1.Protocol of skills evaluation in basic life support education
Qi LI ; Chaozhi LUO ; Jin LIU ; Jing LIN ; Ping QING ; Tian XIA
Chinese Journal of Medical Education Research 2011;10(6):711-713
Basic life support ( BLS ) is a very important clinical skill for medical students. However,current BLS education is lack of proper BLS skills evaluation protocol to give educational feedback both to instructors and students. This article is aimed to discuss the necessity of protocol of skills evaluation in basic life support education for medical students prior to their internship.
2.Application of formative assessment in basic life support education and its reflection
Qi LI ; Jing LIN ; Hong XIAO ; Erli MA ; Peng LIANG ; Tingwei SHI ; Liqun FANG ; Chaozhi LUO ; Jin LIU
Chinese Journal of Medical Education Research 2013;(11):1088-1091
Objective To investigate the effect of formative assessment on skill acquisition of basic life support (BLS) among medical students. Methods Totally 206 undergraduates were ran-domized into control group (C group) and interventional group (F group). A BLS lecture was given in both groups. And then, 45 min BLS training and BLS skill assessment (after training) were given in C group. Undergraduates in F group received BLS skill assessment (formative assessment) before training, and 15 min feedback was delivered based on the assessment, then 30 min BLS training was conducted. Skills assessment was conducted again in F group after the training. Student's-t-test was used to compare the difference of skills between the two groups and P<0.05 signifies statistically sig-nificant differences. Results Score of F group (85.2±7.3) were higher than that in C group (68.2± 13.2), with statistical difference. Conclusion A formative assessment could significantly improve skill acquisition of BLS among medical students.
3.A Yeast BiFC-seq Method for Genome-wide Interactome Mapping
Shang LIMIN ; Zhang YUEHUI ; Liu YUCHEN ; Jin CHAOZHI ; Yuan YANZHI ; Tian CHUNYAN ; Ni MING ; Bo XIAOCHEN ; Zhang LI ; Li DONG ; He FUCHU ; Wang JIAN
Genomics, Proteomics & Bioinformatics 2022;20(4):795-807
Genome-wide physical protein-protein interaction(PPI)mapping remains a major chal-lenge for current technologies.Here,we reported a high-efficiency BiFC-seq method,yeast-enhanced green fluorescent protein-based bimolecular fluorescence complementation(yEGFP-BiFC)coupled with next-generation DNA sequencing,for interactome mapping.We first applied yEGFP-BiFC method to systematically investigate an intraviral network of the Ebola virus.Two-thirds(9/14)of known interactions of EBOV were recaptured,and five novel interactions were discovered.Next,we used the BiFC-seq method to map the interactome of the tumor protein p53.We identified 97 interactors of p53,more than three-quarters of which were novel.Furthermore,in a more complex background,we screened potential interactors by pooling two BiFC libraries together and revealed a network of 229 interactions among 205 proteins.These results show that BiFC-seq is a highly sensitive,rapid,and economical method for genome-wide interactome map-ping.