ex vivo nir fluorescence imaging Search Results


90
Bruker Corporation wide-field nir fluorescence imager in-vivo xtreme imager
a) PET-CT image of a mouse bearing LS174T colon cancer xenografts i.p. b) A wide-field <t>NIR</t> <t>fluorescence</t> image of the same mouse showing the accumulation of [89Zr]Zr-labetuzumab-IRDye800CW i.p. The greyscale range is [5.0–12]∙106 photons/s∙mm2. c) The large tumor visible in images (a) and (b) was excised and imaged again ex vivo with the wide-field NIR fluorescence imager. The color-scale range is [4.2–58]∙106 photons/s∙mm2. (i.e. fluorescence background and maximum value). d) The same excised tumor imaged with our custom NIRF scanner. The tumor was imaged from the opposite side with respect to the wide-field NIR fluorescence imager. The grayscale ranges from the background count rate to 0.8 times the maximum count rate of the image, in numbers: [1.8–21.6]∙106 photons/s. e) Zoomed in view of the area marked by the red square in (d) showing heterogeneity of the tumor. The connective tissue appears as white (low-fluorescence) areas. The greyscale range is [1.8–21.6]∙106 photons/s. All scale bars are 500 µm.
Wide Field Nir Fluorescence Imager In Vivo Xtreme Imager, supplied by Bruker Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/wide-field nir fluorescence imager in-vivo xtreme imager/product/Bruker Corporation
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Nirmidas Biotech deepvision nir-ii in vivo imaging system
a) PET-CT image of a mouse bearing LS174T colon cancer xenografts i.p. b) A wide-field <t>NIR</t> <t>fluorescence</t> image of the same mouse showing the accumulation of [89Zr]Zr-labetuzumab-IRDye800CW i.p. The greyscale range is [5.0–12]∙106 photons/s∙mm2. c) The large tumor visible in images (a) and (b) was excised and imaged again ex vivo with the wide-field NIR fluorescence imager. The color-scale range is [4.2–58]∙106 photons/s∙mm2. (i.e. fluorescence background and maximum value). d) The same excised tumor imaged with our custom NIRF scanner. The tumor was imaged from the opposite side with respect to the wide-field NIR fluorescence imager. The grayscale ranges from the background count rate to 0.8 times the maximum count rate of the image, in numbers: [1.8–21.6]∙106 photons/s. e) Zoomed in view of the area marked by the red square in (d) showing heterogeneity of the tumor. The connective tissue appears as white (low-fluorescence) areas. The greyscale range is [1.8–21.6]∙106 photons/s. All scale bars are 500 µm.
Deepvision Nir Ii In Vivo Imaging System, supplied by Nirmidas Biotech, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/deepvision nir-ii in vivo imaging system/product/Nirmidas Biotech
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Bruker Corporation multispectral vis-nir fluorescence imaging in vivo xtreme ii
a) PET-CT image of a mouse bearing LS174T colon cancer xenografts i.p. b) A wide-field <t>NIR</t> <t>fluorescence</t> image of the same mouse showing the accumulation of [89Zr]Zr-labetuzumab-IRDye800CW i.p. The greyscale range is [5.0–12]∙106 photons/s∙mm2. c) The large tumor visible in images (a) and (b) was excised and imaged again ex vivo with the wide-field NIR fluorescence imager. The color-scale range is [4.2–58]∙106 photons/s∙mm2. (i.e. fluorescence background and maximum value). d) The same excised tumor imaged with our custom NIRF scanner. The tumor was imaged from the opposite side with respect to the wide-field NIR fluorescence imager. The grayscale ranges from the background count rate to 0.8 times the maximum count rate of the image, in numbers: [1.8–21.6]∙106 photons/s. e) Zoomed in view of the area marked by the red square in (d) showing heterogeneity of the tumor. The connective tissue appears as white (low-fluorescence) areas. The greyscale range is [1.8–21.6]∙106 photons/s. All scale bars are 500 µm.
Multispectral Vis Nir Fluorescence Imaging In Vivo Xtreme Ii, supplied by Bruker Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/multispectral vis-nir fluorescence imaging in vivo xtreme ii/product/Bruker Corporation
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JSR Corporation fluorescent polystyrene latex nanoparticles for nir-ii in vivo imaging
a) PET-CT image of a mouse bearing LS174T colon cancer xenografts i.p. b) A wide-field <t>NIR</t> <t>fluorescence</t> image of the same mouse showing the accumulation of [89Zr]Zr-labetuzumab-IRDye800CW i.p. The greyscale range is [5.0–12]∙106 photons/s∙mm2. c) The large tumor visible in images (a) and (b) was excised and imaged again ex vivo with the wide-field NIR fluorescence imager. The color-scale range is [4.2–58]∙106 photons/s∙mm2. (i.e. fluorescence background and maximum value). d) The same excised tumor imaged with our custom NIRF scanner. The tumor was imaged from the opposite side with respect to the wide-field NIR fluorescence imager. The grayscale ranges from the background count rate to 0.8 times the maximum count rate of the image, in numbers: [1.8–21.6]∙106 photons/s. e) Zoomed in view of the area marked by the red square in (d) showing heterogeneity of the tumor. The connective tissue appears as white (low-fluorescence) areas. The greyscale range is [1.8–21.6]∙106 photons/s. All scale bars are 500 µm.
