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[Merits and demerits of laboratory automation system in medical practice (author's transl)].
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[Statistical analysis of clinical laboratory automation. On the viewpoint of technologist (author's transl)].
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[The problems of application of laboratory automation system to the hospital (author's transl)].
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Elimination of instrument-driven reflex manual differential leukocyte counts. Optimization of manual blood smear review criteria in a high-volume automated hematology laboratory.
Automated peripheral blood leukocyte differential counts (LDCs) are widely accepted in routine practice. However, many laboratories still reflexively perform manual LDCs based solely on abnormal automated results or instrument "flags," before any manual triage step. We describe our transition to a procedure that uses manual methods to validate, rather than to replace, automated LDCs (an approach recommended early in the development of automated methods, but still not used in many clinical laboratories). Manual microscopic scans were performed in lieu of manual LDCs. Each scan that revealed cell types not quantifiable by the instrument triggered a manual LDC. However, if the manual scan simply confirmed the cell types seen on automated LDC, then the automated result was released, even if clinically significant quantitative abnormalities were present. This policy reduced manual LDCs by more than 70% and was validated by a manual retrospective audit. Patient care and laboratory operations can be optimized by using manual microscopic examination as a validation procedure rather than as a reflexive substitute for automated methods. There is no clinical rationale for reflex performance of manual LDCs based solely on instrument warnings.
[Mastery of the automated laboratory].
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[Communication technology and laboratory automation].
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[Problems and possibilities of cooperation between the completely automated laboratory and the clinician].
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The future of laboratory automation.
Among the many factors that will define the laboratory of the future are the development of advanced computer communications systems, artificial intelligence, robotic systems, and material storage and retrieval systems. This article examines some of these factors and challenges current automation justification procedures in light of the greater competitive environment of today.
[Perspectives in laboratory automation. I].
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The role of the automated laboratory within a multiphasic health screening center.
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Versatile non-cycling programmer for automating laboratory procedures.
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[The current situation of clinical laboratory automation and its exploration on a preferred scheme].
This paper is to introduce the conception, basic constitution and working flow of laboratory automatic systems, and the domestic and world developments of the laboratory pipelining systems. It analyses the problems and the preferred scheme which should be given careful consideration when a system is to be built in the hospital.
[Application of microcomputers for totally automated laboratory systems].
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Total laboratory automation and diagnostic immunology.
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[Our way of thinking about clinical laboratory test-set by laboratory automation].
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[Laboratory automation in medical research].
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INVESTIGATION INTO THE SPECIAL PROGRAMMING NEEDS FOR AN AUTOMATED LABORATORY FOR PSYCHOLOGICAL RESEARCH. TECHN DOCUM REP ESD-TDR-63-353.
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