Pages that link to "Item:Q327128"
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The following pages link to Mathematical model of mycobacterium-host interaction describes physiology of persistence (Q327128):
Displaying 13 items.
- Understanding PGE2, LXA4 and LTB4 balance during \textit{Mycobacterium tuberculosis} infection through mathematical model (Q304757) (← links)
- Modeling the macrophage-anthrax spore interaction: implications for early host-pathogen interactions (Q669058) (← links)
- Modeling basic aspects of bacterial resistance of Mycobacterium tuberculosis to antibiotics (Q722231) (← links)
- Deciphering the virulence of \textit{Mycobacterium avium} subsp. \textit{paratuberculosis} isolates in animal macrophages using mathematical models (Q1734254) (← links)
- Mathematical analysis of macrophage-bacteria interaction in tuberculosis infection (Q1756830) (← links)
- Modeling innate immune response to early Mycobacterium infection (Q1929608) (← links)
- Delay in ATP-dependent calcium inflow may affect insulin secretion from pancreatic beta-cell (Q2183045) (← links)
- Requirement for multiple activation signals by anti-inflammatory feedback in macrophages (Q2199198) (← links)
- Dynamic mathematical model development and validation of \textit{in vitro Mycobacterium smegmatis} growth under nutrient- and pH-stress (Q2243110) (← links)
- Calcium dynamics in cardiac excitatory and non-excitatory cells and the role of gap junction (Q2408695) (← links)
- Mathematical model for the growth of mycobacterium tuberculosis in the granuloma (Q2411071) (← links)
- Restoration of cytosolic calcium inhibits \textit{Mycobacterium tuberculosis} intracellular growth: theoretical evidence and experimental observation (Q2415835) (← links)
- A mathematical model to study low-dose metronomic scheduling for chemotherapy (Q6566663) (← links)