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S B Thompson

Publications and source records attributed to S B Thompson.

4 recordsLinked to original sources

Influence of risk area size and location on native collateral resistance and ischemic zone perfusion.

To examine the effect of risk area size on collateral resistance and ischemic region perfusion, we produced different sized risk areas by occluding either the left anterior descending (LAD) or the circumflex (Cx) coronary artery at different sites. The most proximal occlusion of the LAD and Cx produced risk areas of 43 +/- 5 and 36 +/- 2% of left ventricular (LV) mass, respectively, whereas distal LAD and Cx occlusions produced risk areas of 13 +/- 2 and 17 +/- 2% of LV weight, respectively. Although total collateral flow was highest to the largest risk areas, collateral flow per 100 g of ischemic myocardium was 80% higher to the small LAD risk area compared with the large LAD risk area and 43% higher to the small Cx risk area compared with the large Cx risk area. Collateral resistance, calculated from the transcollateral pressure and perfusion per 100 g of myocardium was significantly lower in the small risk areas than in the large ones. We examined the effect of risk area location on collateral perfusion and resistance. Small risk areas (6% LV mass) were created near the base and at the apex of 10 hearts. Collateral flow per 100 g was 60% higher and transcollateral resistance per 100 g 50% lower at the apex than at the base. These experiments show that collateral resistance is influenced both by ischemic region size and location. Small risk areas receive more collateral flow per mass of tissue than large risk areas, and apical risk areas receive greater quantities of collateral flow than those located at the base.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

A system for rapidly converting quadriceps contraction to a digital signal for use in microcomputer-oriented muscle therapy and stroke patient assessment schedules.

A system for testing quadriceps performance is described involving a microcomputer, quadriceps switch, analogue-to-digital converter, electromyograph, and an interface unit that rapidly converts quadriceps contraction to a digital signal to be read by a microcomputer. A computer program, developed in response to a need for new patient assessment schedules in active rehabilitive therapy for strokes, tests the patient's control over function of the quadriceps muscle in the affected leg. The software is written in BBC BASIC and designed to run on an Acorn BBC Model 'B' microcomputer. Speed of interpretation of inputs is a few milliseconds.

Cerebrovascular Disorders