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1.
International Journal of Laboratory Medicine ; (12): 411-414, 2019.
Article in Chinese | WPRIM | ID: wpr-742933

ABSTRACT

Objective To study the relationship between the abnormal blood fat components and the serum hypersensitivity C reaction protein concentration and the progression of diabetic retinopathy.Methods Fundus examination was carried out to inpatients in the Department of Endocrinology in the hospital from From July 2015to July 2017.These patients were divided into three groups according to results of fluorescein sodium contrast:The non retinopathy group (group A) , the non proliferative retinopathy group (group B) , the retinopathy proliferative phase group (group C) .The content of blood fat component and serum hypersensitivity C reaction protein in the experimental cases were measured, and the ratio of TC/HDL-C was calculated.The statistic software of SAS9.4was used for statistical processing.Results The concentration of the serum hypersensitive C reaction protein in patients with diabetic retinopathy was significantly increased and the ratio of TC/HDL-C increased significantly (P<0.05) .The hs-CRP concentration and TC/HDL-C ratio of the three study groups were compared with those of the healthy control group:the difference was statistically significant (P<0.05) .Among them, the hs-CRP concentration and TC/HDL-C ratio of group A were compared with group B and group C respectively and the difference were statistically significant (P<0.05) .There was no significant difference in hs-CRP concentration and TC/HDL-C ratio between group B and group C (P>0.05) .Linear correlation analysis was used to analyze the concentration of serum hypersensitive C reaction protein and the ratio of TC/HDL-C.It was found that there was a positive correlation between them, and there was a positive synergistic effect.Conclusion The measurement of serum hypersensitive C reactive protein has important clinical value for the discovery, evaluation and prognosis of diabetic retinopathy.The abnormalities of the blood fat component reflected by the TC/HDL ratio are also an important factor in assessing the progression of diabetic retinopathy.

2.
Journal of Biomedical Engineering ; (6): 634-649, 2012.
Article in Chinese | WPRIM | ID: wpr-271719

ABSTRACT

The local field potentials (LFPs) underlying specific behavior were recorded and analyzed in this paper from primary motor cortex (M1) with several medium, such as the self-made single channel micro-electrodes, the system of multi-channels physiological signal acquisition and processing and so on. During the experiment, the specific behavior was divided into four periods according to the changes of the recorded LFPs and the changes of the specific behavior recorded simultaneously in rats. The four periods were named prophase of catching period, planning period, catching period and the completion period, respectively. Then several methods were used for the analysis of the LFPs by MATLAB, such as time domain analysis, power spectral distribution analysis and time-frequency analysis. The results suggested that the LFPs which were caused by different behavior from a large number of movement-related neurons of M1 during the specific behavior in the process of catching play an important part in the "code" guiding role in rats. The results demonstrat that the LFPs of M1 may provide a feasibility to discriminate the motor behavior of forelimb.


Subject(s)
Animals , Male , Rats , Brain-Computer Interfaces , Electrodes, Implanted , Evoked Potentials, Motor , Physiology , Feeding Behavior , Physiology , Microelectrodes , Motor Cortex , Physiology , Rats, Wistar
3.
Journal of Biomedical Engineering ; (6): 49-53, 2011.
Article in Chinese | WPRIM | ID: wpr-306624

ABSTRACT

Recording and extracting characteristic brain signals in freely moving animals is the basic and significant requirement in the study of brain-computer interface (BCI). To record animal's behaving and extract characteristic brain signals simultaneously could help understand the complex behavior of neural ensembles. Here, a system was established to record and analyse extracellular discharge in freely moving rats for the study of BCI. It comprised microelectrode and micro-driver assembly, analog front end (AFE), programmer system on chip (PSoC), wireless communication and the LabVIEW used as the platform for the graphic user interface.


Subject(s)
Animals , Rats , Behavior, Animal , Physiology , Brain , Physiology , Electroencephalography , Methods , Microelectrodes , Signal Processing, Computer-Assisted , Telemetry , User-Computer Interface
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