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J Gener

Publications and source records attributed to J Gener.

26 records · Page 2Linked to original sources

Automation of a flocculation test for syphilis on Groupamatic equipment.

A flocculation reaction employing a cardiolipid antigen was used for syphilis screening on Groupamatic equipment in parallel with conventional screening reactions: Kolmer CF, RPCF, Kahn, Kline, and RPR. The positive samples were confirmed by FTA-200, FTA-ABS, TPI, and in some cases by TPHA. There were 5,212 known samples which had already been tested by all methods and of which 1,648 were positive, and 58,636 screened samples including 65 positives. Half of the samples in the first series were taken without anticoagulant; the remainder were collected in potassium EDTA. The percentage of false positives with the Groupamatic was about 1-4 per cent. The percentage of false negatives among positve (greater than or equal+) samples varied from 0-18 to 1-3 per cent.; on the other hand the sensitivity was less good for samples giving doubtful and/or dissociated reactions in conventional screening reactions. The specificity and sensitivity of this technique are acceptable for a blood transfusion centre. The reproducibility is excellent and the automatic reading of results accurate. Additional advantages are rapidity (340 samples processed per hour); simultaneous performance of eleven other immunohaematological reactions; no contamination between samples; automatic reading, interpretation, and print-out of results; and saving of time because samples are not filed sequentially and are automatically identified when the results are obtained. Although the importance of syphilis in blood transfusion seems small, estimates of the risk are difficult and further investigations are planned.

Autoanalysis↗

The groupamatic system for routine immunohematology.

Approximately 6000,000 routine immunohematological tests have been conducted with Groupamatic GC systems at the National Blood Transfusion Center in Paris. The system is used for determination of the ABO group including A1 and A2 subgrouping; the Rh factors including Du, C, c, E, e, CW;K;Lea; P1; M and N. The detection and identification of irregular alloantibodies is carried out systematically together with detection of the anti-A and anti-B antibodies. Simultaneously, testing for syphilis is done with a cardiolipid antigen. Groupamatic equipment allows 340 samples to be tested per hour and 12 reactions can be carried out simultaneously on each sample. The system is fully automated.

ABO Blood-Group System↗

Methods for analysis of the occurrence of abscess in patients with pancreatitis.

OBJECTIVE: Standard survival analysis methods are useful for data involving censored cases when cures do not generally occur. If the object is to study, for instance, the development of a complication in the progress of an infectious disease, some people may be cured before complications develop. In this article, we provide methods for the analysis of data when cures do occur. An example is a study of prognostic factors for pancreatic abscess in patients with pancreatitis, some of whom leave the risk set because the pancreatitis clears. DESIGN: We present methods for estimating the survival curves and comparing hazard function for two objectives: (1) the occurrence of an abscess, irrespective of whether the patients are cured or not, and (2) the occurrence of an abscess for patients who, at that stage, have not been cured. PATIENTS: We illustrate the applications of the methods using a sample of 50 patients with severe pancreatitis. RESULTS: To study the occurrence of an abscess, regardless of whether the patients are cured or not, we show that the appropriate strategy is to assign to the cured patients an infinite time to the appearance of an abscess. If the cured were considered censored at the moment the pancreatitis cleared, this would result in an overestimation of the hazard of presenting an abscess. On the other hand, if the objective is to compare the occurrence of abscess according to an exposure for patients who have not been cured, one needs to censor the cured patients at the time they are cured. CONCLUSIONS: For the analysis of survival data in the context of infectious diseases when cure is possible, it is important to use a censoring strategy that is pertinent to the specific aims of the study. Considering cures as censored at the time of cure is not always appropriate.

Abdominal Abscess↗