Displaying publications 1 - 20 of 114 in total

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  1. Skokauskas N, Guerrero APS, Hanson MD, Coll X, Paul M, Szatmari P, et al.
    Acad Psychiatry, 2011 Jul-Aug;35(4):249-251.
    PMID: 21804045 DOI: 10.1176/appi.ap.35.4.249
    BACKGROUND/OBJECTIVE: Problem-based learning (PBL) represents a major development and change in educational practice that continues to have a large impact across subjects and disciplines worldwide. It would seem that child and adolescent psychiatry, because of its inherently integrative, bio-psycho-social nature and emphasis on teamwork and collaboration, would be a specialty learned optimally through PBL. Thus, there was a need to establish an international group where experiences in implementing PBL in child and adolescent psychiatry could be shared. This article reports on the first meeting and plans of the Problem-Based Learning in Child and Adolescent Psychiatry (CAP) Special Interest Study Group (SISG), held at the annual meeting of the American Academy of Child and Adolescent Psychiatry.

    METHODS: Through international collaboration and information-sharing, the SISG aims to promote knowledge among Child and Adolescent Psychiatrists on PBL, to explore evaluation methods of PBL in CAP, and to discuss development of PBL-based curricula.

    RESULTS: Problem-based learning (PBL) represents a major change in education that has had a large impact across disciplines worldwide.

    CONCLUSION: The core steps in PBL are the following: presentation of the initial problem; discussion of the problem, and development of learning objectives; independent learning focused on the objectives; and discussion, exploration of new ideas, and discovery of solutions in the reconvened group. Different from the traditional teacher's role, the PBL tutor is an active facilitator who guides learners to identify issues and ways to learn, rather than a "content expert" who provides facts.
    Matched MeSH terms: Problem-Based Learning*
  2. Sim SM
    Acta Pharmacol Sin, 2004 Sep;25(9):1209-19.
    PMID: 15339399
    Traditional pharmacology teaching has focused more on drug instead of therapeutics, such that although pharmacological knowledge is acquired, practical skills in prescribing remain weak. In Malaysia many new medical schools (both public and private) have been set up in the last 12 years due to a change in government policy, resulting in a wide spectrum of medical curricula. Universiti Malaya (UM) being the oldest medical school in Malaysia was deep set in its traditional way of teaching-learning, since its inception in 1962, until a visit from the General Medical Council of the United Kingdom in 1984 triggered off a change of tide. Since then the medical curriculum in UM has undergone two major revisions. The first revised curriculum (1988) aimed to inject more clinical relevance into basic science teaching, through introducing clinical lectures and skills in the paraclinical year. Professional behaviour was also addressed. The second revised curriculum (1998) sought to improve further the integration of knowledge as well as to produce a holistic doctor, viewing the patient as a person instead of a clinical entity. The teaching-learning of pharmacology has gradually moved from factual regurgitation to more clinical reasoning, from lab-based to more patient-oriented approach. As more new medical schools are being set up in Malaysia, exchange of experience in this area of learning will hopefully help us find a happy medium between "the old is best" and "the new is better" type approach so that a pedagogically sound and yet logistically practical curriculum can be found in our local setting, to help produce doctors with good prescribing practice.
    Matched MeSH terms: Problem-Based Learning*
  3. Seluakumaran K, Jusof FF, Ismail R, Husain R
    Adv Physiol Educ, 2011 Dec;35(4):369-77.
    PMID: 22139773 DOI: 10.1152/advan.00008.2011
    Educators in medical schools around the world are presently experimenting with innovative ways of using web-based learning to supplement the existing teaching and learning process. We have recently used a popular open-source course management system (CMS) called the modular object-oriented dynamic learning environment (Moodle) to construct an online site (DPhysiol) to facilitate our face-to-face teaching of physiology to a group of first-year students in the Bachelor of Medicine and Bachelor of Surgery program. The integration of the Moodle site into our teaching was assessed using online log activity, student examination marks, and feedback from students. The freely available Moodle platform was simple to use, helped to effectively deliver course materials, and has features that allowed cooperative learning. Students who used the CMS throughout their academic year and commented favorably regarding its use as a complement to the face-to-face classroom sessions. The group of students used the CMS obtained significantly higher scores in the final examination compared with the previous class that did not use the CMS. In addition, there was a significant correlation between student participation and performance in online quizzes and their final examination marks. However, students' overall online usage of the CMS did not correlate with their examination marks. We recommend Moodle as a useful tool for physiology educators who are interested in integrating web-based learning into their existing teaching curriculum.
