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1.
Huan Jing Ke Xue ; 40(8): 3530-3538, 2019 Aug 08.
Article in Zh | MEDLINE | ID: mdl-31854758

ABSTRACT

After the construction of the Xiangjiaba Dam, the hydrodynamic conditions, nutrient distributions, and transport conditions of the Jinsha River were changed. Here, the nutrient distribution characteristics and retention effects of Xiangjiaba Reservoir were investigated according to the results of water quality monitoring from 2015 to 2016. Spatial and temporal variations in TN, TP, SiO32-Si, and other nutrients, and retention flux and retention rate were analyzed. The results showed that the nutrient mass concentration of TN, TP, and SiO32--Si was 0.905 mg·L-1, 0.034 mg·L-1, and 7.98 mg·L-1, respectively. The distribution of TN was affected by point sources and the concentration of TN was large in urban areas. This distribution of TP was mainly granular and the mass concentrations decreased along the river path. The mass concentration of SiO32--Si did not significantly vary over time and space. Furthermore, Xiangjiaba Reservoir had a persistent effect on nutrient salts; the average annual retention of TN, TP, and SiO32--Si was 2.30×104 t·a-1, 0.146×104 t·a-1, and -2.4×104 t·a-1, respectively. During different seasons, the retention of TN and SiO32--Si varied between positive or negative; however, TP appeared to be consistent. The average monthly retention efficiency of TN, TP, and SiO32--Si was 17.5%, 32.8%, and -2.14%, respectively. Overall, retention efficiencies were higher during the dry season than that wet season, and phosphorus retention was most pronounced. The retention of TN in the reservoir may be related to denitrification and the input of external load; the flux of SiO32--Si was mainly affected by runoff; and the particle morphology of phosphorus, as well as reservoir period, were the main factors affecting TP retention. There were no clear correlations between nutrient retention and the mass concentrations of TN and SiO32--Si, but the nutrient retention effect of Xiangjiaba Reservoir reduced TP concentrations along the river path and increased TP concentration with vertical depth.

2.
Article in Zh | MEDLINE | ID: mdl-21180076

ABSTRACT

AIM: To study the effect of bupleurum root on epileptic seizure. METHODS: The rabbits and rats were injected by pilocarpine as epileptic models, and observed the effect of bupleurum on the electroencephalogram (EEG) and hippocampal slice by electroencephalograph and glass microelectrode extracellularly. RESULTS: The seizure time and duration of each major seizure of epilepsy were significantly shortened and the interval of seizure significantly prolonged (P < 0.05) after intraabdominal injection of bupleurum root. After instilling the injection of bupleurum root onto the slices could reduce the amplitude of evoked field potential in epileptic hippocampal slices remarkably, the average of fall is 20.41%, and restore in 6.86 minutes on average (P < 0.001). CONCLUSION: Bupleurum root can inhibit the brain electrical activities in epileptic model, it is suggest that bupleurum has the distinct effect of antiepilepsy.


Subject(s)
Brain/physiopathology , Epilepsy/physiopathology , Plant Extracts/pharmacology , Animals , Bupleurum , Disease Models, Animal , Electroencephalography , In Vitro Techniques , Rabbits , Rats , Rats, Wistar
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