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In recent years, technical developments in mouse genetics and imaging equipment have substantially advanced our understanding of hematopoietic stem cells (HSCs) and their niche.
With "a lot of opportunities arising through developments in mouse genetics," the number of animals used in research is likely to rise, according to Peatfield.
Several recent developments in mouse models of BRCA-linked disease support this hypothesis.
Although embryonic developments in mouse and Xenopus are not identical, they have tissues that perform analogous functions.
However, despite the developments in mouse strain studies, there have not yet been any QTLs found in the humans to help determine those at risk of developing lung fibrosis.
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La Manno, G. et al. Molecular diversity of midbrain development in mouse, human, and stem cells.
The LIM homeodomain transcription factor, LHX3, is essential for pituitary development in mouse and man.
Vascular endothelial growth factor C (VEGF-C), the major effector of lymphangiogenesis, is indispensable for lymphatic development in mouse embryos and essential for most lymphangiogenic processes in adults1,2,3.
Thus, Dkk1 expression appears to be required in the definitive anterior mesendoderm for early anterior development in mouse (Mukhopadhyay et al., 2001).
Here we present the analysis of the requirement for ATF2 in CNS development in mouse embryos, specifically in the brainstem.
Study of tumor development in mouse prostate cancer models can be instrumental in understanding human prostate cancer.
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