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111.
Ummǖ Zeynep Avsar Umit Avsar Ali Aydin Muhammed Yayla Berna Ozturkkaragoz Harun Un Murat Saritemur Tolga Mercantepe 《中国神经再生研究》2014,9(10):1020-1024
Several studies have demonstrated that L-carnitine exhibits neuroprotective effects on injured sciatic nerve of rats with diabetes mellitus. It is hypothesized that L-carnitine exhibits neuro-protective effects on injured sciatic nerve of rats. Rat sciatic nerve was crush injured by a forceps and exhibited degenerative changes. After intragastric administration of 50 and 100 mg/kg L-carnitine for 30 days, axon area, myelin sheath area, axon diameter, myelin sheath diameter, and numerical density of the myelinated axons of injured sciatic nerve were similar to normal, and the function of injured sciatic nerve also improved signiifcantly. These ifndings suggest that L-carnitine exhibits neuroprotective effects on sciatic nerve crush injury in rats. 相似文献
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Green tea polyphenols protect spinal cord neurons against hydrogen peroxide-induced oxidative stress 总被引:1,自引:0,他引:1
Jianbo Zhao ;Shiqiang Fang ;Yajiang Yuan ;Zhanpeng Guo ;Jinhao Zeng ;Yue Guo ;Peifu Tan ;Xifan Mei 《中国神经再生研究》2014,9(14):1379-1385
Green tea polyphenols are strong antioxidants and can reduce free radical damage. To investigate their neuroprotective potential, we induced oxidative damage in spinal cord neurons using hydrogen peroxide, and applied different concentrations(50–200 μg/mL) of green tea polyphenol to the cell medium for 24 hours. Measurements of superoxide dismutase activity, malondialdehyde content, and expression of apoptosis-related genes and proteins revealed that green tea polyphenol effectively alleviated oxidative stress. Our results indicate that green tea polyphenols play a protective role in spinal cord neurons under oxidative stress. 相似文献
114.
Glial cells in the central nervous system (CNS) contribute to formation of the extracellular matrix, which provides adhesive sites, signaling molecules, and a diffusion barrier to enhance efficient on and axon potential propagation. In the normal adult CNS, the extracellular matrix (ECM) is relatively stable except in selected regions characterized by dynamic remodeling. However, after trauma such as a spinal cord injury or cortical contusion, the lesion epicenter becomes a focus of acute neuroinflammation. The activation of the surrounding glial cells leads to a dramatic change in the composition of the ECM at the edges of the lesion, creating a perilesion environment dominated by growth inhibitory molecules and restoration of the peripheral/ central nervous system border. An advantage of this response is to limit the invasion of damaging cells and diffusion of toxic molecules into the spared tissue regions, but this occurs at the cost of inhibiting migration of endogenous repair cells and preventing axonal regrowth. The following review was prepared by reading and discussing over 200 research articles in the field published in PubMed and selecting those with significant impact and/or controversial points. This article highlights structural and functional features of the normal adult CNS ECM and then focuses on the reactions of glial cells and changes in the perilesion border that occur following spinal cord or contusive brain injury. Current research strategies directed at modifying the inhibitory perilesion microenvironment without eliminating the protective functions of glial cell activation are discussed. 相似文献
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The restructuring of emergency healthcare services has led to more blunt thoracic trauma being treated by a multidisciplinary team, including general, orthopaedic and trauma surgeons, often without immediate access to a thoracic surgeon. Having a critical mass of injured patients in a central location, it has been possible to bring expertise from other areas of intensive care, radiology and surgery and apply new technology and techniques to the trauma patient. We now see the regular use of endovascular stenting and embolization reducing the need for urgent surgery on unstable patients and the increasing use of extracorporeal membranous oxygenation (ECMO) to salvage patients with acute respiratory distress syndrome. A more liberal use of video-assisted thoracic surgery (thoracoscopic) decortication and chest wall fixation both reduce ICU requirements and shorten hospital stay. It is hoped that these improvements in the hospital management of chest injuries will not only improve survival, but that the reduction in the late sequelae of chronic pain and loss of stamina will translate into improved return-to-work rates. 相似文献
117.
《Clinical neurophysiology》2014,125(6):1138-1144
ObjectiveThe Inhibitory Control Task (ICT) was used to detect minimal hepatic encephalopathy (MHE). ICT assesses attention, working memory and inhibition by evaluating performance in detect, go and nogo trials, respectively. The event-related potentials (ERPs) elicited by the ICT provide insight into neural mechanisms underlying the cognitive alterations associated with MHE.MethodsThe performance and the ERPs elicited by ICT were measured in 31 patients with cirrhosis (13 with and 18 without MHE) and in 17 controls. The latency and amplitude of the N2, P3a, P3b and nogo-P3 were compared among the groups.ResultsPatients with MHE performed worse in all ICT trials compared to patients without MHE and controls. Cirrhotic patients, both with and without MHE, displayed a reduction in P3a amplitude, selectively in the detect trials. Patients without MHE exhibited greater N2 and nogo-P3 amplitudes compared to patients with MHE and controls.ConclusionsBoth patients with and without MHE displayed neural alterations reflecting attentional deficits (i.e., P3a attenuation). However, patients without MHE coped with such dysfunctions by recruiting compensatory neural mechanisms, as suggested by the enhancement of the nogo-P3 and N2 amplitudes coupled with a normal ICT performance.SignificanceThe study suggests how initial brain dysfunction might be compensated for by recruitment of additional neurocognitive resources. 相似文献
118.
Amber Eker Pembe Hare Yigitoglu H. Ilker Ipekdal Aliye Tosun 《Journal of Korean Neurosurgical Society》2014,55(5):277-279
Autonomic dysreflexia is a clinical emergency syndrome of uncontrolled sympathetic output that can occur in patients who have a history of spinal cord injury. Despite its frequency in spinal cord injury patients, central nervous system complications are very rare. We report a man with traumatic high level incomplete spinal cord injury who suffered hypertensive right thalamic hemorrhage secondary to an episode of autonomic dysreflexia. Prompt recognition and removal of the triggering factor, the suprapubic catheter obstruction which led to hypertensive attack, the patient had a favorable functional outcome after the resorption of the hematoma and effective rehabilitation programme. 相似文献
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