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Items: 1 to 20 of 136

1.

Molecular Detection of Streptococcus pneumoniae on Dried Blood Spots from Febrile Nigerian Children Compared to Culture.

Iroh Tam PY, Hernandez-Alvarado N, Schleiss MR, Hassan-Hanga F, Onuchukwu C, Umoru D, Obaro SK.

PLoS One. 2016 Mar 23;11(3):e0152253. doi: 10.1371/journal.pone.0152253. eCollection 2016.

2.

Detection of Streptococcus pneumoniae from culture-negative dried blood spots by real-time PCR in Nigerian children with acute febrile illness.

Iroh Tam PY, Hernandez-Alvarado N, Schleiss MR, Yi AJ, Hassan-Hanga F, Onuchukwu C, Umoru D, Obaro SK.

BMC Res Notes. 2018 Sep 10;11(1):657. doi: 10.1186/s13104-018-3770-2.

3.

[Comparison of culture and real-time PCR methods in the detection of Streptococcus pneumoniae and Haemophilus influenzae in acute otitis media effusion specimens].

Eser OK, Alp S, Ergin A, Ipçi K, Alp A, Gür D, Hasçelik G.

Mikrobiyol Bul. 2012 Oct;46(4):676-81. Turkish.

PMID:
23188581
4.

Evaluation of the Clinical Utility of a Real-time PCR Assay for the Diagnosis of Streptococcus pneumoniae Bacteremia in Children: A Retrospective Diagnostic Accuracy Study.

Murphy J, O' Rourke S, Corcoran M, O' Sullivan N, Cunney R, Drew R.

Pediatr Infect Dis J. 2018 Feb;37(2):153-156. doi: 10.1097/INF.0000000000001772.

PMID:
29076932
5.

Detection of Streptococcus pneumoniae and Haemophilus influenzae type B by real-time PCR from dried blood spot samples among children with pneumonia: a useful approach for developing countries.

Selva L, Benmessaoud R, Lanaspa M, Jroundi I, Moraleda C, Acacio S, Iñigo M, Bastiani A, Monsonis M, Pallares R, Bassat Q, Muñoz-Almagro C.

PLoS One. 2013 Oct 8;8(10):e76970. doi: 10.1371/journal.pone.0076970. eCollection 2013. Erratum in: PLoS One. 2016;11(1):e0147678.

6.

Randomised controlled trial and health economic evaluation of the impact of diagnostic testing for influenza, respiratory syncytial virus and Streptococcus pneumoniae infection on the management of acute admissions in the elderly and high-risk 18- to 64-year-olds.

Nicholson KG, Abrams KR, Batham S, Medina MJ, Warren FC, Barer M, Bermingham A, Clark TW, Latimer N, Fraser M, Perera N, Rajakumar K, Zambon M.

Health Technol Assess. 2014 May;18(36):1-274, vii-viii. doi: 10.3310/hta18360.

7.

Comparison of the effect of antibiotic treatment on the possibility of diagnosing invasive pneumococcal disease by culture or molecular methods: a prospective, observational study of children and adolescents with proven pneumococcal infection.

Resti M, Micheli A, Moriondo M, Becciolini L, Cortimiglia M, Canessa C, Indolfi G, Bartolini E, de Martino M, Azzari C.

Clin Ther. 2009 Jun;31(6):1266-73. doi: 10.1016/j.clinthera.2009.06.010.

PMID:
19695393
8.

Use of an automated PCR assay, the GenomEra S. pneumoniae, for rapid detection of Streptococcus pneumoniae in blood cultures.

Hirvonen JJ, Seiskari T, Harju I, Rantakokko-Jalava K, Vuento R, Aittoniemi J.

Infect Dis (Lond). 2015;47(11):796-800. doi: 10.3109/23744235.2015.1063157. Epub 2015 Jul 10.

PMID:
26162002
9.

Accuracy of a polymerase chain reaction-based assay for detection of pneumococcal bacteremia in children.

Isaacman DJ, Zhang Y, Reynolds EA, Ehrlich GD.

Pediatrics. 1998 May;101(5):813-6.

