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Results: 1 to 20 of 68

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1.

Study of house-level risk factors associated in the transmission of Indian Kala-azar.

Kesari S, Bhunia GS, Kumar V, Jeyaram A, Ranjan A, Das P.

Parasit Vectors. 2010 Oct 12;3:94. doi: 10.1186/1756-3305-3-94.

2.

A comparative evaluation of end-emic and non-endemic region of visceral leishmaniasis (Kala-azar) in India with ground survey and space technology.

Kesari S, Bhunia GS, Kumar V, Jeyaram A, Ranjan A, Das P.

Mem Inst Oswaldo Cruz. 2011 Aug;106(5):515-23.

3.

Susceptibility of Phlebotomus argentipes against DDT in endemic Districts of North Bihar, India.

Kishore K, Kumar V, Kesari S, Bhattacharya SK, Das P.

J Commun Dis. 2004 Mar;36(1):41-4.

PMID:
16295685
4.

Mapping of risk prone areas of kala-azar (Visceral leishmaniasis) in parts of Bihar State, India: an RS and GIS approach.

Sudhakar S, Srinivas T, Palit A, Kar SK, Battacharya SK.

J Vector Borne Dis. 2006 Sep;43(3):115-22.

5.

Spatial and temporal variation and hotspot detection of kala-azar disease in Vaishali district (Bihar), India.

Bhunia GS, Kesari S, Chatterjee N, Kumar V, Das P.

BMC Infect Dis. 2013 Feb 2;13:64. doi: 10.1186/1471-2334-13-64.

7.

Elimination of visceral leishmaniasis in Nepal: pipe-dreams and possibilities.

Joshi AB, Banjara MR, Pokhrel S, Jimba M, Singhasivanon P, Ashford RW.

Kathmandu Univ Med J (KUMJ). 2006 Oct-Dec;4(4):488-96.

PMID:
18603960
8.

Risk factors for Indian kala-azar.

Ranjan A, Sur D, Singh VP, Siddique NA, Manna B, Lal CS, Sinha PK, Kishore K, Bhattacharya SK.

Am J Trop Med Hyg. 2005 Jul;73(1):74-8.

9.

Effect of DDT on Phlebotomus sandflies in Kala-Azar endemic foci in West Bengal.

Mukhopadhyay AK, Hati AK, Chakraborty S, Saxena NB.

J Commun Dis. 1996 Sep;28(3):171-5.

PMID:
8973016
10.

The efficacy of indoor CDC light traps for collecting the sandfly Phlebotomus argentipes, vector of Leishmania donovani.

Dinesh DS, DAS P, Picado A, Davies C, Speybroeck N, Boelaert M, Coosemans M.

Med Vet Entomol. 2008 Jun;22(2):120-3. doi: 10.1111/j.1365-2915.2008.00724.x.

PMID:
18498610
11.

Absence of Phlebotomus argentipes Ann & Brun. (Diptera: Psychodidae) the vector of Indian kala-azar from Kamrup district, Assam.

Kaul SM, Sharma RS, Borgohain BK, Das NS, Verghese T.

J Commun Dis. 1994 Jun;26(2):68-74.

PMID:
7989678
12.

Visceral leishmaniasis in southeastern Nepal: a cross-sectional survey on Leishmania donovani infection and its risk factors.

Schenkel K, Rijal S, Koirala S, Koirala S, Vanlerberghe V, Van der Stuyft P, Gramiccia M, Boelaert M.

Trop Med Int Health. 2006 Dec;11(12):1792-9.

13.

Knowledge, attitudes, and practices about kala-azar and its sandfly vector in rural communities of Nepal.

Koirala S, Parija SC, Karki P, Das ML.

Bull World Health Organ. 1998;76(5):485-90.

14.

[Prevention and control of leishmaniasis vectors: current approaches].

Maroli M, Khoury C.

Parassitologia. 2004 Jun;46(1-2):211-5. Review. Italian.

PMID:
15305719
15.
16.

Vector density and the control of kala-azar in Bihar, India.

Kumar V, Kesari S, Kumar AJ, Dinesh DS, Ranjan A, Prasad M, Sinha NK, Kumar R, Das P.

Mem Inst Oswaldo Cruz. 2009 Nov;104(7):1019-22.

17.

Present situation of vector-control management in Bangladesh: a wake up call.

Mondal D, Alam MS, Karim Z, Haque R, Boelaert M, Kroeger A.

Health Policy. 2008 Sep;87(3):369-76. doi: 10.1016/j.healthpol.2008.01.011. Epub 2008 Mar 14.

PMID:
18342389
18.
19.

Relationship between sand fly fauna and kala-azar endemicity in Bangladesh.

Alam MS, Wagatsuma Y, Mondal D, Khanum H, Haque R.

Acta Trop. 2009 Oct;112(1):23-5. doi: 10.1016/j.actatropica.2009.05.021. Epub 2009 Jun 6.

PMID:
19501561
20.

House-level risk factors for triatomine infestation in Colombia.

Campbell-Lendrum DH, Angulo VM, Esteban L, Tarazona Z, Parra GJ, Restrepo M, Restrepo BN, Guhl F, Pinto N, Aguilera G, Wilkinson P, Davies CR.

Int J Epidemiol. 2007 Aug;36(4):866-72. Epub 2007 Aug 14.

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