نتایج جستجو برای: forelimb

تعداد نتایج: 2892  

Journal: :Journal of anatomy 2009
R Diogo V Abdala M A Aziz N Lonergan B A Wood

In a recent study Diogo & Abdala [(2007) J Morphol 268, 504-517] reported the results of the first part of a research project on the comparative anatomy, homologies and evolution of the pectoral muscles of osteichthyans (bony fish and tetrapods). That report mainly focused on actinopterygian fish but also compared these fish with certain non-mammalian sarcopterygians. This study, which reports ...

Journal: :The Journal of experimental biology 2009
Stéphane J Montuelle Anthony Herrel Paul-Antoine Libourel Lionel Reveret Vincent L Bels

In tetrapods, feeding behaviour in general, and prey capture in particular, involves two anatomical systems: the feeding system and the locomotor system. Although the kinematics associated with the movements of each system have been investigated in detail independently, the actual integration between the two systems has received less attention. Recently, the independence of the movements of the...

Journal: :Acta neurobiologiae experimentalis 1984
J Yu

The conditioned tactile placing of the forelimbs was abolished contralaterally after unilateral neodecortication or ipsilaterally after hemisection of spinal cord at high cervical level in cats. However, the conditioned response can be regained with training. The results suggest that training activates additional pathways for the conditioned response.

Journal: :The Journal of neuroscience : the official journal of the Society for Neuroscience 1987
C L Smith E Frank

Thoracic dorsal root ganglia in bullfrogs contain sensory neurons that innervate the skin of the trunk and have synaptic connections in the dorsal horn of the spinal cord. The ganglion that innervates the forelimb contains, in addition to cutaneous afferents, many muscle afferents that project more ventrally in the spinal cord and make monosynaptic connections with motoneurons. In the present s...

Journal: :Journal of neurophysiology 2008
Richard D Lane Charles P Pluto Cynthia L Kenmuir Nicolas L Chiaia Richard D Mooney

Neonatal forelimb amputation in rats produces sprouting of sciatic nerve afferent fibers into the cuneate nucleus (CN) and results in 40% of individual CN neurons expressing both forelimb-stump and hindlimb receptive fields. The forelimb-stump region of primary somatosensory cortex (S-I) of these rats contains neurons in layer IV that express both stump and hindlimb receptive fields. However, t...

Journal: :The Journal of neuroscience : the official journal of the Society for Neuroscience 1998
P S Diener B S Bregman

Neonatal midthoracic spinal cord injury disrupts the development of postural reflexes and hindlimb locomotion. The recovery of rhythmical alternating movements, such as locomotion, is enhanced in injured animals receiving fetal spinal cord transplants. Neonatal cervical spinal cord injury disrupts not only locomotion but also skilled forelimb movement. The aims of this study were to determine t...

2017
Naohiko Okabe Naoyuki Himi Emi Maruyama-Nakamura Norito Hayashi Kazuhiko Narita Osamu Miyamoto

Task-specific rehabilitative training is commonly used for chronic stroke patients. Axonal remodeling is believed to be one mechanism underlying rehabilitation-induced functional recovery, and significant roles of the corticospinal pathway have previously been demonstrated. Brainstem-spinal pathways, as well as the corticospinal tract, have been suggested to contribute to skilled motor function...

Journal: :The Journal of experimental biology 2006
Sandra Nauwelaerts Peter Aerts

Anurans use a saltatorial (jumping) mode of locomotion. A jumping cycle can be divided into four subphases: propulsion, flight, landing and recovery. We studied the landing phase during locomotion in Rana esculenta by measuring the ground reaction forces during propulsion and landing over a range of distances. Landing performance affects locomotor ability in jumping frogs. Landing and recovery ...

Journal: :Current Biology 2013
Jeremy E. Niven

Scanning movements made by stick insects' forelimbs are modified for several seconds after a brief contact with an object, suggesting that the neural networks controlling local limb movements in insects can form short-term positional memories.

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