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1

Marcadé, G. "Tests de diagnostic rapide en bactériologie." Immuno-analyse & Biologie Spécialisée 28, no. 4 (August 2013): 167–73. http://dx.doi.org/10.1016/j.immbio.2013.03.008.

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2

Haddar, C., E. Begaud, J. Maslin, and Y. Germani. "Tests de diagnostic rapide des shigelloses." Bulletin de la Société de pathologie exotique 110, no. 1 (January 23, 2017): 1–8. http://dx.doi.org/10.1007/s13149-016-0538-6.

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3

Bertholom, Chantal. "Tests de diagnostic rapide de la tuberculose." Option/Bio 24, no. 486 (March 2013): 16–17. http://dx.doi.org/10.1016/s0992-5945(13)71222-4.

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4

Fagour, Laurence, Cristina Santamaria, and Raymond Césaire. "Les tests de diagnostic rapide dans le diagnostic des arboviroses." Revue Francophone des Laboratoires 2015, no. 474 (July 2015): 51–62. http://dx.doi.org/10.1016/s1773-035x(15)30201-x.

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5

Bertholom, Chantal. "Hémocultures à Gram positif : tests de diagnostic rapide." Option/Bio 24, no. 490-491 (May 2013): 17–18. http://dx.doi.org/10.1016/s0992-5945(13)71272-8.

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6

Cohen, R., L. Chaumette, E. Bingen, A. De Gouvello, and F. de La Rocque. "L'avenir dans l'angine : les tests de diagnostic rapide." Médecine et Maladies Infectieuses 27, no. 4 (April 1997): 424–33. http://dx.doi.org/10.1016/s0399-077x(97)80044-3.

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7

Robert, Raymond, Sandrine Nail-Billaud, and Nathalie Clément. "Les tests de diagnostic rapide en mycologie médicale." Revue Francophone des Laboratoires 2015, no. 474 (July 2015): 37–44. http://dx.doi.org/10.1016/s1773-035x(15)30199-4.

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8

Astier-Théfenne, Hélène, Fabrice Biot, Stanislas Rebaudet, Renaud Piarroux, and Eric Garnotel. "Tests de diagnostic rapide et grandes endémies bactériennes." Revue Francophone des Laboratoires 2015, no. 474 (July 2015): 63–75. http://dx.doi.org/10.1016/s1773-035x(15)30202-1.

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9

Martinot, A., M. Aurel, and F. Dubos. "Évaluation des performances des tests de diagnostic rapide." Archives de Pédiatrie 14, no. 6 (June 2007): 524–26. http://dx.doi.org/10.1016/j.arcped.2007.02.014.

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10

Lequien, Valérie. "Des tests de diagnostic rapide pour la légionellose ?" Option/Bio 19, no. 396 (March 2008): 1. http://dx.doi.org/10.1016/s0992-5945(08)70055-2.

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11

Houzé, S. "Les tests de diagnostic rapide pour le paludisme." Bulletin de la Société de pathologie exotique 110, no. 1 (February 2017): 49–54. http://dx.doi.org/10.1007/s13149-017-0549-y.

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12

Moulin, F., and D. Gendrel. "Paludisme d’importation : pièges diagnostiques et tests de diagnostic rapide." Archives de Pédiatrie 16 (October 2009): S89—S92. http://dx.doi.org/10.1016/s0929-693x(09)75308-4.

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13

Cohen, R. "Les tests de diagnostic rapide en pathologie infectieuse communautaire." Archives de Pédiatrie 7 (May 2000): 325s—327s. http://dx.doi.org/10.1016/s0929-693x(00)80087-1.

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14

Cohen, R. "Les tests de diagnostic rapide en pathologie infectieuse communautaire." Journal de Pédiatrie et de Puériculture 13, no. 7 (October 2000): 428–30. http://dx.doi.org/10.1016/s0987-7983(00)80040-7.

