A novel and accurate diagnostic test for human African trypanosomiasis

[1]  E. Petricoin,et al.  Use of proteomic patterns in serum to identify ovarian cancer , 2002, The Lancet.

[2]  M. Dumas,et al.  Clinical aspects of human African trypanosomiasis , 1999 .

[3]  R. Newcombe Two-sided confidence intervals for the single proportion: comparison of seven methods. , 1998, Statistics in medicine.

[4]  P. Schellhammer,et al.  Serum protein fingerprinting coupled with a pattern-matching algorithm distinguishes prostate cancer from benign prostate hyperplasia and healthy men. , 2002, Cancer research.

[5]  D. Chan,et al.  Proteomics and bioinformatics approaches for identification of serum biomarkers to detect breast cancer. , 2002, Clinical chemistry.

[6]  Donald F. Specht,et al.  Probabilistic neural networks , 1990, Neural Networks.

[7]  D. Chan,et al.  Characterization of Renal Allograft Rejection by Urinary Proteomic Analysis , 2003, Annals of surgery.

[8]  Donato Malerba,et al.  A Comparative Analysis of Methods for Pruning Decision Trees , 1997, IEEE Trans. Pattern Anal. Mach. Intell..

[9]  P. Manson-Bahr,et al.  Manson's Tropical Diseases , 1929 .

[10]  Chi Hau Chen,et al.  Fuzzy logic and neural network handbook , 1996 .

[11]  J. Gouteux,et al.  Serodiagnosis of sleeping sickness in the Republic of the Congo: comparison of indirect immunofluorescent antibody test and card agglutination test. , 1988, Transactions of the Royal Society of Tropical Medicine and Hygiene.

[12]  S. Krishna,et al.  Human African trypanosomiasis , 2002, BMJ : British Medical Journal.

[13]  P. Schellhammer,et al.  Boosted decision tree analysis of surface-enhanced laser desorption/ionization mass spectral serum profiles discriminates prostate cancer from noncancer patients. , 2002, Clinical chemistry.

[14]  T. Yip,et al.  Comprehensive proteomic profiling identifies serum proteomic signatures for detection of hepatocellular carcinoma and its subtypes. , 2003, Clinical chemistry.

[15]  E. B. Wilson Probable Inference, the Law of Succession, and Statistical Inference , 1927 .

[16]  S. Krishna,et al.  Retaking sleeping sickness control in Angola , 2004, Tropical medicine & international health : TM & IH.

[17]  E. Fung,et al.  ProteinChip clinical proteomics: computational challenges and solutions. , 2002, BioTechniques.

[18]  M. Barrett,et al.  Waking up to sleeping sickness. , 2003, Trends in parasitology.

[19]  J. Shao Linear Model Selection by Cross-validation , 1993 .

[20]  P. Simarro,et al.  Attitude towards CATT‐positive individuals without parasitological confirmation in the African Trypanosomiasis (T.b. gambiense) focus of Quiçama (Angola) , 1999, Tropical medicine & international health : TM & IH.

[21]  W. Gibson,et al.  Progress in Human African Trypanosomiasis , 1999 .

[22]  A. Stanghellini,et al.  The situation of sleeping sickness in Angola: a calamity , 2001, Tropical medicine & international health : TM & IH.

[23]  E. Pays [Antigenic variation of African trypanosomes]. , 1990, Annales de parasitologie humaine et comparee.