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Implementing goals for non-cognitive outcomes within a basic science course.

OBJECTIVE: An essential principle of competency-based education (CBE) is use of observable outcomes with assessments as judgments of competence based on defined criteria. Faculty are accustomed to using learning objectives as the defining criteria for knowledge, assessing students using written exams. Faculty are less familiar with how the principles of CBE are applied to other competencies. We recently adopted school-wide goals and objectives, modeled after the ACGME Outcomes Project. The present objective was to give faculty first-hand experience in CBE within a basic science course, including both cognitive and non-cognitive outcomes. DESCRIPTION: The format for the learner-centered, first-year Cell and Molecular Biology course was previously described.(1) Course goals were that students: (1) gain an understanding of the principles and concepts of cell and molecular biology, (2) develop an appreciation for how these principles and concepts are important to medicine, (3) demonstrate an ability to think critically using these principles and concepts. Goal 1 was measured by written exams. We assumed goals 2 and 3 were met through small-group problem-solving sessions, and outcomes were not assessed. The revised 2001 course goals were to prepare students for medical knowledge and lifelong learning and communication and professionalism. The goals for medical knowledge and lifelong learning were to: (1) demonstrate ability to use principles and concepts of cell biology, molecular biology, and genetics to analyze medically relevant data, solve problems, make predictions, and determine a course of action; (2) effectively use information technology to search, evaluate, and critically review scientific evidence related to principles and concepts covered in the course; (3) use appropriate techniques to teach peers in a conference setting. The goals for communication and professionalism were to: (1) use appropriate skills and attitudes to collaborate effectively with peers and faculty to accomplish learning goals; (2) maintain a personal learning portfolio to develop habits of reflective learning, broaden understanding of content beyond recall, and enhance communication with faculty; (3) demonstrate personal integrity in meeting course requirements and in interactions with peers and faculty throughout the course. Goals for medical knowledge and lifelong learning were assessed by written exams and by separate tools utilizing four-point Likert scales (novice, advanced beginner, proficient, distinguished) with specific observable criteria for a written research paper and a group PowerPoint presentation. Faculty and student assessments generated a number that was combined with exam grades for a lettered competency grade. A 19-item, five-point Likert scale was used by students to self- and peer-assess goals for communication and professionalism. Small-group faculty facilitators used the tool to give formative feedback midcourse, summative feedback at course conclusion, and competency grades. The tools may be viewed at: . DISCUSSION: Faculty achieved enhanced understanding of students, assisted by descriptive criteria, while suggesting improvements in forms. Better agreement on criteria definitions and consistency in form use is needed. Students developed understanding and improved communication/professionalism skills, based on repeated exposures to criteria and feedback. It remains to be seen whether the skills are used/developed in other courses. A majority of students did not use the learning portfolio as envisioned. Better design and implementation of school-wide rather than course-specific reflective portfolios may increase use and integrate learning in all courses with all six competencies.

Cognition↗

Clinical science and human behavior.

The debate between mentalism/cognitivism and behaviorism is analyzed, and it is concluded that behaviorism is the philosophy more closely associated with psychology as a behavioral science, the cognitive approach being more closely aligned with biological science. Specific objections to mentalistic interpretations of behavioral phenomena are detailed, and examples from clinical psychology are used to show the importance of behavioral approaches in applied domains. It is argued that the relation between behavior theory and clinical psychology is critical to the continued advancement of applied psychology. Behavior analysis is offered as a direct, applied extension of behavior theory as well as a highly practical and effective approach for understanding, explaining, and modifying the factors that contribute to and maintain maladaptive behaviors.

Behavior↗

Criteria for classification of medical information.

Medical information, which is the central notion in medical informatics, covers a large scale of structures and forms. Several classifications are possible and two criteria have been used in this paper: structural level and informational level. According to structural level we can distinguish three major areas: bioinformatics and neuroinformatics for molecular/cellular level, medical informatics for individual level and health informatics for community level and healthcare units. According to informational level the terms of data and knowledge are used and the representative information for each structural level is analysed also from this point of view: Finally, information transfer from living systems to computers is also seen through the structural point of view.

Biological Science Disciplines↗

An attempt at creating the structure of andrological science.

The cognition and assessment of various spheres of behaviour and vital activity of man are possible only through a systemic approach to its study. It is necessary to point out the different levels of methodological approach to the problem of a successful development of andrology and to determine their tasks and limitations. The main sections of research of andrology must include: medico-biological, philosophic-anthropological, sociological, and psychological investigations of personality. Accordingly andrology is at a junction of the natural and social sciences, i.e. an interdisciplinary science.

Humans↗

[Modern theoretico-cognitive problems of medical science].

The paper presents the opinion that the medical science supported by theoretical generalizations is directed to mastering its scientific cognition, which will enable medicine to reach theoretical levels. In theoretical pathology, it is essential, as the first step, to define the concept of a disease in terms of dialectical materialism, to develop the concept of human disease, to apply the principles of dialectical determinism in a step-by-step fashion, to be critical in using reductionism and related scientific substantiation of strategies to solve health problems.

