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Clinical Chemistry
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September 1, 1993
Diagnostic accuracy of pancreatic enzymes evaluated by use of multivariate data analysis
S C Kazmierczak, P G Catrou, F Van Lente
Clinical Chemistry
|
November 4, 1998
Simplified interpretative format for assessing test interference: studies with hemoglobin-based oxygen carrier solutions
S C Kazmierczak, P G Catrou, D Boudreau
Clinical Chemistry
|
April 1, 1995
Enzymatic markers of gallstone-induced pancreatitis identified by ROC curve analysis, discriminant analysis, logistic regression, likelihood ratios, and information theory
S C Kazmierczak, P G Catrou, F Van Lente
Archives of Internal Medicine
|
April 1, 1978
Creatine phosphokinase isoenzyme fractions in the serum of a patient struck by lightning
S J Harwood, P G Catrou, G W Cole
Journal of Medical Systems
|
December 1, 1985
Laboratory equipment maintenance contracts
D A Boudreau, W D Scheer, P G Catrou
Clinical Chemistry and Laboratory Medicine
|
April 25, 2000
Transient nature of interference effects from heterophile antibodies: examples of interference with cardiac marker measurements
S C Kazmierczak, P G Catrou, K P Briley
American Journal of Clinical Pathology
|
July 1, 1980
Clinical evaluation of an algorithm for interpreting biochemical profiles showing hyperbilirubinemia
P G Catrou, B E Crawford, M F Beeler
American Journal of Clinical Pathology
|
August 1, 1981
Ranking diagnostic protocols--a proposed process based on use of the nine-cell diagnostic decision matrix
R W Sappenfield, D A Boudreau, P G Catrou, et al.
American Journal of Clinical Pathology
|
June 1, 1981
Nine-cell diagnostic decision matrix. A model of the diagnostic process; a framework for evaluating diagnostic protocols
R W Sappenfield, M F Beeler, P G Catrou, et al.
American Journal of Clinical Pathology
|
April 1, 1986
A comprehensive evaluation of the performance of duplicate prothrombin time and activated partial thromboplastin time assays
W D Scheer, P G Catrou, G E Lipscomb, et al.
Page
of 3
Search research articles
Search
Showing results (11-20 of 24) with videos related to
Sort By:
Page
of 3
Clinical Chemistry
|
September 1, 1993
Diagnostic accuracy of pancreatic enzymes evaluated by use of multivariate data analysis
S C Kazmierczak, P G Catrou, F Van Lente
Clinical Chemistry
|
November 4, 1998
Simplified interpretative format for assessing test interference: studies with hemoglobin-based oxygen carrier solutions
S C Kazmierczak, P G Catrou, D Boudreau
Clinical Chemistry
|
April 1, 1995
Enzymatic markers of gallstone-induced pancreatitis identified by ROC curve analysis, discriminant analysis, logistic regression, likelihood ratios, and information theory
S C Kazmierczak, P G Catrou, F Van Lente
Archives of Internal Medicine
|
April 1, 1978
Creatine phosphokinase isoenzyme fractions in the serum of a patient struck by lightning
S J Harwood, P G Catrou, G W Cole
Journal of Medical Systems
|
December 1, 1985
Laboratory equipment maintenance contracts
D A Boudreau, W D Scheer, P G Catrou
Clinical Chemistry and Laboratory Medicine
|
April 25, 2000
Transient nature of interference effects from heterophile antibodies: examples of interference with cardiac marker measurements
S C Kazmierczak, P G Catrou, K P Briley
American Journal of Clinical Pathology
|
July 1, 1980
Clinical evaluation of an algorithm for interpreting biochemical profiles showing hyperbilirubinemia
P G Catrou, B E Crawford, M F Beeler
American Journal of Clinical Pathology
|
August 1, 1981
Ranking diagnostic protocols--a proposed process based on use of the nine-cell diagnostic decision matrix
R W Sappenfield, D A Boudreau, P G Catrou, et al.
American Journal of Clinical Pathology
|
June 1, 1981
Nine-cell diagnostic decision matrix. A model of the diagnostic process; a framework for evaluating diagnostic protocols
R W Sappenfield, M F Beeler, P G Catrou, et al.
American Journal of Clinical Pathology
|
April 1, 1986
A comprehensive evaluation of the performance of duplicate prothrombin time and activated partial thromboplastin time assays
W D Scheer, P G Catrou, G E Lipscomb, et al.
Page
of 3