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15

Bourée, Patrice, and Nagirou Djibo. "Intérêt des tests de diagnostic rapide pour le paludisme." Option/Bio 20, no. 416 (April 2009): 22–23. http://dx.doi.org/10.1016/s0992-5945(09)70092-3.

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16

Cohen, J., C. Levy, M. Chalumeau, Ph Bidet, and R. Cohen. "Tests de diagnostic rapide dans les angines de l’enfant." Archives de Pédiatrie 21 (November 2014): S78—S83. http://dx.doi.org/10.1016/s0929-693x(14)72265-1.

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17

Dembele, P., M. Cissoko, A. Kone, A. Diarra, L. Doumbia, M. Magassa, M. Mehadji, M. Thera, and S. Ranque. "Performance des tests de diagnostic rapide pour le diagnostic du paludisme au Mali." Revue d'Épidémiologie et de Santé Publique 71 (May 2023): 101795. http://dx.doi.org/10.1016/j.respe.2023.101795.

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18

Lequien, Valérie. "Efficacité très variable des tests de diagnostic rapide du paludisme." Option/Bio 20, no. 420 (June 2009): 8. http://dx.doi.org/10.1016/s0992-5945(09)70164-3.

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19

Péluchon, Roseline. "Les bonnes performances des tests de diagnostic rapide du paludisme." Option/Bio 22, no. 462 (November 2011): 6. http://dx.doi.org/10.1016/s0992-5945(11)70894-7.

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20

Houzé, Sandrine, and Luc Paris. "Apport des tests de diagnostic rapide en parasitologie: intérêt et limites." Revue Francophone des Laboratoires 2015, no. 474 (July 2015): 29–36. http://dx.doi.org/10.1016/s1773-035x(15)30198-2.

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21

Biance-Valero, Élodie, Bruno Soullié, and Jean-Louis Koeck. "Les tests de diagnostic rapide et pathologies à pneumocoque et Legionella." Revue Francophone des Laboratoires 2015, no. 474 (July 2015): 77–82. http://dx.doi.org/10.1016/s1773-035x(15)30203-3.

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22

Faye, Adama, Papa Ndiaye, Maty Diagne-Camara, Ousseynou Badiane, Issa Wone, Mayassine Diongue, Ibrahima Seck, Anta Tal Dia, and Amadou Lamine Dia. "Évaluation économique des tests de diagnostic rapide dans le traitement du paludisme." Santé Publique 22, no. 6 (2010): 617. http://dx.doi.org/10.3917/spub.106.0617.

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23

Chabasse, Dominique. "Avant-Propos: Tests de Diagnostic Rapide en biologie 1. Applications en infectiologie." Revue Francophone des Laboratoires 2015, no. 474 (July 2015): 27–28. http://dx.doi.org/10.1016/s1773-035x(15)30197-0.

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24

Baudin, Bruno. "Les tests de diagnostic rapide en biochimie médicale : intérêts, limites et dangers." Revue Francophone des Laboratoires 2015, no. 475 (September 2015): 31–38. http://dx.doi.org/10.1016/s1773-035x(15)30247-1.

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25

Nau, Jean-Yves. "Résistances aux antibiotiques : deux tests de diagnostic rapide bientôt sur le marché." Revue Médicale Suisse 8, no. 359 (2012): 2034–35. http://dx.doi.org/10.53738/revmed.2012.8.359.2034.

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26

Kidwai, Aneela Altaf, Jamal Ara, Samina Ghaznawi, Shumaila Abdul Rasheed, Saleemullah Paracha, and Tahir Hussain. "DENGUE RAPID DIAGNOSTIC TESTS;." Professional Medical Journal 24, no. 08 (August 8, 2017): 1216–23. http://dx.doi.org/10.29309/tpmj/2017.24.08.995.