Fluorescent Polystyrene Latex Nanoparticles For Nir Ii In Vivo Imaging, supplied by JSR Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/fluorescent polystyrene latex nanoparticles for nir-ii in vivo imaging/product/JSR Corporation
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90
Caliper Life Sciences in vivo near-infrared (nir) fluorescence imaging system ivis spectrum imaging system
a) PET-CT image of a mouse bearing LS174T colon cancer xenografts i.p. b) A wide-field <t>NIR</t> <t>fluorescence</t> image of the same mouse showing the accumulation of [89Zr]Zr-labetuzumab-IRDye800CW i.p. The greyscale range is [5.0–12]∙106 photons/s∙mm2. c) The large tumor visible in images (a) and (b) was excised and imaged again ex vivo with the wide-field NIR fluorescence imager. The color-scale range is [4.2–58]∙106 photons/s∙mm2. (i.e. fluorescence background and maximum value). d) The same excised tumor imaged with our custom NIRF scanner. The tumor was imaged from the opposite side with respect to the wide-field NIR fluorescence imager. The grayscale ranges from the background count rate to 0.8 times the maximum count rate of the image, in numbers: [1.8–21.6]∙106 photons/s. e) Zoomed in view of the area marked by the red square in (d) showing heterogeneity of the tumor. The connective tissue appears as white (low-fluorescence) areas. The greyscale range is [1.8–21.6]∙106 photons/s. All scale bars are 500 µm.
In Vivo Near Infrared (Nir) Fluorescence Imaging System Ivis Spectrum Imaging System, supplied by Caliper Life Sciences, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/in vivo near-infrared (nir) fluorescence imaging system ivis spectrum imaging system/product/Caliper Life Sciences
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Bruker Corporation nir-ii fluorescence vivo imaging system
( A ) Synthesis diagram of IR780@BSA@SPIO nanosystem. ( B ) DLS data and TEM characterization of IR780@BSA@SPIO nanosystem. ( C ) T 2 WI image and the relationship between the relaxation value and concentration of IR780@BSA@SPIO nanosystem. ( D ) <t>NIR-II</t> <t>fluorescence</t> imaging of IR780@BSA@SPIO and IR780@BSA two systems, and the relationship between the signal intensity and IR780’s concentration. The image on the top shows the fluorescence image of IR780@BSA while the one at the bottom displays the fluorescence image of IR780@BSA@SPIO. ( E ) Heating absorption and dissipation rocking result of nanosystem under 808 nm laser irradiation at [IR780] 1.5 μg/mL.
Nir Ii Fluorescence Vivo Imaging System, supplied by Bruker Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/nir-ii fluorescence vivo imaging system/product/Bruker Corporation
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90
Kodak in vivo nir fluorescence imaging
( A ) Synthesis diagram of IR780@BSA@SPIO nanosystem. ( B ) DLS data and TEM characterization of IR780@BSA@SPIO nanosystem. ( C ) T 2 WI image and the relationship between the relaxation value and concentration of IR780@BSA@SPIO nanosystem. ( D ) <t>NIR-II</t> <t>fluorescence</t> imaging of IR780@BSA@SPIO and IR780@BSA two systems, and the relationship between the signal intensity and IR780’s concentration. The image on the top shows the fluorescence image of IR780@BSA while the one at the bottom displays the fluorescence image of IR780@BSA@SPIO. ( E ) Heating absorption and dissipation rocking result of nanosystem under 808 nm laser irradiation at [IR780] 1.5 μg/mL.
In Vivo Nir Fluorescence Imaging, supplied by Kodak, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/in vivo nir fluorescence imaging/product/Kodak
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90
Carestream Health nir fluorescence in vivo imaging
( A ) Synthesis diagram of IR780@BSA@SPIO nanosystem. ( B ) DLS data and TEM characterization of IR780@BSA@SPIO nanosystem. ( C ) T 2 WI image and the relationship between the relaxation value and concentration of IR780@BSA@SPIO nanosystem. ( D ) <t>NIR-II</t> <t>fluorescence</t> imaging of IR780@BSA@SPIO and IR780@BSA two systems, and the relationship between the signal intensity and IR780’s concentration. The image on the top shows the fluorescence image of IR780@BSA while the one at the bottom displays the fluorescence image of IR780@BSA@SPIO. ( E ) Heating absorption and dissipation rocking result of nanosystem under 808 nm laser irradiation at [IR780] 1.5 μg/mL.
Nir Fluorescence In Vivo Imaging, supplied by Carestream Health, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/nir fluorescence in vivo imaging/product/Carestream Health
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Image Search Results


