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Biomedical subjects

O Fischer

Publications and source records attributed to O Fischer.

At least 37 records · Page 2Linked to original sources

Survival of DNA HLA-DR typed and matched cadaver kidney transplants. The Collaborative Transplant Study.

The clinical value of serological HLA matching for cadaver kidney transplantation remains uncertain because the success rate for HLA-matched cadaver transplants is lower than that of HLA-matched sibling grafts. Up to 25% of serological HLA-DR typings may be incorrect when compared with a more accurate DNA-RFLP method, and we have now examined whether incorrect HLA-DR typings account for the lower than expected success rates of HLA-matched cadaver transplants. 58 transplant centres took part in this study and DNA was extracted from over 4000 samples of frozen tissue at the study centre. 8 laboratories then completed blind RFLP typing for HLA-DR. Serological typing data were reported by individual transplant laboratories. 29 of 107 transplants (27%) that were reported as HLA A, B, DR compatible and 76 of 273 (28%) transplants that were reported as HLA B, DR compatible according to serological typing were found to be HLA-DR mismatched by DNA typing. The one-year transplant success rate for DNA-matched HLA, A, B, DR grafts was 87% compared with 69% for mismatched grafts (p less than 0.02); the corresponding success rate for DNA-matched HLA B, DR grafts was 85% compared with 72% for mismatched grafts (p less than 0.01). Many transplants that were previously thought to be HLA matched are mismatched, and this finding may account for previously unexplained graft failures.

Cadaver↗

Contextual pathognomony: a computationally useful extension of pathognomony.

Lack of adequate focus in problem-solving is a common problem in abductive expert systems. Pathognomonic findings could theoretically provide such focus, but their rarity in most domains makes the concept computationally useless. Pople's concept of constrictor is a useful extension of the concept of pathognomony. By relaxing the focus from a disease to a class of disease, constrictors have less theoretical power than pathognomonic symptoms, but they are more ubiquitous, thus more computationally useful. Similarly, this paper introduces the concept of contextual pathognomony. Contextual pathognomony is an extension of pathognomony that takes into account the current diagnostic context. Like constrictors, contextual pathognomony is more ubiquitous, thus more computationally useful, than pathognomony. Following the description of this new concept, this paper reports and analyses an experiment showing the existence and utility of contextual pathognomony in providing focus to abductive reasoning in the domain of alloantibody identification.

Coombs Test↗

RedSoar--a system for red blood cell antibody identification.

The primary goal of our research is to build an intelligent tutoring system for red blood cell antibody identification. In this paper, we describe the basis for a tutoring system--an expert system called RedSoar. RedSoar is built from two task-specific architectures that were designed for building flexible systems (i.e. systems that can use a variety of problem-solving strategies, and to which knowledge can easily-be added). RedSoar solves the antibody identification task correctly 81% of the time and new knowledge can be added in a straightforward manner. The system is capable of exhibiting human-like behavior which we believe is a necessary condition for building a successful tutoring system.

Blood Grouping and Crossmatching↗

Detection of mycoplasmas in cell cultures, using L6M, containing 6-methylpurine deoxyriboside.

Methods for the detection of mycoplasmas in cell cultures with 6MPDR are rapid and inexpensive and do not require special skill in the mycoplasma culturing. Properties of L6M, a dry, lyophilised, sterilised, and thermostabile reagent containing 6MPDR, are described. Its diagnostic value is comparable to that of the liquid, 6MPDR containing reagent MycoTect requiring storage at -70 degrees C.

Animals↗