نتایج جستجو برای: trigeminal motoneurons

تعداد نتایج: 14035  

Journal: :The Journal of neuroscience : the official journal of the Society for Neuroscience 1990
L L Crews D J Wigston

Motoneurons seem to require contact with their target muscle even after embryogenesis is complete, but the consequences of target-deprivation during postnatal development are poorly understood. To examine the fate of motoneurons separated from their targets postnatally, we labeled the motoneurons that innervate the biceps brachii muscle with the retrograde tracer Fluorogold and then separated t...

Journal: :The International journal of developmental biology 2002
Glen B Banks Peter G Noakes

Approximately half of the motoneurons generated during normal embryonic development undergo programmed cell death. Most of this death occurs during the time when synaptic connections are being formed between motoneurons and their target, skeletal muscle. Subsequent muscle activity stemming from this connection helps determine the final number of surviving motoneurons. These observations have gi...

Journal: :Frontiers of oral and maxillofacial medicine 2021

Objective: Trigeminal nerve injury is an uncommon complication of outpatient oral surgery and dental procedures such as removal impacted teeth, placement endosseous implants, even injection local anesthesia. In the field maxillofacial surgery, two most commonly injured branches trigeminal are inferior alveolar lingual nerves. Fortunately, injuries will undergo spontaneous recovery, with only a ...

Journal: :Journal of neurophysiology 2015
Félix Leroy Boris Lamotte d'Incamps Daniel Zytnicki

In neonatal mice, fast- and slow-type motoneurons display different patterns of discharge. In response to a long liminal current pulse, the discharge is delayed up to several seconds in fast-type motoneurons and their firing frequency accelerates. In contrast, slow-type motoneurons discharge immediately, and their firing frequency decreases at the beginning of the pulse. Here, we identify the i...

Journal: :Annals of the New York Academy of Sciences 1998
J Quevedo B Fedirchuk S Gosgnach D McCrea

In the absence of locomotion, activation of extensor muscle spindle (Ia) and tendon organ (Ib) afferents evokes a widespread pattern of interneuronally mediated inhibition and excitation through the non-reciprocal reflex systems (1). During the extension phase of fictive locomotion, however, the same afferents evoke a disynaptic excitation of extensor motoneurons (2). Recently it has been repor...

2012
Junying Gao Meiyun Tan Minxia Gu Charles Marshall Jiong Ding Gang Hu Ming Xiao

Previous studies reported that a subpopulation of mouse and rat trigeminal neurons express water channel aquaporin-1 (AQP1). In this study we make a comparative investigation of AQP1 localization in the human and mouse trigeminal systems. Immunohistochemistry and immunofluorescence results showed that AQP1 was localized to the cytoplasm and cell membrane of some medium and small-sized trigemina...

2004
JOHN G. NEW GLENN NORTHCUTT

Horseradish peroxidase histochemical studies of afferent and efferent projections of the trigeminal nerve in two species of chondrostean fishes revealed medial, descending and ascending projections. Entering fibers of the trigeminal sensory root project medially to terminate in the medial trigeminal nucleus, located along the medial wall of the rostral medulla. Other entering sensory fibers tur...

Journal: :Acta neurobiologiae experimentalis 2014
Olga Kuzawińska Krzysztof Lis Agnieszka Cudna Ewa Bałkowiec-Iskra

It is well established that the majority of headache and other trigeminal nerve-associated disorders have higher prevalence in females than in males. However, the pathogenesis of many chronic trigeminal pain conditions, such as trigeminal neuralgia, migraine and temporo-mandibular disorders, is still not known. One of the proposed mechanisms involve calcitonin gene-related peptide (CGRP), which...

Journal: :The Journal of neuroscience : the official journal of the Society for Neuroscience 1989
M J O'Donovan

The cellular mechanisms underlying embryonic motility were investigated using intracellular recording from motoneurons and electrotonic recording from muscle nerves during motor activity generated by an isolated spinal cord preparation of 12- to 15-d-old chick embryos. DC-coupled recordings from sartorius (a flexor) and femorotibialis (an extensor) muscle nerves revealed that both sets of moton...

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