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1128/IAI.00193-17
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document/view/40278852/xenogen-ivis200-user-manual. 2006
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basics and practical limitations. Methods Mol
Biol 1098:1–18. https://doi.org/10.1007/
978-1-62703-718-1_1
5. Avci P, Karimi M, Sadasivam M, Antunes-Melo
WC, Carrasco E, Hamblin MR (2018) In-vivo
monitoring of infectious diseases in living animals using bioluminescence imaging. Virulence 9(1):28–63. https://doi.org/10.1080/
21505594.2017.1371897
6. Zhang Y, Pullambhatla M, Laterra J, Pomper
MG (2012) Influence of bioluminescence
imaging dynamics by D-luciferin uptake and
efflux mechanisms. Mol Imaging 11
(6):499–506
7. Keyaerts M, Caveliers V, Lahoutte T (2012)
Bioluminescence imaging: looking beyond the
light. Trends Mol Med 18(3):164–172.
https://doi.org/10.1016/j.molmed.2012.01.
005
8. Mezzanotte L, van’t Root M, Karatas H, Goun
EA, Lowik C (2017) In vivo molecular
bioluminescence imaging: new tools and applications. Trends Biotechnol 35(7):640–652.
https://doi.org/10.1016/j.tibtech.2017.03.
012
9. Ratet G, Veyrier FJ, Fanton d’Andon M,
Kammerscheit X, Nicola MA, Picardeau M
et al (2014) Live imaging of bioluminescent
leptospira interrogans in mice reveals renal colonization as a stealth escape from the blood
defenses and antibiotics. PLoS Negl Trop Dis
8(12):e3359. https://doi.org/10.1371/jour
nal.pntd.0003359
10. Acuff NV, Li X, Latha K, Nagy T, Watford WT
(2017) Tpl2 promotes innate cell recruitment
and effector T cell differentiation to limit Citrobacter rodentium burden and dissemination.
Infect Immun 85(10). https://doi.org/10.
1128/IAI.00193-17
11. IVIS-guide.
https://www.yumpu.com/en/
document/view/40278852/xenogen-ivis200-user-manual. 2006
160
Fre ´ de ´ rique Vernel-Pauillac and Catherine Werts