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1.
Chinese Journal of Rehabilitation Theory and Practice ; (12): 1272-1281, 2021.
Article in Chinese | WPRIM | ID: wpr-905139

ABSTRACT

Objective:To observe the effect of exercise on cognitive function and the expression of NeuN and SynapsinI in prefrontal cortex of rats after cerebral ischemia-reperfusion. Methods:Forty health male Sprague-Dawley rats were randomly divided into sham group (S group, n = 10), model group (M group, n = 10), sham & exercise group (SE group, n = 10) and model & exercise group (ME group, n = 10). The left middle cerebral artery was occluded for one hour and reperfused. SE and ME groups accepted treadmill training, for 14 days. The cognitive function of rats was evaluated with open field experiment and new object recognition experiment. The number and distribution of nerve cells in rat brain were observed with Nissl staining and immunofluorescence staining. The SynapsinI expression in serum was detected with ELISA. Results:Compared with S group, the activity, times of crossing, length and activity time in central area of open field experiment decreased in M group, as well as the cognitive index and length of new object recognition experiment (P < 0.05). Compared with M group, all the indexes increased in ME group (P < 0.05). The number of Nissl bodies decreased in M group (P < 0.05) and the arrangement was disordered, while the number of Nissl bodies increased in ME group (P < 0.05) compared with M group. The NeuN positive cells was more in S group than in M group (P < 0.05), and it was more in ME group than in M group (P < 0.05); as well as that of SynapsinI. The expression of SynapsinI decreased in M group (P < 0.05), and increased in ME group (P < 0.05). Most results of behavioral experiments positively correlated with the expression of Nissl, NeuN and SynapsinI (r > 0.221, P < 0.05). Conclusion:Cerebral ischemia-reperfusion can cause cognitive impairment in rats. Exercise can alleviate nerve injury and improve cognitive function, which may relate to promoting the expression of NeuN and SynapsinI in prefrontal cortex, to increase the number of neurons and synapses.

2.
China Journal of Orthopaedics and Traumatology ; (12): 400-402, 2008.
Article in Chinese | WPRIM | ID: wpr-263669

ABSTRACT

Mechanical loading is the main "instructive" factor of bone formation. The mechanism becomes the heat point in the field of bone science, biomedicine project and rehabilitation research. Mechanical vibration is one of the mechanic stimulation. Evidences show that vibration has obvious anabolic effect, and will have a broad landscape in the treatment of osteoporosis. But in the present studies, there were incorporated with the vibration frequency, and intensity, in particularly, few reports about the mechanism of vibration to bone. It will provide theoretic foundation for further systematic, sound research and its clinical application.


Subject(s)
Animals , Humans , Biomechanical Phenomena , Bone Diseases , Therapeutics , Bone and Bones , Physiology , Musculoskeletal Manipulations , Osteogenesis , Vibration , Therapeutic Uses
3.
Chinese Journal of Rehabilitation Theory and Practice ; (12): 336-338, 2006.
Article in Chinese | WPRIM | ID: wpr-974124

ABSTRACT

@#ObjectiveTo analysis the clinical features of thoracic spine and spinal cord injury (SCI) and summarize the inclusive standard of cellular transplant clinical trial for SCI.MethodsThe data of 72 cases with thoracic spine and spinal cord injury from 1990 to 2005 were analyzed retrospectively.ResultsMean follow-up period was 20 months (6~48 months). There was no recovery in 12 spinal cord injury without radiographic abnormality (SCIWORA) patients, but improvement of urine function in 4 cases. 5 cases of 52 fracture-dislocation complete injury were improved to grade B (sense recovery), rate of recovery was 9.6%; recovery rate was 62.5% in incomplete injury. Sense recovery of all cases was better than motor recovery. Partial cases appeared spasm paralysis relief.ConclusionIncidence rate of complete injury is high and recovery is bad in thoracic spine and spinal cord injury. The inclusive standard of cellular transplant clinical trial for SCI is old complete thoracic spinal cord injury without residual compression.

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