Stockholms universitet - CERN Indico

1185

Publikationer i DiVA Korsgren - Immunologi, genetik och - IGP

Rev. B 90,  29 May 2007 High-resolution scanning tunneling microscopy imaging of mesoscopic graphene sheets on an insulating surface. Elena Stolyarova, Kwang  20 Jan 2016 proposal is to develop a novel computational in-vivo MRI technique, namely Mesoscopic White-Matter magnetic resonance Imaging (MWMI). Mesoscale Imaging System™. Adapts the ZEISS Lightsheet Z.1 microscope, designed for imaging small live organisms, to image large intact tissues with  Dynameq is a true mesoscopic model as it uses equilibrium as well as the other algorithms used in micro-simulation models such as car following, gap- acceptance  The world leader in the design and manufacture of compact, high-performance MRI & NMR systems for pre-medical , medical and industrial application. ImageXpress Micro Confocal system a high-content imaging, confocal microscopy solutions for both widefield and confocal imaging of fixed and live cells. Learn  Towards large-scale neurophysiology based on imaging Even simple choice behaviors involve large numbers of neurons in multiple brain areas.

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Although 3D imaging techniques, such as optical projection tomography (OPT) 3 that is based on the attenuation contrast of light 4 have been used for 3D imaging of mouse embryos without labels, few We demonstrate a mesoscopic FOV up to ~6×5×0.6 mm 3 volumetric imaging, the largest reported FOV by OPM so far. The angle of the intermediate image plane is independent of the magnification as long as the size of the pupil aperture of the objectives is the same. Mesoscopic imaging iThera Medical is the only company offering OAI systems in the mesoscopic regime – achieving 2-3mm depth penetration at a resolution of down to 20µm. Raster-scanning optoacoustic mesoscopy (RSOM) has so far been explored in a variety of tumor-associated preclinical studies, using the RSOM Explorer P50 to look at Recording brain activity at the mesoscopic scale has thus a strong potential to unveil many new fundamental neuronal operations and innovative clinical applications. Optical imaging offers a unique opportunity to measure brain activity over a large field-of-view (up to 1cm for flat surfaces) with high spatio-temporal resolutions (20μmx1ms). Definition of mesoscopic in the Definitions.net dictionary. Meaning of mesoscopic.

This approach enables Register & Watch Now Cellular interactions and thus organ function and anatomy are inherently of a three-dimensional (3D) nature.

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12 Mar 2021 Abstract Fluorescence lifetime imaging (FLIm) is an optical spectroscopic imaging technique capable of real‐time assessments of tissue  Discover the 170 ATTRACT projects boosting sensing and imaging technologies to enable breakthrough innovation for society. Download all projects. Mesoscopic imaging of actinic skin damage using spatial frequency domain imaging.

Mesoscopic imaging

Publications

Mesoscopic imaging

PAI is inherently sensitive to chromophore contrast so it is suitable for imaging vascularization and their oxygenation state via intrinsic spectral Revealing mesoscopic structural universality with diffusion Dmitry S. Novikova,1, Jens H. Jensenb, Joseph A. Helpernb, and Els Fieremansa aBernard and Irene Schwartz Center for Biomedical Imaging, Department of Radiology, New York University School of Medicine, New York, NY 10016; Imaging in Scattering Media. Displacement-agnostic coherent imaging through scatter with an interpretable deep neural network Y Li, S Cheng, Y Xue, L Tian Optics Express Vol. 29, Issue 2, pp. 2244-2257 (2021). Coherent imaging through scatter is a challenging task. 4 Mar 2021 By high resolution mesoscopic imaging techniques working in the mm-cm range, such as: optical projection tomography (OPT) (1) and light  2 Dec 2020 Results: We first demonstrated the depth-resolved capability of 3D mesoscopic imaging technology in Thy1-ChR2-YFP transgenic mice. Next  Mesoscopic imaging of glioblastomas: Are diffusion, perfusion and spectroscopic measures influenced by the radiogenetic phenotype?

Mesoscopic imaging

It's an approach that recognises that a  Recent advances in mesoscopic-scale imaging in animal models of ischemic stroke Mesoscale brain imaging in living animals (i.e., with fields of view at the   Wide field-of-view volumetric imaging by a mesoscopic scanning oblique plane microscopy with switchable objective lenses.
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Tekniken bygger på N2 - In recent years, three-dimensional mesoscopic imaging has gained significant importance in life sciences for fundamental studies at the whole-organ level. abstract = "In recent years, three-dimensional mesoscopic imaging has gained significant importance in life sciences for fundamental studies at the whole-organ  Mesoscopic 3D imaging of pancreatic cancer and Langerhans islets based on tissue autofluorescence. Max Hahn, Christoffer Nord, Oskar Franklin, Tomas  Mesoscopic 3D imaging of pancreatic cancer and Langerhans islets based on tissue autofluorescence. Scientific Reports, Springer Nature 2020, Vol. 10, (1).

Selective plane illumination microscopy (SPIM) Our group is exploring physical phenomena occurring at and between various spatial and time scales in radiotherapy imaging and treatment of cancer. Spatial domain: nm (high-Z nanoparticles, detector nanostructures), mm (cells, detector microstructures, micro-beams), mm (voxels), cm (patient anatomy). T1 - Mesoscopic and Macroscopic Optoacoustic Imaging of Cancer.
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Optical projection tomography for rapid whole mouse brain

This approach enables Optical imaging has revolutionized our ability to monitor brain activity, spanning spatial scales from synapses to cells to circuits. Here, we summarize the rapid development and application of mesoscopic imaging, a widefield fluorescence-based approach that balances high spatiotemporal resolution with extraordinarily large fields of view. Mesoscopy typically refers to depths of a few millimeters (1–5 mm) with the resolution in the order of a few microns to tens of microns. Macroscopy then refers to depths beyond 5 mm and resolution ranging from tens of microns to a few hundred of microns, depending on the depth. Herein, we review the fundamental working principles of mesoscopic FLIm, discuss the technical characteristics of current clinical FLIm instrumentation, highlight the most commonly used analytical methods to interpret fluorescence lifetime data and discuss the recent applications of FLIm in surgical oncology and cardiovascular diagnostics. With the mesoscopic FOV volumetric imaging capability, simple sample mounting protocol, and the versatility of changeable FOVs/resolutions, our system will be ready for the future applications requiring in vivo volumetric imaging over a large length scale, such as neural dynamics and vasculature development.