Spinal cord motor neuron plasticity accompanies second‐degree burn injury and chronic pain
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چکیده
منابع مشابه
Repair of Spinal Cord Injury by Co-Transplantation of embryonic Stem Cell-Derived Motor Neuron and Olfactory Ensheathing Cell
Background: The failure of regeneration after spinal cord injury (SCI) has been attributed to axonal demyelination and neuronal death. Cellular replacement and white matter regeneration are both necessary for SCI repair. In this study, we evaluated the co-transplantation of olfactory ensheathing cells (OEC) and embryonic stem (ES) cell-derived motor neurons (ESMN) on contused SCI. Methods: OEC...
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The initial experience concerning the use of magnetic resonance imaging in 94 patients who had sustained chronic cord injury showed its specific advantages over traditional imaging modalities. A variety of 84 cord abnormalities were identified including myelomalacia in 47%, cord cysts in 37%, focal atrophy in 11 % and cord transection in 5%. Canal stenosis was seen in twenty-five patients, ...
متن کاملFrequency of Phantom Pain among patients with Spinal Cord Injury
Summary: Background: Patients with spinal cord injury (SCI) usually have permanent and often devastating neurologic deficits and disability and pain (1). According to the National Institutes of Health, "among neurological disorders, the cost to society of automotive SCI is exceeded only by the cost of mental retardation"(2). Neurogenic pain constitutes one of the enigmatic clinical sy...
متن کاملBrain motor system function after chronic, complete spinal cord injury.
Most therapies under development to restore motor function after spinal cord injury (SCI) assume intact brain motor functions. To examine this assumption, 12 patients with chronic, complete SCI and 12 controls underwent functional MRI during attempted, and during imagined, right foot movement, each at two force levels. In patients with SCI, many features of normal motor system function were pre...
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ژورنال
عنوان ژورنال: Physiological Reports
سال: 2019
ISSN: 2051-817X,2051-817X
DOI: 10.14814/phy2.14288