PMID:
9565407
10.

Detection of Streptococcus pneumoniae in whole blood by PCR.

Zhang Y, Isaacman DJ, Wadowsky RM, Rydquist-White J, Post JC, Ehrlich GD.

J Clin Microbiol. 1995 Mar;33(3):596-601.

11.

A duplex real-time PCR for the detection of Streptococcus pneumoniae and Neisseria meningitidis in cerebrospinal fluid.

Diawara I, Katfy K, Zerouali K, Belabbes H, Elmdaghri N.

J Infect Dev Ctries. 2016 Jan 31;10(1):53-61. doi: 10.3855/jidc.5647.

13.

Spinal muscular atrophy patient detection and carrier screening using dried blood spots on filter paper.

Harahap NI, Harahap IS, Kaszynski RH, Nurputra DK, Hartomo TB, Pham HT, Yamamoto T, Morikawa S, Nishimura N, Rusdi I, Widiastuti R, Nishio H.

Genet Test Mol Biomarkers. 2012 Feb;16(2):123-9. doi: 10.1089/gtmb.2011.0109. Epub 2011 Sep 23.

PMID:
21942573
14.

Use of Blood Smears and Dried Blood Spots for Polymerase Chain Reaction-Based Detection and Quantification of Bacterial Infection and Plasmodium falciparum in Severely Ill Febrile African Children.

Wihokhoen B, Dondorp AM, Turner P, Woodrow CJ, Imwong M.

Am J Trop Med Hyg. 2016 Feb;94(2):322-326. doi: 10.4269/ajtmh.15-0532. Epub 2015 Dec 28.

15.
16.

Development and implementation challenges of a quality assured HIV infant diagnosis program in Nigeria using dried blood spots and DNA polymerase chain reaction.

Audu R, Onwuamah C, Salu O, Okwuraiwe A, Ou CY, Bolu O, Bond KB, Diallo K, Lu L, Jelpe T, Okoye M, Ngige E, Vertefeuille J.

AIDS Res Hum Retroviruses. 2015 Apr;31(4):433-8. doi: 10.1089/AID.2014.0159. Epub 2014 Dec 17.

17.

Improvement of pneumococcal pneumonia diagnostics by the use of rt-PCR on plasma and respiratory samples.

Cvitkovic Spik V, Beovic B, Pokorn M, Drole Torkar A, Vidmar D, Papst L, Seme K, Kogoj R, Müller Premru M.

Scand J Infect Dis. 2013 Oct;45(10):731-7. doi: 10.3109/00365548.2013.804631. Epub 2013 Jul 5.

PMID:
23826792
18.

Direct detection of Streptococcus pneumoniae in positive blood cultures by real-time polymerase chain reaction.

Selva L, Esteva C, Gené A, de Sevilla MF, Hernandez-Bou S, Muñoz-Almagro C.

Diagn Microbiol Infect Dis. 2010 Feb;66(2):204-6. doi: 10.1016/j.diagmicrobio.2009.05.023.

PMID:
20117350
19.

Enhanced Diagnosis of Pneumococcal Bacteremia Using Antigen- and Molecular-Based Tools on Blood Specimens in Mali and Thailand: A Prospective Surveillance Study.

Moïsi JC, Moore M, Carvalho MDG, Sow SO, Siludjai D, Knoll MD, Tapia M, Baggett HC, The Laboratory Evaluation Of Assays For Pneumococcus Leap Study Investigators.

Am J Trop Med Hyg. 2016 Feb;94(2):267-275. doi: 10.4269/ajtmh.15-0431. Epub 2015 Dec 7.

20.

Molecular analysis improves pathogen identification and epidemiologic study of pediatric parapneumonic empyema.

Blaschke AJ, Heyrend C, Byington CL, Obando I, Vazquez-Barba I, Doby EH, Korgenski EK, Sheng X, Poritz MA, Daly JA, Mason EO, Pavia AT, Ampofo K.

Pediatr Infect Dis J. 2011 Apr;30(4):289-94. doi: 10.1097/INF.0b013e3182002d14.

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