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DNA, images

A.M. Oliveira Brett and A.-M. Chiorcea Paquim, DNA imaged on a HOPG electrode surface by AFM with controlled potential, Bioelectrochemistry, 66 (2005) 117-124. [Pg.434]

Fig-1 Double helix and chemical structure of DNA (Image of double helix courtesy of Stanford University, see http //cmgm.stanford.edu origin cited in [2])... [Pg.5]

Barnes L, Rao U, Krause J, et al. Salivary duct carcinoma. Part I. A clinicopathologic evaluation and DNA image analysis of 13 cases with review of the literature. Oral Surg Oral Med Oral Pathol. 1994 78(l) 64-73. [Pg.289]

Figure 12. Capture and trapping of 7,-DNA. Images show individual YOYO tagged 48 kBb X-DNA trapped and released over a 60 mn slot waveguide. Figure 12. Capture and trapping of 7,-DNA. Images show individual YOYO tagged 48 kBb X-DNA trapped and released over a 60 mn slot waveguide.
Fig. 3 A comparison of the image quality for a SIT video camera versus a cooled CCD camera. The sample is DAPI-stained, phenol-extracted bacteriophage T4 DNA. Images (top panels) and the intensity profile along the horizontal dotted lines (bottom panels) are shown for the SIT camera (a) and the cooled CCD camera (b). The intensities of single DNA molecules are indicated by the arrows in the bottom panels. The asterisk in lower panel b corresponds to a bundle of two DNA molecules. (Reproduced with permission from Hiraoka et al. (1987).)... Fig. 3 A comparison of the image quality for a SIT video camera versus a cooled CCD camera. The sample is DAPI-stained, phenol-extracted bacteriophage T4 DNA. Images (top panels) and the intensity profile along the horizontal dotted lines (bottom panels) are shown for the SIT camera (a) and the cooled CCD camera (b). The intensities of single DNA molecules are indicated by the arrows in the bottom panels. The asterisk in lower panel b corresponds to a bundle of two DNA molecules. (Reproduced with permission from Hiraoka et al. (1987).)...
Fig. 3 Cellular DNA imaging using metabolic nucleic acid probe. Figure reprinted from Ref. [55] with permission from John Wiley and Sons... Fig. 3 Cellular DNA imaging using metabolic nucleic acid probe. Figure reprinted from Ref. [55] with permission from John Wiley and Sons...
Figure 4. Raman imaging of a fixed apoptotic HeLa cell. DNA image (left) constmcted using the 788 cm band. Protein image (right) using the 1451 cm" band. The scan area is 10 x 10 pm. Raman images of apoptotic cells are able to reveal an elevation in the DNA content when compared to DNA Raman images of healthy HeLa cells (not shown). (From reference [2])... Figure 4. Raman imaging of a fixed apoptotic HeLa cell. DNA image (left) constmcted using the 788 cm band. Protein image (right) using the 1451 cm" band. The scan area is 10 x 10 pm. Raman images of apoptotic cells are able to reveal an elevation in the DNA content when compared to DNA Raman images of healthy HeLa cells (not shown). (From reference [2])...
Tycon, M. A. Dial, C. F. Faison, K. Melvin, W. Fecko, C. J. Quantification of dye-mediated photodamage during single-molecule DNA imaging. Anal. Biochem. 2012,426,13-21. [Pg.418]


See other pages where DNA, images is mentioned: [Pg.119]    [Pg.127]    [Pg.239]    [Pg.254]    [Pg.254]    [Pg.142]    [Pg.265]    [Pg.612]    [Pg.612]    [Pg.238]    [Pg.485]    [Pg.169]    [Pg.1492]    [Pg.629]    [Pg.149]    [Pg.221]   
See also in sourсe #XX -- [ Pg.133 , Pg.134 , Pg.135 ]




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