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1.
Chinese Journal of Biochemistry and Molecular Biology ; (12): 204-210, 2022.
Artigo em Chinês | WPRIM | ID: wpr-1015755

RESUMO

Graduate education emphasizes the development of students’ scientific research andinnovation abilities. Literature reading and discussion (LRD) plays an active role in the development ofinnovative thinking and critical thinking for graduate students. However, in traditional, large molecularbiology classes, the effective implementation of large-scale, collective LRD presents a great challenge. Mosoteach is a cloud-based free app designed specifically for education with powerful human-computerinteraction and human-human interaction functions. In the present study, LRD was introduced into amolecular biology course for graduate students and was conducted via the Mosoteach app. The onlinediscussion board in the Mosoteach cloud class was restricted to enrolled students and was designated theprivate online discussion board (PODB). The PODB built a sense of community for students and was aneffective approach for organizing and facilitating discussion in large classes. Small-group learning in LRDwas helpful to understand the literature and foster collaboration and discussion. Overall, we demonstratedthat Mosoteach-based LRD was helpful in improving student learning outcomes. The relationship betweenstudent learning style and engagement, satisfaction and academic performance in cloud classes meritsfurther investigation.

2.
Chinese Journal of Industrial Hygiene and Occupational Diseases ; (12): 645-647, 2010.
Artigo em Chinês | WPRIM | ID: wpr-313499

RESUMO

<p><b>OBJECTIVE</b>To explore the biomarker of manganese exposure by analyzing the relationship between manganese exposure and concentration in some biomaterials.</p><p><b>METHODS</b>The air samples were collected through the individual air sample. According to the manganese levels in the air, workers were assigned to control group, low concentration group and high concentration group, and manganese in the hair, urine, serum, blood cell and saliva from different group were measured respectively. The correlations between concentration of external manganese exposure and manganese concentrations in biomaterials, and years of employment and concentrations in biomaterials were analyzed.</p><p><b>RESULTS</b>In the high concentration group, saliva manganese was 32.17 µg/L, hair manganese was 37.39 mg/kg, urine manganese was 2.50 µg/L, plasma manganese was 29.61 µg/L, blood manganese was 14.49 µg/L, were higher than those in the control group (10.40 µg/L, 1.60 mg/kg, 0.77 µg/L, 10.30 µg/L, 4.56 µg/L respectively) (P < 0.01). The manganese concentration in the saliva was significantly correlated with airborne manganese concentration (r = 0.649, P < 0.01), with the years of employment (r = 0.404, P < 0.01), with the total exposure of manganese (r = 0.342, P < 0.01), with the manganese concentration of plasma (r = 0.303, P < 0.01) and with the manganese concentration in blood cells (r = 0.359, P < 0.01), respectively.</p><p><b>CONCLUSIONS</b>The concentration of manganese in saliva could work as a biomarker of manganese internal exposure.</p>


Assuntos
Adulto , Humanos , Pessoa de Meia-Idade , Adulto Jovem , Poluentes Ocupacionais do Ar , Biomarcadores , Cabelo , Química , Manganês , Sangue , Urina , Intoxicação por Manganês , Exposição Ocupacional , Saliva , Química
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