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Biomedical subjects

N G Kenyon

Publications and source records attributed to N G Kenyon.

5 recordsLinked to original sources

Continuous 24 hour ambulatory monitoring of intragastric pH in man.

A system has been developed which permits continuous 24 hour ambulatory recording of intragastric pH under near-physiological conditions. The system utilises a Cecar combination pH electrode connected through a pre-amplifier to an Oxford Medical Systems Medilog 4-24 cassette recorder, and the pH recorded continuously on to tape. The data is replayed at high speed, digitised and then analysed. Sources of error included system drift, system noise and the effect of changes in electrode environment due to saliva, food, loss of fluid contact, temperature variations and electrode time constant. These were found to be small. In contrast, the major changes in pH detected reflect real changes at the electrode tip. These changes can be recorded by the system. Developments in electronics and improvements in both the size and quality of pH electrodes, over the past few decades, has enabled intragastric pH recordings to be made with greater ease. However, a large number of investigators still assess gastric acidity by infrequent, intermittent sampling of gastric secretion through a naso-gastric tube. This new ambulatory system is a significant improvement and its versatility allows studies in acid secretion physiology, pharmacology and pathophysiology.

Electrodes

A microcomputer system for the identification of drug interactions.

The condition of critically ill patients may change rapidly. The consequent alterations in drug therapy may result from the advice of a number of specialists, some of whom may not be skilled in the problems of adverse drug interactions. As a result, screening for drug contra-indications by someone with the necessary experience often occurs after the patient has already received the drug. By providing information on drug interactions on an inexpensive microcomputer, the necessary screening for adverse interactions can take place before the administration of the drug. A software package, written in FORTRAN, which can handle the storage and retrieval of this type of information, is described. The system can assess up to 18 drugs simultaneously, from a data-base comprising the 102 stock drugs held by the Intensive Therapy Unit at Rotherham District General Hospital, together with 25 other drugs, which could interact with the stock drugs to produce serious or possibly fatal consequences. It also differentiates between therapeutic interactions and chemical or physical incompatibilities.

Computers