    Matched MeSH terms: Problem-Based Learning*
  4. Prakash ES
    Adv Physiol Educ, 2010 Jun;34(2):93-6.
    PMID: 20522904 DOI: 10.1152/advan.00025.2010
    This study tested the possibility that interactive lectures explicitly based on activating learners' prior knowledge and driven by a series of logical questions might enhance the effectiveness of lectures. A class of 54 students doing the respiratory system course in the second year of the Bachelor of Medicine and Bachelor of Surgery program in my university was randomized to two groups to receive one of two types of lectures, "typical" lectures (n = 28, 18 women and 10 men) or "constructivist" lectures (n = 26, 19 women and 7 men), on the same topic: the regulation of respiration. Student pretest scores in the two groups were comparable (P > 0.1). Students that received the constructivist lectures did much better in the posttest conducted immediately after the lectures (6.8 +/- 3.4 for constructivist lectures vs. 4.2 +/- 2.3 for typical lectures, means +/- SD, P = 0.004). Although both types of lectures were well received, students that received the constructivist lectures appeared to have been more satisfied with their learning experience. However, on a posttest conducted 4 mo later, scores obtained by students in the two groups were not any different (6.9 +/- 3 for constructivist lectures vs. 6.9 +/- 3.7 for typical lectures, P = 0.94). This study adds to the increasing body of evidence that there is a case for the use of interactive lectures that make the construction of knowledge and understanding explicit, easy, and enjoyable to learners.
    Matched MeSH terms: Problem-Based Learning/methods*
  5. Tarmalinggam Y, Prakash ES
    Adv Physiol Educ, 2007 Dec;31(4):370-1.
    PMID: 18057413
    Matched MeSH terms: Problem-Based Learning
  6. Torke S, Abraham RR, Ramnarayan K, Upadhya S
    Adv Physiol Educ, 2007 Mar;31(1):118.
    PMID: 17327594
    Matched MeSH terms: Problem-Based Learning/methods*
  7. Balakrishnan S, Gopalakrishnan M, Alagesan M, Prakash ES
    Adv Physiol Educ, 2007 Mar;31(1):51-4.
    PMID: 17327583
    It is common to see chapters on acid-base physiology state that the goal of acid-base regulatory mechanisms is to maintain the pH of arterial plasma and not arterial Pco(2) (Pa(CO(2))) or plasma HCO(3). A hypothetical situation in which the Pa(CO(2)) of arterial plasma is 80 mmHg and the plasma HCO(3) concentration is 48 mM is presented and analyzed to get over this misconception. As per the modified Henderson equation, the pH of arterial plasma would be 7.4; however, we explain that this may be associated with intracellular acidosis due to intracellular hypercapnia and that derangement of homeostasis is evident from the occurrence of respiratory depression and, eventually, coma in the patient described. This suggests that the ultimate goal of acid-base regulatory mechanisms is not just the maintenance of the pH of arterial plasma but the maintenance of the steady-state pH of intracellular fluid as well.
    Matched MeSH terms: Problem-Based Learning*
  8. Nayak SB
    Adv Physiol Educ, 2006 Mar;30(1):48.
    PMID: 16481611
    Matched MeSH terms: Problem-Based Learning/methods*
  9. Mohandas Rao KG
    Adv Physiol Educ, 2006 Dec;30(4):262-263.
    PMID: 17108258
    Matched MeSH terms: Problem-Based Learning*
  10. Chandran DS, Muthukrishnan SP, Barman SM, Peltonen LM, Ghosh S, Sharma R, et al.
    Adv Physiol Educ, 2020 Dec 01;44(4):709-721.
