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In vivo staining of neocortical astrocytes via the cerebral microcirculation using sulforhodamine B.
Vérant P, Ricard C, Serduc R, Vial JC, van der Sanden B. Vérant P, et al. Among authors: van der sanden b. J Biomed Opt. 2008 Nov-Dec;13(6):064028. doi: 10.1117/1.3041163. J Biomed Opt. 2008. PMID: 19123674
We demonstrate here, using two-photon imaging, that sulforhodamine B (SRB) crosses the BBB and stains in vivo, specifically mouse astrocytes. ...
We demonstrate here, using two-photon imaging, that sulforhodamine B (SRB) crosses the BBB and stains in vivo, specifically mouse ast …
Multi-wavelength photo-acoustic microscopy in the frequency domain for simultaneous excitation and detection of dyes.
Hugon O, van der Sanden B, Inglebert M, Jacquin O, Misbah C, Lacot E. Hugon O, et al. Among authors: van der sanden b. Biomed Opt Express. 2019 Jan 29;10(2):932-943. doi: 10.1364/BOE.10.000932. eCollection 2019 Feb 1. Biomed Opt Express. 2019. PMID: 30800524 Free PMC article.
Deep in vivo two-photon imaging of blood vessels with a new dye encapsulated in pluronic nanomicelles.
Maurin M, Stéphan O, Vial JC, Marder SR, van der Sanden B. Maurin M, et al. Among authors: van der sanden b. J Biomed Opt. 2011 Mar;16(3):036001. doi: 10.1117/1.3548879. J Biomed Opt. 2011. PMID: 21456865 Free PMC article.
Pluronic nanomicelles show, like Rhodamin B dextran, a homogeneous blood plasma staining for at least 1 h after intravenous injection. ...In contrast with Rhodamin B dextran, no extravasation is observed in leaky tumor vessels due to their large size: 20-100 nm. ...
Pluronic nanomicelles show, like Rhodamin B dextran, a homogeneous blood plasma staining for at least 1 h after intravenous injection …
Fluorescent Pluronic nanodots for in vivo two-photon imaging.
Maurin M, Vurth L, Vial JC, Baldeck P, Marder SR, Van der Sanden B, Stephan O. Maurin M, et al. Among authors: van der sanden b. Nanotechnology. 2009 Jun 10;20(23):235102. doi: 10.1088/0957-4484/20/23/235102. Epub 2009 May 18. Nanotechnology. 2009. PMID: 19448291
The dose injected during our experiments is ten times lower when compared to the classical commercial rhodamine-B isothicyanate-Dextran system but gives similar results to homogeneous blood plasma staining. ...
The dose injected during our experiments is ten times lower when compared to the classical commercial rhodamine-B isothicyanate-Dextr …
Subtraction method for intravital two-photon microscopy: intraparenchymal imaging and quantification of extravasation in mouse brain cortex.
Vérant P, Serduc R, van der Sanden B, Chantal R, Ricard C, Coles JA, Vial JC. Vérant P, et al. Among authors: van der sanden b. J Biomed Opt. 2008 Jan-Feb;13(1):011002. doi: 10.1117/1.2870083. J Biomed Opt. 2008. PMID: 18315351
Subtraction of the image of the fluorescein-dextran from that of the sulforhodamine B gave images in which the vasculature was invisible and the sulforhodamine B in the parenchyma could be imaged with high resolution. ...Sulforhodamine B labeled certain intra …
Subtraction of the image of the fluorescein-dextran from that of the sulforhodamine B gave images in which the vasculature was invisi …
In vivo two-photon microscopy study of short-term effects of microbeam irradiation on normal mouse brain microvasculature.
Serduc R, Vérant P, Vial JC, Farion R, Rocas L, Rémy C, Fadlallah T, Brauer E, Bravin A, Laissue J, Blattmann H, van der Sanden B. Serduc R, et al. Among authors: van der sanden b. Int J Radiat Oncol Biol Phys. 2006 Apr 1;64(5):1519-27. doi: 10.1016/j.ijrobp.2005.11.047. Int J Radiat Oncol Biol Phys. 2006. PMID: 16580502
At different times after microbeam exposure, the microvasculature in the cortex was analyzed using intravital two-photon microscopy after intravascular injection of fluorescein isothiocyanate (FITC)-dextrans and sulforhodamine B (SRB). ...
At different times after microbeam exposure, the microvasculature in the cortex was analyzed using intravital two-photon microscopy after in …
A direct method for measuring mouse capillary cortical blood volume using multiphoton laser scanning microscopy.
Vérant P, Serduc R, Van Der Sanden B, Rémy C, Vial JC. Vérant P, et al. Among authors: van der sanden b. J Cereb Blood Flow Metab. 2007 May;27(5):1072-81. doi: 10.1038/sj.jcbfm.9600415. Epub 2006 Oct 25. J Cereb Blood Flow Metab. 2007. PMID: 17063147
Fluorescent Tobacco mosaic virus-Derived Bio-Nanoparticles for Intravital Two-Photon Imaging.
Niehl A, Appaix F, Boscá S, van der Sanden B, Nicoud JF, Bolze F, Heinlein M. Niehl A, et al. Among authors: van der sanden b. Front Plant Sci. 2016 Jan 13;6:1244. doi: 10.3389/fpls.2015.01244. eCollection 2015. Front Plant Sci. 2016. PMID: 26793221 Free PMC article.
In vivo imaging of elastic fibers using sulforhodamine B.
Ricard C, Vial JC, Douady J, van der Sanden B. Ricard C, et al. Among authors: van der sanden b. J Biomed Opt. 2007 Nov-Dec;12(6):064017. doi: 10.1117/1.2821421. J Biomed Opt. 2007. PMID: 18163833
We present and characterize a new application of a fluorescent dye for two-photon microscopy: sulforhodamine B (SRB), which is shown to specifically stain elastic fibers in vivo. ...
We present and characterize a new application of a fluorescent dye for two-photon microscopy: sulforhodamine B (SRB), which is shown …
Specific in vivo staining of astrocytes in the whole brain after intravenous injection of sulforhodamine dyes.
Appaix F, Girod S, Boisseau S, Römer J, Vial JC, Albrieux M, Maurin M, Depaulis A, Guillemain I, van der Sanden B. Appaix F, et al. Among authors: van der sanden b. PLoS One. 2012;7(4):e35169. doi: 10.1371/journal.pone.0035169. Epub 2012 Apr 11. PLoS One. 2012. PMID: 22509398 Free PMC article.
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