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71.
Tierney Kinnison Neil David Forrest Stephen Philip Frean Sarah Baillie 《Anatomical sciences education》2009,2(6):280-285
Traditional methods of teaching anatomy to undergraduate medical and veterinary students are being challenged and need to adapt to modern concerns and requirements. There is a move away from the use of cadavers to new technologies as a way of complementing the traditional approaches and addressing resource and ethical problems. Haptic (touch) technology, which allows the student to feel a 3D computer‐generated virtual environment, provides a novel way to address some of these challenges. To evaluate the practicalities and usefulness of a haptic simulator, first year veterinary students at the Royal Veterinary College, University of London, were taught basic bovine abdominal anatomy using a rectal palpation simulator: “The Haptic Cow.” Over two days, 186 students were taught in small groups and 184 provided feedback via a questionnaire. The results were positive; the majority of students considered that the simulator had been useful for appreciating both the feel and location of key internal anatomical structures, had helped with their understanding of bovine abdominal anatomy and 3D visualization, and the tutorial had been enjoyable. The students were mostly in favor of the small group tutorial format, but some requested more time on the simulator. The findings indicate that the haptic simulator is an engaging way of teaching bovine abdominal anatomy to a large number of students in an efficient manner without using cadavers, thereby addressing some of the current challenges in anatomy teaching. Anat Sci Educ 2: 280–285, 2009. © 2009 American Association of Anatomists 相似文献
72.
The Influence of CASE on Scientific Creativity 总被引:1,自引:0,他引:1
This paper describes a study of the influence of the Cognitive Acceleration through Science Education (CASE) programme on the scientific creativity of secondary school students. 1087 pupils from six suburban mixed comprehensive schools in England took part in the investigation. Three of the schools had participated in the CASE programme and three had not. Samples of students in years 7–11 from each school were given the Scientific Creativity Test for Secondary School Students, an instrument designed to tap various aspects of scientific creativity. The results indicated that the CASE programme did promote the overall development of scientific creativity of secondary school students, although the effects on different aspects of scientific creativity varied. As expected from previous work on delayed effects of CASE on academic achievement, the results indicated that the effects on creativity were not necessarily immediate, but tended to be long-lasting. Possible interpretations of these results are discussed. 相似文献
73.
Philip Chambers 《British journal of educational technology : journal of the Council for Educational Technology》1997,28(1):31-39
Ten pupils with moderate learning difficulties worked on a series of mathematics related activities while visiting a school providing a whole range of multi-media. The investigation suggests that IV has a particular contribution to make in meeting special educational needs. In addition to specific benefits in the teaching and learning of mathematics, the technology proved to be a facilitator in the areas of geography and life skills. There was also some evidence to suggest that IV can help to raise self-esteem, provide equal opportunities and support collaborative learning. Sense of ownership, language development and motivational characteristics, together with the promotion of attention and the accompanying benefit for teachers of the reduction of anxiety over discipline, are other factors suggesting the usefulness of the medium in this context. 相似文献
74.
Approaches to classroom instruction have evolved considerably over the past 50?years. This progress has been spurred by the development of several learning principles and methods of instruction, including active learning, student-centered learning, collaborative learning, experiential learning, and problem-based learning. In the present paper, we suggest that these seemingly different strategies share important underlying characteristics and can be viewed as complimentary components of a broader approach to classroom instruction called transformational teaching. Transformational teaching involves creating dynamic relationships between teachers, students, and a shared body of knowledge to promote student learning and personal growth. From this perspective, instructors are intellectual coaches who create teams of students who collaborate with each other and with their teacher to master bodies of information. Teachers assume the traditional role of facilitating students’ acquisition of key course concepts, but do so while enhancing students’ personal development and attitudes toward learning. They accomplish these goals by establishing a shared vision for a course, providing modeling and mastery experiences, challenging and encouraging students, personalizing attention and feedback, creating experiential lessons that transcend the boundaries of the classroom, and promoting ample opportunities for preflection and reflection. We propose that these methods are synergistically related and, when used together, maximize students’ potential for intellectual and personal growth. 相似文献
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