By Douglas J. Taatjes, Jürgen Roth
Electronic pictures are facts : and will be handled as such / Douglas W. Cromey --
Epi-fluorescence microscopy / Donna J. Webb and Claire M. Brown --
Live-cell migration and adhesion turnover assays / J. Lacoste, okay. younger, and Claire M. Brown --
Multifluorescence confocal microscopy : software for a quantitative research of hemostatic proteins in human venous valves / Winifred E. Trotman, Douglas J. Taatjes, and Edwin G. Bovill --
Colocalization research in fluorescence microscopy / Jeremy Adler and Ingela Parmryd --
A time-lapse imaging assay to review nuclear envelope breakdown / Sunita S. Shankaran, Douglas R. Mackay, and Katharine S. Ullman --
Light sheet microsocopy in cellphone biology / Raju Tomer, Khaled Khairy, and Philipp J. Keller --
Image-based high-throughput screening for inhibitors of angiogenesis / Lasse Evensen, Wolfgang hyperlink, and James B. Lorens --
Intravital microscopy to photograph membrane trafficking in stay rats / Andrius Masedunskas [and others] --
Imaging non-fluorescent nanoparticles in residing cells with wavelength-dependent differential interference distinction microscopy and planar illumination microscopy / Wei solar, Lehui Xiao, and Ning Fang --
Laser scanning cytometry : ideas and applications-an replace / Piotr Pozarowski, Elena Holden, and Zbigniew Darzynkiewicz --
Laser trap microdissection for protein and NanoString RNA research / Yelena Golubeva [and others] --
Viewing dynamic interactons of proteins and a version lipid membrane with atomic strength microscopy / Anthony S. Quinn [and others] --
Mica functionaliztion for imaging of DNA and protein-DNA complexes with atomic strength microscopy / Luda S. Shlyakhtenko, Alexander A. Gall, and Yuri Lyubchenko --
Measuring the elastic homes of residing cells with atomic strength microscopy indentation / Joanna L. MacKay and Sanjay Kumar --
Atomic strength microscopy useful imaging on vascular endothelial cells / Lilia A. Chtcheglova and Peter Hinterdorfer --
Porosome : the secretory nanomachine in cells / Bhanu P. Jena --
Stereology and morphometry of lung tissue / Christian Mühlfeld, Lars Knudsen, and Matthias Ochs --
A novel mixed imaging/morphometrical technique for the research of human sural nerve biopsies for medical prognosis / Michele A. vonTurkovich [and others] --
Correlative light-electron microscopy as a device to check in vivo dynamics and ultrastructure of intracellular buildings / Elena V. Polishchuk, Roman S. Polishchuk, and Alberto Luini --
Photooxidation know-how for correlative gentle and electron microscopy / Claudia Meisslitzer-Ruppitsch [and others] --
Electron microscopy of endocytic pathways / Carmen Ranftler [and others] --
Morphological research of autophagy / Keisuke Tabata [and others] --
Cytochemical detection of peroxisomes and mitochondria / Nina A. Bonekamp [and others] --
Histochemical detection of lipid droplets in cultured cells / Michitaka Suzuki, Yuki Shinohara, and Toyoshi Fujimoto --
Environmental scanning electron microscopy in telephone biology / J.E. McGregor [and others] --
Environmental scanning electron microscopy gold immunolabeling in mobile biology / Francesco Rosso, Ferdinando Papale, and Alfonso Barbarisi --
High-pressure freezing for scanning transmission electron tomography research of mobile organelles / Paul Walther, Eberhard Schmid, and Katharina Höhn --
MALDI imaging mass spectrometry for direct tissue research / Stephan Meding and Axel Walch.
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Extra resources for Cell imaging techniques : methods and protocols
With motorized microscopes these turrets can be automated to facilitate multicolor image acquisition over time (10). Fluorescence emission is then either directed to the eyepieces generating an image on the retina of the observer or sent through another microscope port to a camera detector. The key components of the optical train and how to choose them appropriately will be discussed in detail in the following sections. 3. 1. Light Sources (a) Tungsten-Halogen: An incandescent tungsten-halogen bulb (50–100 W) is placed inside of a reflective housing.
Fluorescent probes and proteins will be briefly introduced and readers will be referred to more comprehensive reviews for additional details. Proper techniques for image acquisition, analysis, and processing will be presented including 3D imaging, image deconvolution, and 3D rendering of data. 2. The Fluorescence Light Path The key to high resolution and high signal-to-noise (S/N) epifluorescence imaging is to be able to excite the sample with a specific color of relatively bright incident light, while having the capacity to separate and detect the much dimmer fluorescence being emitted from the sample.
The JCB uses an experienced human editor to examine images, while other journals have used sophisticated image screening software (4, 105, 106). The only readily accessible resources for performing image forensics have been provided by the ORI (107). gov/tools/). On a simpler level, users can examine the image’s intensity histogram for hints. Original, unprocessed images tend to have continuous histograms. Processed images frequently show common artifacts (gaps, spikes) that can suggest if the image is truly an original or if it has received some post-processing (62).
Cell imaging techniques : methods and protocols by Douglas J. Taatjes, Jürgen Roth
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