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D Naylor

Publications and source records attributed to D Naylor.

28 records · Page 2Linked to original sources

The effects of prenatal stress on rat offsprings' learning ability.

The present study (N = 30 female rats, 11 male rats) was conducted to determine the effects of prenatal stress on rat offsprings' learning ability. Pregnant mothers were stressed by exposure to an SD (light) which had been paired with shock. A second group of pregnant rats was handled an equivalent amount of time, and a third group received no treatment. The offspring of the three groups were tested on several learning tasks and the handled and stressed groups were found to be inferior to the control group on four of six learning measures.

Animals↗

Computer analysis and integration of animal pathology data.

Computer storage of data from toxicology, biochemistry, haematology and pathology has been found necessary in our Laboratory in order to handle the vast amount of information generated by animal toxicology studies. The value of the system to pathology is enormous and its potential has not been exhausted. All finding, from organ weights and macroscopic observations made at autopsy, to the final histopathological diagnosis made by the pathologist are computerized. A modified version of the American College of Pathologists' systematized nomenclature of pathology is used. The pathologist recordtor whose role in the system is indispensable. The designation of a pathologist with special responsibility for supervising the computerisation and its scientific validity ensures its smooth running. The integration of data from haematology and clinical chemistry as a profile for each animal is available to the pathologist when making the final diagnosis. The system has resulted in a standardisation of pathological terminology, greater speed and improved accuracy in report formulation, the establishment of a readily retrievable in-house data bank and an enormous saving in the time of pathologists and secretaries.

Humans↗

A data processing system for a group of three clinical chemistry laboratories. 1. Hardware and organisation.

A real time data processing system for a group of three clinical chemistry laboratories (one base and two satellite) has been developed as a successor to one used previously. This paper describes both the inadequacies of the previous worksheet-based system and the advantages of the new system, including flexibility, fast response and comprehensiveness, incorporating urgent routine and long delay (that is, endocrine) requests, and the use of a parallel flow work scheme.

Chemistry, Clinical↗

Membrane lesions in immune lysis: surface rings, globule aggregates and transient openings.

It is known that there are 100 A-wide circular structures associated with the erythrocyte membrane in immune lysis. To determine whether these structures were functional holes extending through the membrane, freeze-etch electron microscopy was carried out. Sheep erythrocytes incubated with either rabbit complement or rabbit antibody (anti-sheep erythrocyte antibody) did not hemolyze and did not reveal any abnormalities in freeze-etch or negative-stain electron microscopy. Erythrocytes incubated with both complement and antibody revealed rings on the extracellular surface (etch face) of the cell membrane. Allowing for the 30 A-thick Pt/C replica, the dimensions of the surface rings were similar to those seen by negative staining. The ring's central depression was level with the plane of the membrane; some rings were closed circles, others were crescent shaped. The cleavage face of the extracellular leaflet revealed globule aggregates, each aggregate appearing to be composed of about four fused globules. The cleavage face of the cytoplasmic leaflet was normal. When immune lysis was carried out in the presence of ferritin, ferritin was subsequently detected in all lysed erythrocytes. If ferritin was added after immune lysis was complete, only 15% of the cells were permeated by ferritin, indicating that transient openings exist in the cell membrane during immune lysis. No abnormal structures were detected when C6-deficient rabbit serum was used as a source of complement. It is concluded that antibody and complement produce surface rings, prelytic leakage of K(+), colloid osmotic swelling, membrane disruption, and membrane resealing; the surface rings persist after these events.

Animals↗