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Biomedical subjects

R E Morley

Publications and source records attributed to R E Morley.

5 recordsLinked to original sources

Monitoring in-shoe plantar pressures, temperature, and humidity: reliability and validity of measures from a portable device.

OBJECTIVE: To investigate the reliability and validity of measures obtained from a portable electronic device used to monitor changes in plantar pressure, temperature, and humidity that occur within the shoe during prolonged activity. DESIGN: Descriptive study comparing electronic sensor output with criterion values. SETTINGS: Indoor level walkway for pressure data; uncontrolled, outdoor environment for step count data; enclosed environmental control chamber for humidity and temperature data. PARTICIPANTS: Convenience sample of 4 healthy, sensate subjects. INTERVENTIONS: Not applicable. MAIN OUTCOME MEASURES: Correlations between sensor output and criterion measures were determined for pressure and temperature data. The absolute differences between sensor output and criterion values of temperature, humidity, and step count were also determined. RESULTS: Pressure measurements from electronic sensors correlated highly with criterion values (r > or =.82), both before and after prolonged use. Relative humidity sensor output were within 5% of hygrometer values. In-shoe temperature data correlated highly with criterion values (r > or =.99), and differed from known temperatures by.50 degrees +/-.84 degrees C and.96 degrees +/- 1.56 degrees C at the forefoot and heel, respectively. Electronic step counts recorded at the central forefoot were within 1 step of visual step counts. Pressure tracings obtained from the device during different weight-bearing activities revealed qualitatively distinct pressure patterns. CONCLUSION: The device provides valid and reliable measures of in-shoe plantar pressures, temperature, and humidity during prolonged activity.

Diabetic Foot↗

In-shoe multisensory data acquisition system.

Patients with diabetes and peripheral neuropathy are susceptible to unnoticed trauma on the foot that can cause skin breakdown. We have designed an electronic system in a shoe that monitors temperature, pressure, and humidity, storing the data in a battery-powered device for later uploading to a host computer for data analysis. The pressure sensors are located at the heel, and under three metatarsal heads. Temperature sensors are located under the medial metatarsal head and under the heel. The humidity sensor is located in the toe of the shoe. Correlations of data from pressure sensors with known values were high (r > 0.85), even after extended use. Although data currently are being collected for descriptive purposes, the design potentially can be used to provide feedback to patients.

Data Display↗

Compliance with topical timolol treatment.

To determine if compliance with timolol treatment was better than compliance with pilocarpine treatment (as reported previously), we measured compliance with timolol treatment in a sample of 110 patients using an unobtrusive eyedrop medication monitor, which recorded electronically the date and time of each drug administration over a four- to six-week period. The patients administered a mean +/- S.D. of 82.7% +/- 19.0% of the prescribed timolol doses (range, 20% to 100%). Forty-five patients were treated concurrently with timolol and pilocarpine. These patients administered a mean +/- S.D. of 84.3% +/- 14.0% of the prescribed timolol doses and 77.7% +/- 18.7% of the prescribed pilocarpine doses (P = .012, van der Waerden test). Our results suggest that while compliance is influenced by the drug regimen, defaulting is not eliminated by prescribing a more convenient medication with fewer side effects.

Adolescent↗

Development of an ear-level digital hearing aid and computer-assisted fitting procedure: an interim report.

Recent progress on the development of an ear-level digital hearing aid is described. The work includes development of a body-wearable digital hearing aid and a computer-based hearing evaluation system that exploits the flexibility afforded by digital signal processing. The prescriptive criteria and fitting procedure used with the digital hearing aid are described briefly. Design considerations in the development of VLSI chips for an ear-level unit are discussed.

Audiometry↗