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Chuanlai Xu

Researcher at Jiangnan University

Publications -  729
Citations -  22485

Chuanlai Xu is an academic researcher from Jiangnan University. The author has contributed to research in topics: Medicine & Biology. The author has an hindex of 64, co-authored 439 publications receiving 16164 citations.

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Rapid, on-site quantitative determination of higenamine in functional food using a time-resolved fluorescence microsphere test strip.

TL;DR: In this paper , a highly-sensitive anti-HIG monoclonal antibody (mAb) was prepared and a time-resolved fluorescent microsphere immunochromatographic test strip (TRFM-ICTS) was established for the rapid quantitative detection of HIG in functional foods.
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A gold-based immunochromatographic strip for the detection of sirolimus in human whole blood.

TL;DR: An indirect enzyme-linked immunosorbent assay (ic-ELISA) and a colloidal gold-based immunochromatographic strip were developed to establish a rapid and efficient clinical screening of sirolimus.
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Interpretable clinical visualization model for prediction of prognosis in osteosarcoma: a large cohort data study

TL;DR: The clinical prediction model was built and visualized in this study, including a nomogram and a web calculator, which indicated very good consistency, predictive power, and clinical application value for osteosarcoma.
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A deep belief network-based clinical decision system for patients with osteosarcoma

TL;DR: In this article , the authors compared the performance of the deep belief networks (DBN) algorithm with six other machine learning algorithms, including Random Forest, XGBoost, Decision Tree, Gradient Boosting Machine, Logistic Regression, and Naive Bayes Classifier, to predict lung metastasis for Osteosarcoma patients.
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Detection of inflammatory bowel disease (IBD)-associated microRNAs by two color DNA-templated silver nanoclusters fluorescent probes.

TL;DR: In this article , a fluorescent probe for ulcerative colitis (UC) activity-associated two serum biomarkers (miR-23a and miR-223) simultaneous detection, which used multi-color fluorescent DNA-stabilized silver nanoclusters (DNA-AgNC) illuminated by a close guanine (G)-rich sequence as a signal transducer and two split DNA probes as recognition units.