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R F Walters

Publications and source records attributed to R F Walters.

29 records · Page 2Linked to original sources

Modeling static and dynamic human cardiovascular responses to exercise.

A human performance model has been developed and described [9] which portrays the human circulatory, thermo regulatory and energy-exchange systems as an intercoupled set. In this model, steady state or static relationships are used to describe oxygen consumption and blood flow. For example, heart rate (HTRT) is calculated as a function of the oxygen and the thermo-regulatory requirements of each body compartment, using the steady state work values of cardiac output (CO, sum of all compartment blood flows) and stroke volume (SV, assumed maximal after 40% maximal oxygen consumption): HTRT=CO/SV. The steady state model has proven to be an acceptable first approximation, but the inclusion of transient characteristics are essential in describing the overall systems' adjustment to exercise stress. In the present study, the dynamic transient characteristics of heart rate, stroke volume and cardiac output were obtained from experiments utilizing step and sinusoidal forcing of work. The gain and phase relationships reveal a probable first order system with a six minute time constant, and are utilized to model the transient characteristics of these parameters. This approach leads to a more complex model but a more accurate representation of the physiology involved. The instrumentation and programming essential to these experiments are described.

Analog-Digital Conversion↗

Clinical ophthalmology instruction for medical students.

A ten-day ophthalmology clerkship for third-year medical students is described. The curriculum, detailed in a day-by-day syllabus, sets specific student goals, evaluates attainment of the goals by a pre-post test, utilizes a student-oriented study guide keyed to major textbrooks as core material with slide-tape and videotape supplements, and emphasizes daily supervised patient examinations. Constant modification of the clerkship on the basis of student assessment has sustained it as a popular workable clinical experience.

Audiovisual Aids↗

Microprocessors as intelligent front-end devices for medical-information systems.

Computer technology has produced increasingly powerful systems whose miniaturization has spawned the term microprocessor. The role of microcomputers is optimal if they are linked to larger systems in a distributed, hierarchical network with each element performing those functions for which it is best suited. Obstacles to the development of such a network include incompatibilities in operating systems, application languages, file structures, and communication protocols. Some attempts to address these problems are briefly reviewed. Given the availability on an effective distributed hierarchy of computers, the microprocessor can be useful in a number of functions requiring rapid response and limited access to large, central data files. Examples of such activities in the medical-information environment included program development and testing, forms entry, and text-management systems. With adequate attention to the systems support as well as the development of effective application techniques, the role of microprocessor-based intelligent terminals will inevitably expand rapidly in coming years.

Computers↗