneven distribution of excitatory amino acid receptors on ventral horn neurones of newborn rat spinal cord.
- Differential sensitivity of dorsal and ventral root activity to magnesium and 2-amino-5-phosphonovalerate (APV) in an isolated mammalian spinal cord preparation.
- The minimal inhibitory synaptic currents evoked in neonatal rat motoneurones.
Cited by
- Intersegmental synchronization of spontaneous activity of dorsal horn neurons in the cat spinal cord
- Chapter 1--importance of chloride homeostasis in the operation of rhythmic motor networks.
- Effects of 5-hydroxytryptamine on Mouse Lumbar Motor Activity During Postnatal Development
- Neurotrophins in spinal cord nociceptive pathways.
- The effects induced by the sulphonylurea glibenclamide on the neonatal rat spinal cord indicate a novel mechanism to control neuronal excitability and inhibitory neurotransmission
- Nerve Growth Factor- and Neurotrophin-3-Induced Changes in Nociceptive Threshold and the Release of Substance P from the Rat Isolated Spinal Cord
- Spontaneous and locomotor‐related GABAergic input onto primary afferents in the neonatal rat
- Spastic long-lasting reflexes of the chronic spinal rat studied in vitro.
- Antidromic discharges of dorsal root afferents in the neonatal rat.
- An ex vivo preparation of mature mice spinal cord to study synaptic transmission on motoneurons.
- The role of AMPA and metabotropic glutamate receptors on morphine withdrawal in infant rats
- Effects of pad on conduction of action potentials within segmental and ascending branches of single muscle afférents in the cat spinal cord
- An in vitro model of neurotrauma in organotypic spinal cord cultures from adult mice.
- Properties of spinal motoneurons and interneurons in the adult turtle: Provisional classification by cluster analysis
- Properties of LTD and LTP of retinocollicular synaptic transmission in the developing rat superior colliculus
- Neuroprotection by steroids after neurotrauma in organotypic spinal cord cultures: a key role for progesterone receptors and steroidal modulators of GABA(A) receptors.
- An in vitro spinal cord slice preparation for recording from lumbar motoneurons of the adult mouse.
- Role of group II and III metabotropic glutamate receptors in rhythmic patterns of the neonatal rat spinal cord in vitro
- Hemisegmental localisation of rhythmic networks in the lumbosacral spinal cord of neonate mouse.
- GW0742, a High-Affinity PPAR-&dgr; Agonist, Mediates Protection in an Organotypic Model of Spinal Cord Damage
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