Bruker Optics - InVi SPIM
Manufactured by Bruker Optics
THE LIGHT-SHEET MICROSCOPE OPTIMIZED FOR LONG-TERM 3D FLUORESCENCE IMAGING
Dedicated to live imaging, the Luxendo InVi SPIM is a microscope that has been optimized for long-term 3D fluorescence imaging of living specimens.
Easy access to the sample chamber, precisely controlled environmental conditions, maximized photo-efficiency, and short illumination times enable long-term imaging without harming live specimens. The minimization of required specimen medium further leverages its functionality.
The optical configuration combined with the fast acquisition speed of the InVi SPIM enables 3D reconstruction, tracking of cellular and subcellular positions, and morphological analysis in real time.
Typical applications of the microscope include in toto imaging of small animal models such as whole mouse embryos, Zebrafish and Drosophila embryos, imaging of dynamic processes in mammalian cell culture applications, and even live imaging of intact and living plant models.
Adding a choice of various beam patterns – classical static Gaussian light-sheets, scanned Gaussian beams, Bessel beams and optical lattices, or even customized shapes – provides unique flexibility to optimize your bioimaging experiments.
Easy access to the sample chamber, precisely controlled environmental conditions, maximized photo-efficiency, and short illumination times enable long-term imaging without harming live specimens. The minimization of required specimen medium further leverages its functionality.
The optical configuration combined with the fast acquisition speed of the InVi SPIM enables 3D reconstruction, tracking of cellular and subcellular positions, and morphological analysis in real time.
Typical applications of the microscope include in toto imaging of small animal models such as whole mouse embryos, Zebrafish and Drosophila embryos, imaging of dynamic processes in mammalian cell culture applications, and even live imaging of intact and living plant models.
Adding a choice of various beam patterns – classical static Gaussian light-sheets, scanned Gaussian beams, Bessel beams and optical lattices, or even customized shapes – provides unique flexibility to optimize your bioimaging experiments.
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