    PMID: 33125254 DOI: 10.1152/advan.00128.2020
    Active learning promotes the capacity of problem solving and decision making among learners. Teachers who apply instructional processes toward active participation of learners help their students develop higher order thinking skills. Due to the recent paradigm shift toward adopting competency-based curricula in the education of healthcare professionals in India, there is an emergent need for physiology instructors to be trained in active-learning methodologies and to acquire abilities to promote these curriculum changes. To address these issues, a series of International Union of Physiological Sciences (IUPS) workshops on physiology education techniques in four apex centers in India was organized in November 2018 and November 2019. The "hands-on" workshops presented the methodologies of case-based learning, problem-based learning, and flipped classroom; the participants were teachers of basic sciences and human and veterinary medicine. The workshop series facilitated capacity building and creation of a national network of physiology instructors interested in promoting active-learning techniques. The workshops were followed by a brainstorming meeting held to assess the outcomes. The aim of this report is to provide a model for implementing a coordinated series of workshops to support national curriculum change and to identify the organizational elements essential for conducting an effective Physiology Education workshop. The essential elements include a highly motivated core organizing team, constant dialogue between core organizing and local organizing committees, a sufficient time frame for planning and execution of the event, and opportunities to engage students at host institutions in workshop activities.
    Matched MeSH terms: Problem-Based Learning
  11. Chandran DS, Muthukrishnan SP, Barman SM, Peltonen LM, Ghosh S, Sharma R, et al.
    Adv Physiol Educ, 2020 09 01;44(3):309-313.
    PMID: 32484399 DOI: 10.1152/advan.00050.2020
    Matched MeSH terms: Problem-Based Learning*
  12. Prashanti E, Ramnarayan K
    Adv Physiol Educ, 2019 Jun 01;43(2):99-102.
    PMID: 30835147 DOI: 10.1152/advan.00173.2018
    In an era that is seemingly saturated with standardized tests of all hues and stripes, it is easy to forget that assessments not only measure the performance of students, but also consolidate and enhance their learning. Assessment for learning is best elucidated as a process by which the assessment information can be used by teachers to modify their teaching strategies while students adjust and alter their learning approaches. Effectively implemented, formative assessments can convert classroom culture to one that resonates with the triumph of learning. In this paper, we present 10 maxims that show ways that formative assessments can be better understood, appreciated, and implemented.
    Matched MeSH terms: Problem-Based Learning/methods*; Problem-Based Learning/trends
  13. Lee Chin K, Ling Yap Y, Leng Lee W, Chang Soh Y
    Am J Pharm Educ, 2014 Oct 15;78(8):153.
    PMID: 25386018 DOI: 10.5688/ajpe788153
    To determine whether human patient simulation (HPS) is superior to case-based learning (CBL) in teaching diabetic ketoacidosis (DKA) and thyroid storm (TS) to pharmacy students.
    Matched MeSH terms: Problem-Based Learning/methods; Problem-Based Learning/standards*
  14. De Matteis CI, Randall MD, Harvey EJ, Morris A, Winkler GS, Boardman HF
    Am J Pharm Educ, 2019 Feb;83(1):6508.
    PMID: 30894766 DOI: 10.5688/ajpe6508
    Objective. To design an integrated dyspepsia module for first year pharmacy students that combines clinical and professional practice with fundamental sciences in five different science subject areas. Methods. The approaches used in designing this module are described with emphasis on strategies adopted to integrate science and practice, and the new ways of working adopted by the design team. Students' views and experiences of the module and its integration were explored using questionnaires. Results. A high proportion of students reported positive views and experiences of the module, the integration and its impact (as self-reported) on their learning and practice. The assessment of student performance indicated learning and attainment was at an appropriate level for a first-year module. Both the student grades and research results indicate a positive student learning experience. Conclusion. The dyspepsia module provides a flexible and effective template for the integration of science and practice in theme-based modules, with students reporting positively about the integration, including their perception of its contribution to improving their learning and understanding. New and more collaborative ways of working are required when designing integrated modules.
