Using Digital Micro-network Interactive System to Improve the Quality of Experimental Teaching of Drosophila Salivary Gland Chromosomes

Huang Tiran, G. Bei, Lu Heshu, Huang Huang, Wang Cong, W. Shuying
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Abstract

Background: With the microscopic interactive system widely used in experiment teaching of Genetics, Botany, Cell biology, Medical morphology, etc., which are focused on the microscopic observation, Traditional experimental teaching mode is changed, experimental teaching efficiency and experimental teaching effect are improving. Objective: In order to improve the efficiency and effect of genetics experiment teachingthis, we introduce the digital micro-network interactive system into the genetics experiment teaching. Method: We implemented the observation and preparation techniques of Drosophila salivary gland chromosomes from teaching organization, implementation of the experiment, using the digital micro-network interactive system. And the application effect of microinteractive system in chromosome section of Drosophila salivary gland is analyzed. Result: The results showed that the microscopic interaction system could improve the efficiency and effectiveness of the interaction between teachers and students, stimulate the students' experimental interest. Especially, the success rate of salivary gland chromosome is increased by more than 20%. Conclusion: The application of micro-interactive system has indeed revolutionized the traditional experimental teaching mode to a certain extent. It closely relies on modern information technology and forms a new experimental teaching mode for the cultivation of genetically innovative talents, which characterize by zero barriers in teacher-student interaction, zero distance in resource sharing and zero gap in real-time monitoring.
利用数字微网络交互系统提高果蝇唾液腺染色体实验教学质量
背景:随着微观交互系统在遗传学、植物学、细胞生物学、医学形态学等以微观观察为主的实验教学中的广泛应用,传统的实验教学模式发生了改变,实验教学效率和实验教学效果都在提高。目的:为了提高遗传学实验教学的效率和效果,将数字微网络交互系统引入遗传学实验教学中。方法:从教学组织、实验实施、数字微网络交互系统等方面,实现了果蝇唾液腺染色体的观察和制备技术。并分析了显微交互系统在果蝇唾液腺染色体切片中的应用效果。结果:微观互动系统可以提高师生互动的效率和效果,激发学生的实验兴趣。特别是唾液腺染色体的成功率提高了20%以上。结论:微交互系统的应用在一定程度上改变了传统的实验教学模式。紧密依托现代信息技术,形成了师生互动零壁垒、资源共享零距离、实时监控零差距的新型基因创新人才培养实验教学模式。
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