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Objectives: To determine the point of care role of dengue IgA and Dengue IgM/ IgG rapid diagnostic tests (RDTs) in a tertiary care setting in terms of day of onset of illness atpresentation and frequency of positive RDTs in dengue hemorrhagic fever (DHF) and dengueshock syndrome (DSS). Study Design: Cross-sectional study. Setting: Abbasi ShaheedHospital, Karachi. Period: August-2014 to January-2016. Method: Patients aged 13years andabove with acute febrile illness, fulfilling the WHO case definition criteria of probable DF andDHF were included. Two immunochromatograpic (ICT) based RDTs, Assure dengue IgA andPanbio Dengue Duo Cassette (IgM / IgG) were used. Dengue IgA was employed in all patientsfrom day 2 of illness whereas IgM / IgG was employed after day 4 of onset of fever. Result:Among 174 probable cases, 108 (62%) presented between 2 – 5 days of onset of fever, amongwhom 87 (80.5%) were found to be dengue IgA positive. Sixty-nine (39.65%) patients had DHF,among whom 97.1% were seropositive for IgA. Of 118 patients presented after 4 days of onsetof illness, 59.3% were positive by IgM / IgG rapid assay. Conclusion: Considering the higherfrequency of secondary dengue and DHF in dengue endemic-hyperendemic regions, IgAbased ICT might be a helpful diagnostic assay for early diagnosis of dengue infection.
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27

Wilson, M. L. "Malaria Rapid Diagnostic Tests." Clinical Infectious Diseases 54, no. 11 (May 1, 2012): 1637–41. http://dx.doi.org/10.1093/cid/cis228.

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28

Martin, P., A. Bocquet, C. Levy, J. Langue, A. Mosnier, and R. Cohen. "SFP-06 – Pathologie infectieuse – Tests de diagnostic rapide de la grippe chez l’enfant." Archives de Pédiatrie 15, no. 5 (June 2008): 924–25. http://dx.doi.org/10.1016/s0929-693x(08)72074-8.

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29

Portier, H., D. Peyramond, I. Boucot, C. Pribil, M. Grappin, and A. Chicoye. "Évaluation pharmaco-économique de l'usage des tests de diagnostic rapide dans l'angine de l'adulte." Médecine et Maladies Infectieuses 31, no. 7-8 (January 2001): 506–7. http://dx.doi.org/10.1016/s0399-077x(01)00260-8.

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30

D P, Danave, Kothadia S N, and Shaikh N K. "RAPID DIAGNOSTIC TESTS IN MALARIA." Journal of Evidence Based Medicine and Healthcare 1, no. 11 (November 11, 2014): 1362–68. http://dx.doi.org/10.18410/jebmh/2014/202.

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31

Visser, Theodoor, Jennifer Daily, Nora Hotte, Caitlin Dolkart, Jane Cunningham, and Prashant Yadav. "Rapid diagnostic tests for malaria." Bulletin of the World Health Organization 93, no. 12 (September 25, 2015): 862–66. http://dx.doi.org/10.2471/blt.14.151167.

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32

Storch, Gregory A. "Rapid diagnostic tests for influenza." Current Opinion in Pediatrics 15, no. 1 (February 2003): 77–84. http://dx.doi.org/10.1097/00008480-200302000-00013.

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33

Chen, Xiang-Sheng. "Rapid diagnostic tests for neurosyphilis." Lancet Infectious Diseases 13, no. 11 (November 2013): 918–19. http://dx.doi.org/10.1016/s1473-3099(13)70293-7.

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34

Bisoffi, Z., F. Gobbi, and J. Van den Ende. "Rapid diagnostic tests for malaria." BMJ 348, jun19 1 (June 19, 2014): g3846. http://dx.doi.org/10.1136/bmj.g3846.

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35

Douglass, C. W. "Evaluating Diagnostic Tests." Advances in Dental Research 7, no. 2 (August 1993): 66–69. http://dx.doi.org/10.1177/08959374930070021701.