Humans↗

Transdisciplinary concepts and measures of craving: commentary and future directions.

A new theoretical model of craving is needed that uses a common language and standardized measures. The new conceptual model must fully integrate discoveries from cellular biology, neuroscience, animal and human laboratory, cognitive-behavioral social learning and socio-cultural disciplines. A transdisciplinary synthesis can then guide methods and measurement development. Mapping the structural pathways and interactions among mediators and moderators of craving will improve the diagnostic and prognostic tools in order to inform new treatments and prevention strategies.

Animals↗

Integrating science, practice and reflexivity--cognitive therapy with driving phobia.

The scientist-practitioner model has long been espoused within cognitive behavioural psychotherapy. The study includes an evaluation of the efficacy of cognitive therapy for driving phobia. Assessment, formulation and practical treatment of this common problem are also reported. Self-report measures evaluated results. Eight of the 10 consecutive cases improved significantly and reported that the intervention was acceptable. A reflexive analysis of the research findings and the influences on the first author's practice as a researcher and practitioner are also explored. Recommendations for future research are also made.

Accidents, Traffic↗

Shallow science or meta-cognitive insights: a few thoughts on reflection via bibliometrics.

The authors conclude this special issue by responding to the commentaries of their colleagues and reviewing relevant scholarship that appeared in the bibliometric literature since their literature reviews for the initial three articles in this issue were completed. They conclude, in part, that examination of bibliometric data regarding the entry of an article into the profession's knowledge base, and its ongoing life therein, may provide insights about the scientific communication process that lead to improvements of that process.

Bibliometrics↗

The science of education reform.

Much cognitive neuroscience has focused on determining how to improve learning. This research has promise to guide effective education reform, but future translation efforts must be evaluated as rigorously as basic science.

Cognitive Science↗

The information-processing approach.

The information-processing (IP) approach to perception and cognition arose as a reaction to behaviourism. This reaction mainly concerned the nature of explanation in scientific psychology. The "standard" account of behaviour, phrased in strictly external terms, was replaced by a "realist" account, phrased in terms of internal entities and processes. An analysis of the theoretical language used in IP psychology shows an undisciplined state of affairs. A great number of languages is simultaneously in use; no level of analysis is unambiguously referred to; and basic concepts such as information and processing remain largely undefined. Nevertheless, over the past 25 years the IP approach has developed into a disciplined and sophisticated experimental science. A look at actual practice hints at the basic reason for its success. The approach is not so much concerned with absolute or intrinsic properties of the human information processor, but with what can be called its relative or differential properties. A further analysis of this feature of the IP approach in terms of the formal language of a logical system makes explicit the basis of its success. The IP approach can be regarded as developing an empirical difference calculus on an unspecified class of objects, phrased in terms of a simulated "theory-neutral" observation language, and with operators that are structurally analogous to logical operators. This reinterpretation of what the IP approach is about brings a number of advantages. It strengthens its position as an independent science, clarifies its relation with other approaches within psychology and other sciences within the cognitive science group, and makes it independent of philosophical subtleties.

Cognition↗

Viewer- and object-centered mental explorations of an imagined environment are not equivalent.

In this study we compared viewer-centered (VC) with object-centered (OC) mental exploration of an imagined clock drawn on the ground. An upper case F portrayed on a computer screen was to be imagined standing up in the center of the clock. In Expt. 1, an adjustment task was used to verify that the discrimination of clock directions rendered by this perspective drawing was quite accurate. Precision was not affected by the imaginary size of the clock. In Expt. 2, subjects either (1) indicated the clock location pointed by the F given their viewing position (VC condition), or (2) their location at the periphery of the clock given the location pointed by the F (OC condition). Response latencies were proportional to the explored imaginary distance and increased with the size of the imagined environment. We found an additional mean processing time of at least 2 s in the OC condition with respect to the VC condition. Results are interpreted within Kosslyn's (Kosslyn, S.M., A cognitive neuroscience of visual cognition: further developments. In: R.H. Logie and M. Denis (Eds.), Mental Images in Human Cognition, Elsevier Science Publishers, Amsterdam, 1991, pp. 351-381 [17]) framework of cognitive neuroscience.

Adult↗

An integrative science approach: value added in stress research.

Integrative approaches to understanding complex health issues can transcend disciplinary and knowledge boundaries and provide opportunities to view phenomena from diverse perspectives. These broad approaches to understanding phenomena of interest to nursing might provide new directions for nursing research and be a requisite for delivering safe, responsible, and holistic nursing care. The relationship between stress and illness is a strong example of a field of study that can be understood more fully from an integrative perspective. The potential of an integrative approach to contribute to improvements in human health and well-being outweigh historical biases that have been associated with an integrative science approach.

Cognitive Science↗