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1.
Chinese Journal of Medical Library and Information Science ; (12): 12-19, 2017.
Article in Chinese | WPRIM | ID: wpr-662104

ABSTRACT

A 3-dimensional top level structure module of literature characteristics, diagnosis and treatment process, and evidence level was established respectively for the information model of evidence-based medicine ( EBM) database by analyzing the demands of medical staff and investigating EBM-related standards and databases. The data sets and elements with their concepts subclassified were expressed under the top level module, and the se-mantic structure of data elements-expressed concept attributes was standardized, which showed that the semantic structure of information model for EBM database that was constructed with modularized method can help medical staff to manage and organize the clinical literature, retrieve and use the EBM information more effectively.

2.
Chinese Journal of Medical Library and Information Science ; (12): 12-19, 2017.
Article in Chinese | WPRIM | ID: wpr-659396

ABSTRACT

A 3-dimensional top level structure module of literature characteristics, diagnosis and treatment process, and evidence level was established respectively for the information model of evidence-based medicine ( EBM) database by analyzing the demands of medical staff and investigating EBM-related standards and databases. The data sets and elements with their concepts subclassified were expressed under the top level module, and the se-mantic structure of data elements-expressed concept attributes was standardized, which showed that the semantic structure of information model for EBM database that was constructed with modularized method can help medical staff to manage and organize the clinical literature, retrieve and use the EBM information more effectively.

3.
China Journal of Chinese Materia Medica ; (24): 776-785, 2016.
Article in Chinese | WPRIM | ID: wpr-230079

ABSTRACT

Through the markets investigations and literature surveying, this paper investigates and analyzes the qualitative characteristics and commodity condition of Panax notoginseng. And the samples collected from market and origin were analyzed in order to revise the commodity specification and grade standard of P. notoginseng combined with production practice. In this paper, the authors divide the P. notoginseng into 4 commodity specification which are root (including Cunqi and Dongqi ), Rhizome and rootlet according to different parts and harvest time. And the root were divided into 8 grade which are 20, 30, 40, 60, 80, 120, countless and substandard. The density and internal components between the different commodity specification and grade of P. notoginseng were also compared. As well as the effect of different producing area, cultivation years and harvesting time on the commodity specification and grade of P. notoginseng were researched. On this basis, we revise and improve the commodity specification and grade standard of P. notoginseng. Moreover, we suggest the quality control indexes of P. notoginseng should be developed according to the different medicinal part and commodity specification in CHP. In order to guide the standardized production of traditional Chinese medicine and ensure the quality of medicinal materials, the cultivation years and density of each medicinal materials should also be indicated in CHP.

4.
China Journal of Chinese Materia Medica ; (24): 2044-2048, 2016.
Article in Chinese | WPRIM | ID: wpr-236072

ABSTRACT

In order to provide a basis for establishing seed testing rules and seed quality standard of Bletilla striata, the seed quality of B.striata from different producing area was measured referring to the Rules for Agricultural Seed Testing(GB/T 3543-1995).The results showed that the seeds of B.striata passed through 20-mesh sieve for purity analysis.The weight of seeds was measured by 1000-seed method and the water content was measured at the higher temperature (133±2) ℃ for 3 hours.The seeds were cultured on the wet filter paper at 30 ℃ for 4-20 days in light for germination testing.The method of testing seed viability was that seeds were dipped into 1% TTC solution for 7 hours at temperature of 40 ℃.

5.
China Journal of Chinese Materia Medica ; (24): 572-579, 2014.
Article in Chinese | WPRIM | ID: wpr-300190

ABSTRACT

<p><b>OBJECTIVE</b>To study effects of different interval year on Panax notoginseng plant soils macro element content.</p><p><b>METHOD</b>The dynamic change of total N, P, K and available N, P, K in soil from Mabai, Matang, Gumu and Panlong was determined under different planting patterns (new soil, interval 5 years soil and continuous cropping soil).</p><p><b>RESULT</b>Contents order of soil total N, P and available N, P were interval 5 years soil > continuous cropping soil > new soil. No significant quarter change on soil total N was found, but the other three showed inverted "v" curve, and the peak value appeared on April 2010. Content of soil total K did not change significantly, but the available K content order was new soil > continuous cropping soil > interval 5 years soil, the quarter change was similar as soil available N or P. The soil total N, P, K and available N, P, K were different of the 4 monitoring sites under the 3 interval planting modes. There was a significant correlation between soil total P and available P under all these 3 interval planting modes, but N and K. The propitiation of N-P-K of new soil, interval 5 years soil and continuous cropping soil were 1: 0.4: 2.4, 1: 0.4:1.4, 1:0. 4:2.0, respectively.</p><p><b>CONCLUSION</b>Continuous cropping pattern induce the accumulation of P, but deficient of K. The imbalance proportion of N, P and K was one of the incentives of continuous cropping induced obstacles. Strengthen the research of optimum proportion of soil N, P and K, and then eliminate continuous cropping obstacles by means of formulated fertilization is the future research direction.</p>


Subject(s)
Agriculture , Methods , Breeding , China , Drugs, Chinese Herbal , Fertilizers , Nitrogen , Metabolism , Panax notoginseng , Chemistry , Metabolism , Phosphorus , Metabolism , Potassium , Metabolism , Quality Control , Soil , Chemistry
6.
China Journal of Chinese Materia Medica ; (24): 580-587, 2014.
Article in Chinese | WPRIM | ID: wpr-300189

ABSTRACT

<p><b>OBJECTIVE</b>To study effects of different interval year on Panax notoginseng plant soils middle and micro element content.</p><p><b>METHOD</b>The dynamic change of Ca, Mg, Mn, Cu, Zn, B from Mabai, Matang, Gumu and Panlong were determined under different planting patterns (new soil, interval 5 years soil and continuous cropping soil).</p><p><b>RESULT</b>All the micro elements (except Ca, Mg) of interval 5 years soil and continuous cropping soil were significantly higher than those of new soil. All the middle and micro elements (except B) of interval 5 years soil were significantly higher than those of the continuous cropping soil. Planting patterns had remarkable influence on the content of Mn, Cu, B, but not Zn Ca, Mg. Cu, Ca under the 3 planting patterns, and Zn under the continuous cropping pattern did not show significant quarter changes. B content increased with the elongation of implantation time. Zn in new soil and interval 5 years also increased with prolonging of planted time. Mg, Mn and Cu content reached to peak value on April next year, and reached to minimum on the end of this experiment. Compared with new soil, the proportion of Mn, Cu in total elements increased by 29%, 114%, Mg, B decreased by 18%, 38%, Zn and Ca changed slightly of interval 5 years soils; In continuous cropping soil, Mn, Cu and B increased by 50%, 120%, 22%, respectively, but Zn, Ca, Mg had no significant change.</p><p><b>CONCLUSION</b>Continuous cropping pattern could not induce the deficient of soil middle and micro elements, and thereafter might not result in continuous cropping obstacles. But the imbalance proportional of soil middle and micro elements in P. notoginseng plant soils may be one of the main reasons for continuous cropping obstacles.</p>


Subject(s)
China , Kinetics , Panax notoginseng , Soil , Chemistry , Time Factors , Trace Elements , Chemistry
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