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The presentations at this conference will discuss new technologies and rapid scientific developments that have resulted in new diagnostic tests for periodontal disease, musculoskeletal imaging, temporomandibular joint dysfunctions, and incipient coronal and root dental caries. However, for many of these claims, there has been insufficient scientific support regarding the sensitivity and specificity of the tests, or their ability to predict the percent of cases in which the disease or condition progresses to the next state of development. Research is needed that will yield the basic diagnostic parameters of new diagnostic tests, i.e., their accuracy, precision, sensitivity, specificity, positive predictive value, and negative predictive value. The purpose and methods for calculating each of these measures are described in this paper. Five questions are then presented that will need to be addressed in future research regarding new diagnostic tests: (1) Does the scientific theory of the test fit with our current body of knowledge? (2) Have the efficacy parameters of the test been reliably determined? (3) How does the test affect clinical decision-making? (4) Does using the test improve the patient's health? and (5) Is the added expense of the test justified by increased effectiveness or by avoiding other health expenditures?
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36

Lemaire, Guillaume, Florent Perrot, and Olivier Salat. "Les tests rapides d’analyses bactériologiques de lait à la ferme." Le Nouveau Praticien Vétérinaire élevages & santé 14 (November 2022): 40–43. http://dx.doi.org/10.1051/npvelsa/2023012.

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Le diagnostic rapide de l’étiologie des mammites représente un nouvel enjeu fondamental dans la maîtrise des infections mammaires en élevage. En effet, cette étape s’avère indispensable à la bonne utilisation des antibiotiques en élevage laitier. Non seulement, le diagnostic permet de n’utiliser les antibiotiques qu’à bon escient, leur emploi étant sans intérêt pour certaines étiologies, mais il permet également de cibler les thérapies avec des antibiotiques à spectre étroit, potentiellement moins générateurs de sélection d’antibiorésistance. Il existe actuellement 4 types de tests rapides permettant l’identification bactérienne en élevage, mais cette offre est appelée à très vite se développer. Les géloses multicompartimentées ont constitué le premier test disponible, mais plus elles permettent une identification précise, plus leur lecture demande une expérience avec laquelle la taille de nos élevages est peu compatible, sans parler de leur mise en œuvre pratique et de la gestion des déchets. Deux tests, le PétrifilmTM et le mastDecide®, sont plus simples d’emploi, mais n’offrent qu’une orientation diagnostique : absence de bactérie, Gram + ou Gram –. Enfin, il existe un appareil automatisé, le Mastatest®, très simple d’emploi, mais fournissant une identification relativement précise ainsi que des résultats d’antibiosensibilité vis-à-vis de 3 antibiotiques. Les avantages et les inconvénients de ces différents tests ainsi que leur positionnement sont abordés dans le texte.
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37

Segondy, Michel. "Les tests de diagnostic rapide des viroses respiratoires et des gastroentérites virales: intérêts et limites." Revue Francophone des Laboratoires 2015, no. 474 (July 2015): 45–50. http://dx.doi.org/10.1016/s1773-035x(15)30200-8.

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38

Wollner, A., C. Levy, M. Benani, F. Thollot, S. Béchet, J. Cohen, S. Bonacorsi, Ph Bidet, and R. Cohen. "Utilisation des tests de diagnostic rapide du streptocoque du groupe A en dehors de l’angine." Archives de Pédiatrie 21 (November 2014): S84—S86. http://dx.doi.org/10.1016/s0929-693x(14)72266-3.

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39

Foo, Hong, and Dominic Dwyer. "Diagnostic tests: Rapid tests for the diagnosis of influenza." Australian Prescriber 32, no. 3 (June 1, 2009): 64–67. http://dx.doi.org/10.18773/austprescr.2009.034.

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40

Chartrand, Caroline, Mariska M. G. Leeflang, Jessica Minion, Timothy Brewer, and Madhukar Pai. "Accuracy of Rapid Influenza Diagnostic Tests." Annals of Internal Medicine 156, no. 7 (April 3, 2012): 500. http://dx.doi.org/10.7326/0003-4819-156-7-201204030-00403.

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41

Bell, David, and Rosanna W. Peeling. "Evaluation of rapid diagnostic tests: malaria." Nature Reviews Microbiology 4, S9 (September 2006): S34—S38. http://dx.doi.org/10.1038/nrmicro1524.