    Matched MeSH terms: Problem-Based Learning/methods*; Problem-Based Learning/organization & administration*
  15. Jacob SA, Dhing OH, Malone D
    Am J Pharm Educ, 2019 Apr;83(3):6597.
    PMID: 31065163 DOI: 10.5688/ajpe6597
    Objective. To determine the perceptions of lecturers toward case-based learning (CBL) and to elicit their feedback and opinions regarding the design of CBL sessions within the pharmacy curricula. Methods. One-on-one interviews were conducted with 10 academic staff members involved in teaching an undergraduate Bachelor of Pharmacy (BPharm) program. All sessions were audio-recorded and field notes were compiled. The recordings were transcribed, and thematic analysis of responses was performed. Results. Four key themes were identified: perceived benefits of CBL, challenges in implementing CBL within the curricula, characteristics of effective and engaging CBL, and relevance and implementation of CBL within the curriculum. Some of the specific benefits of CBL identified by participants included the applicability of knowledge learned to students' future role as pharmacists. Participants also identified challenges such as the design of CBL cases and course time constraints. Respondents also emphasized the need for more training for facilitators in how to design cases and facilitate sessions. Conclusion. While participants identified numerous benefits of CBL, they also identified challenges to implementing this learning method within the pharmacy school curriculum. Paying careful attention to selecting facilitators and providing appropriate facilitator training, in terms of facilitation and case design, is paramount in effectively implementing CBL sessions.
    Matched MeSH terms: Problem-Based Learning/methods*
  16. Lee SWH, Saw PS
    Am J Pharm Educ, 2021 Sep;85(8):8464.
    PMID: 34615624 DOI: 10.5688/ajpe8464
    Objective. To conduct an innovative workshop activity using plastic building blocks to create a student-centric environment that encouraged development of creative thinking skills and self-reflection in undergraduate pharmacy students.Methods. Students were randomly allocated into small groups of four and assigned the role of either architect or team builder and tasked with creating a LEGO robot. Students were not allowed to speak during the activity. The architect was tasked with providing instructions to team builders on how to build the robot using nonverbal communication. After completion of the task, each group was asked to reflect on the exercise and share what they learned with the entire class. These discussions were video recorded and thematically analyzed.Results. The metaphorical models that students built served as a basis for discussion, problem-solving, and decision-making. Students described how this activity enabled them to mentally and visually link abstract concepts, such as decision-making and problem-solving, to actual practice. Three themes were identified from the qualitative study: thinking with hands, listening with eyes; linking theory to practice; and learning through reflection.Conclusion. This activity offered a non-confrontational way to support communication and the learning process. The use of an interactive game can be a useful teaching strategy to create an active-learning environment, helping pharmacy students improve their social and cognitive skills, such as decision-making, problem-solving, and communication.
    Matched MeSH terms: Problem-Based Learning
  17. Abu Bakar YI, Hassan A, Yusoff MSB, Kasim F, Abdul Manan Sulong H, Hadie SNH
    Anat Sci Educ, 2021 Mar 01.
    PMID: 33650315 DOI: 10.1002/ase.2067
    To become skilled physicians, medical students must master surface anatomy. However, the study of surface anatomy is less emphasized in medical and allied health science curricula, and the time devoted to direct engagement with the human body is limited. This scoping review was designed to answer one research question: "What are the elements and strategies that are effective in teaching surface anatomy?" The review was performed using a five-stage scoping review framework, including research question identification, relevant study identification, study selection, data charting, and result collating and reporting. Three databases were searched using two search terms combined with a Boolean operator: "teaching" and "surface anatomy." The initial pool of 3,294 sources was assessed for duplication, and study eligibility was evaluated using inclusion and exclusion criteria. Data were abstracted from 26 original articles by one researcher and verified by two other researchers. A thematic analysis was performed, and several elements of effective teaching strategies for surface anatomy were identified, namely contextualized teaching, embracing experiential learning, and learning facilitation. This review revealed that a multimodal approach was most commonly used in surface anatomy instruction. Hence, future research should explore the effectiveness of multimodal teaching strategies that adopt the three aforementioned primary elements of effective teaching in an authentic learning environment. It is pertinent to clarify the effectiveness of these teaching strategies by evaluating their impact on student learning, organizational changes, and benefits to other stakeholders.
