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1.
Chinese Journal of General Surgery ; (12): 193-197, 2023.
Article in Chinese | WPRIM | ID: wpr-994562

ABSTRACT

Objective:To investigate the characteristics of primary catheter malposition (PCM) following totally implantable venous access port (TIVAP) implantation via the internal jugular vein (IJV) and management strategies.Methods:Clinical data of 587 consecutive breast cancer patients undergoing TIVAP implantation via the IJV performed by single team at the Department of Breast Surgery, the First Affiliated Hospital of Zhengzhou University from Aug 2017 to Aug 2022 was retrospectively analyzed.Results:A total of 593 TIVAP were implanted and PCM was found in 18 cases (3.0%). Four hundred and twenty five TIVAP were implanted via the right IJV with one PCM case (0.2%). One hundred and sixty eight TIVAP implantations were performed via the left IJV and PCM occurred in 17 cases (10.1%). The interventional management with a pigtail catheter was performed as a first-line strategy in 11 of the 18 PCM cases, with a success in 10 cases and failure in one. Three cases were successfully managed with the digital subtraction angiography (DSA)-guided open approach. Four cases underwent blind open procedure firstly and 2 suffered a failure.Conclusions:A higher incidence of PCM is found in TIVAP implantations via the left IJV than the right one. The interventional management with a pigtail catheter or the DSA-guided open procedure proves to be feasible for the correction of PCM.

2.
China Journal of Chinese Materia Medica ; (24): 2149-2154, 2009.
Article in Chinese | WPRIM | ID: wpr-307631

ABSTRACT

<p><b>OBJECTIVE</b>To provide more proofs for expounding the genetic relationships among the (varietal) species in genus Fritillaria from Sichuan province.</p><p><b>METHOD</b>The ISSR marker technique was used to study relationships and genetic polymorphism of nineteen populations in ten species and one varietal species of genus Fritillaria. Genetic similarities were calculated by using NTSYS software and the dendrogram was constructed by using UPGMA method.</p><p><b>RESULT</b>Eleven primers were selected from 35 ISSR primers, and 179 DNA fragments were amplified from 19 populations. Of which, 179 fragments were polymorphic (percentage of polymorphic bands was 86.8%). The genetic similarity among all accessions ranged from 0.569 to 0.855. Clustering analysis showed that the 19 populations of Fritillaria could be distinctively classified into 4 groups. F. cirrhosa, F. przewalskii, F. cirrhosa var. logirnectarea and F. dajitensis were in the first group; The second group was the cluster of F. cirrhosa and F. mellea (wild and cultivated species); The third group was F. sulcisquamosa, F. thunbergii, wabunesis and F. delavayi; F. hupehensis alone formed the fourth group.</p><p><b>CONCLUSION</b>ISSR marker technique is suitable for the genetic diversity of Fritillaria from Sichuan province. Interspecific identifications among the four original species of Bulhus Fritillariae Cirrhosae recorded by pharmacopoeia of China, and between them and the other species of genus Fritillaria from Sichuan province could not be gained by using ISSR markers technique. In addition, the cluster result of genus Fritillaria had some relationships with the geographical distribution.</p>


Subject(s)
China , Fritillaria , Classification , Genetics , Genetic Variation , Microsatellite Repeats , Phylogeny
3.
China Journal of Chinese Materia Medica ; (24): 2299-2304, 2009.
Article in Chinese | WPRIM | ID: wpr-307599

ABSTRACT

<p><b>OBJECTIVE</b>To study the relationships among the main agronomic characters, yield per plant,content of artemisinin of Artemisia annua, and provide the theoretical basis for breeding the A. annua varieties with high-yield and high artemisinin content.</p><p><b>METHOD</b>The main agronomic characters, yield per plant, artemisinin content of the wild and cultivated A. annua of Sichuan province were investigated and determined, and the correlated relationships among them were analyzed.</p><p><b>RESULT</b>It was showed that the weight of dried stem per plant had very significantly positive correlation with the yield per plant,and the number of primary branches, the diameter of stem had significantly positive correlation with the yield per plant. The flower bud stage, first flowering stage and full-bloom stage had significantly positive correlation with the artemisinin content. The first flowering stage and full-bloom stage had significantly positive correlation with the total artemisinin content per plant. The weight of dried stem per plant,the diameter of stem and the flower bud stage had significantly correlation with the total artemisinin content per plant. A. annua with the purple-stem had significant higher artemisinin content than that with the green-stem. Through the multiple regression analysis, the classic multiple regression equation of the yield per plant was gained as Y = 0.06121-0.000 08X(1) + 0.30378X(3) - 0.00051X(4) - 0.00031X5 (F = 20.15, P < 0.0001), the classic multiple regression equation of the artemisinin content as Y = -1.45849 - 0.00099X(1) - 0.24079X(3) + 0.13362X(6) - 0.00719X(7) + 0.01454X(9) (F = 46.55, P < 0.0001), the classic multiple regression equation of the total artemisinin content per plant as Y = -2.67001 - 0.00249X(1) + 0.98873X(3) + 0.30037X(6) + 0.113X(9) F = 22.62, P < 0.001).</p><p><b>CONCLUSION</b>The plant with purple, thick and strong stem, higher plant height, moderate primary branches number and bloom stage, small stem-branch angle should be selected for a breeding new A. annua varieties with high yield and artemisinin content.</p>


Subject(s)
Artemisia annua , Chemistry , Metabolism , Artemisinins , Metabolism , Biomass , China , Flowers , Chemistry , Metabolism
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