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42

Herring, Alan, Ron Ballard, David Mabey, and Rosanna W. Peeling. "Evaluation of rapid diagnostic tests: syphilis." Nature Reviews Microbiology 4, S12 (December 2006): S33—S40. http://dx.doi.org/10.1038/nrmicro1563.

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43

Moody, Anthony. "Rapid Diagnostic Tests for Malaria Parasites." Clinical Microbiology Reviews 15, no. 1 (January 2002): 66–78. http://dx.doi.org/10.1128/cmr.15.1.66-78.2002.

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SUMMARY Malaria presents a diagnostic challenge to laboratories in most countries. Endemic malaria, population movements, and travelers all contribute to presenting the laboratory with diagnostic problems for which it may have little expertise available. Drug resistance and genetic variation has altered many accepted morphological appearances of malaria species, and new technology has given an opportunity to review available procedures. Concurrently the World Health Organization has opened a dialogue with scientists, clinicians, and manufacturers on the realistic possibilities for developing accurate, sensitive, and cost-effective rapid diagnostic tests for malaria, capable of detecting 100 parasites/μl from all species and with a semiquantitative measurement for monitoring successful drug treatment. New technology has to be compared with an accepted Rgold standardS that makes comparisons of sensitivity and specificity between different methods. The majority of malaria is found in countries where cost-effectiveness is an important factor and ease of performance and training is a major consideration. Most new technology for malaria diagnosis incorporates immunochromatographic capture procedures, with conjugated monoclonal antibodies providing the indicator of infection. Preferred targeted antigens are those which are abundant in all asexual and sexual stages of the parasite and are currently centered on detection of HRP-2 from Plasmodium falciparum and parasite-specific lactate dehydrogenase or Plasmodium aldolase from the parasite glycolytic pathway found in all species. Clinical studies allow effective comparisons between different formats, and the reality of nonmicroscopic diagnoses of malaria is considered.
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44

Uyeki, Timothy M., Keiji Fukuda, and Nancy J. Cox. "Influenza Surveillance with Rapid Diagnostic Tests." Clinical Infectious Diseases 34, no. 10 (May 15, 2002): 1422. http://dx.doi.org/10.1086/340268.

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45

Kundu, Ritabrata. "Rapid Diagnostic Tests in Childhood Infections." Indian Pediatrics 55, no. 3 (March 2018): 233–37. http://dx.doi.org/10.1007/s13312-018-1324-2.

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46

Thompson, C. A., and A. K. Boggild. "Rapid diagnostic tests for imported malaria." Canadian Medical Association Journal 186, no. 14 (June 30, 2014): E557. http://dx.doi.org/10.1503/cmaj.131794.

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47

Chandna, Anita, M. Nagaraj Rao, M. Srinivas, and S. Shyamala. "Rapid diagnostic tests in neonatal septicemia." Indian Journal of Pediatrics 55, no. 6 (November 1988): 947–53. http://dx.doi.org/10.1007/bf02727835.

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48

Baudin, Bruno. "Avant-Propos: Tests de Diagnostic Rapide en biologie : 2. Applications en biochimie, pharmacologie-toxicologie, hémostase, immunologie." Revue Francophone des Laboratoires 2015, no. 475 (September 2015): 29–30. http://dx.doi.org/10.1016/s1773-035x(15)30246-x.

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49

Keller, Laura, Stephan Cohen-Bacrie, and Marie-Françoise Prère. "Évaluation de trois tests de diagnostic rapide de Campylobacter jejuni et coli à partir d’échantillons fécaux." Pathologie Biologie 59, no. 1 (February 2011): 16–18. http://dx.doi.org/10.1016/j.patbio.2010.08.010.

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50

Kim, Jin Ju, Yonggeun Cho, and Sang-Guk Lee. "Evaluating the Diagnostic Performance of Two Rapid Influenza Diagnostic Tests." Laboratory Medicine Online 10, no. 2 (2020): 160. http://dx.doi.org/10.3343/lmo.2020.10.2.160.

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