    Matched MeSH terms: Problem-Based Learning
  18. Ab Murat, N.
    Ann Dent, 2008;15(2):71-76.
    MyJurnal
    Teaching is a complex activity which consists not only of giving instructions but also promotion of learning. Different students have different preference for learning styles. Dental educators must therefore attempt to mix and match their methods of teaching to accommodate students with differing learning styles to provide an opportunity to maximize their learning. This paper aims to share the writer's experience and students' perceptions towards a different mode of teaching/learning method. The Jigsaw Classroom method was employed on University of Malaya's third-year dental students during their Water Fluoridation lecture. At the end of the session, students were asked to reflect upon the learning experience and to inscribe their feelings. Initially, students showed their resentment towards the new learning style but their resistance changed once they got into a group and started to learn from each other. In the reflective essay, most students expressed that learning through teaching and discussing as required in the Jigsaw method enhanced their understanding of the topic and they claimed that they were able to retain the information better. In this study, the Jigsaw method proved that learning in the lecture hall can be fun, educational and enriching.
    Matched MeSH terms: Problem-Based Learning
  19. Azer SA, Frauman AG
    Ann Acad Med Singap, 2008 Mar;37(3):204-9.
    PMID: 18392299
    For about 50 years, clinical pharmacology and therapeutics have been taught in the medical schools via traditional lectures and practical classes. During this time, significant changes have occurred in our understanding of medicine and basic sciences. Also the needs for our community have changed dramatically. The explosion of scientific discoveries, the use of new technologies in disease diagnosis, the availability of a wide range of therapeutic options, and the availability of knowledge to everyone via the Internet have necessitated new approaches for teaching medical and other health professional students. Finding information related to a topic has not become a priority in teaching, what has become more important is to teach undergraduate students how to think in addition to what to think. Applying information learnt and assessing its significance in real life situations has become mandatory. The aims of this paper were: (i) to discuss the model we used in introducing clinical pharmacology and therapeutics teaching in the undergraduate course at the University of Melbourne and the educational principles behind the model, and (ii) to discuss the new tools of assessment used in a problem-based learning (PBL) curriculum.
    Matched MeSH terms: Problem-Based Learning*
  20. Sim SM, Azila NM, Lian LH, Tan CP, Tan NH
    Ann Acad Med Singap, 2006 Sep;35(9):634-41.
    PMID: 17051280
    INTRODUCTION: A process-oriented instrument was developed for the summative assessment of student performance during problem-based learning (PBL) tutorials. This study evaluated (1) the acceptability of the instrument by tutors and (2) the consistency of assessment scores by different raters.

    MATERIALS AND METHODS: A survey of the tutors who had used the instrument was conducted to determine whether the assessment instrument or form was user-friendly. The 4 competencies assessed, using a 5-point rating scale, were (1) participation and communication skills, (2) cooperation or team-building skills, (3) comprehension or reasoning skills and (4) knowledge or information-gathering skills. Tutors were given a set of criteria guidelines for scoring the students' performance in these 4 competencies. Tutors were not attached to a particular PBL group, but took turns to facilitate different groups on different case or problem discussions. Assessment scores for one cohort of undergraduate medical students in their respective PBL groups in Year I (2003/2004) and Year II (2004/2005) were analysed. The consistency of scores was analysed using intraclass correlation.

    RESULTS: The majority of the tutors surveyed expressed no difficulty in using the instrument and agreed that it helped them assess the students fairly. Analysis of the scores obtained for the above cohort indicated that the different raters were relatively consistent in their assessment of student performance, despite a small number consistently showing either "strict" or "indiscriminate" rating practice.

    CONCLUSION: The instrument designed for the assessment of student performance in the PBL tutorial classroom setting is user-friendly and is reliable when used judiciously with the criteria guidelines provided.

    Matched MeSH terms: Problem-Based Learning/standards*
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