a) PET-CT image of a mouse bearing LS174T colon cancer xenografts i.p. b) A wide-field NIR fluorescence image of the same mouse showing the accumulation of [89Zr]Zr-labetuzumab-IRDye800CW i.p. The greyscale range is [5.0–12]∙106 photons/s∙mm2. c) The large tumor visible in images (a) and (b) was excised and imaged again ex vivo with the wide-field NIR fluorescence imager. The color-scale range is [4.2–58]∙106 photons/s∙mm2. (i.e. fluorescence background and maximum value). d) The same excised tumor imaged with our custom NIRF scanner. The tumor was imaged from the opposite side with respect to the wide-field NIR fluorescence imager. The grayscale ranges from the background count rate to 0.8 times the maximum count rate of the image, in numbers: [1.8–21.6]∙106 photons/s. e) Zoomed in view of the area marked by the red square in (d) showing heterogeneity of the tumor. The connective tissue appears as white (low-fluorescence) areas. The greyscale range is [1.8–21.6]∙106 photons/s. All scale bars are 500 µm.

Journal: Biomedical Optics Express

Article Title: High resolution combined molecular and structural optical imaging of colorectal cancer in a xenograft mouse model

doi: 10.1364/BOE.9.006186

Figure Lengend Snippet: a) PET-CT image of a mouse bearing LS174T colon cancer xenografts i.p. b) A wide-field NIR fluorescence image of the same mouse showing the accumulation of [89Zr]Zr-labetuzumab-IRDye800CW i.p. The greyscale range is [5.0–12]∙106 photons/s∙mm2. c) The large tumor visible in images (a) and (b) was excised and imaged again ex vivo with the wide-field NIR fluorescence imager. The color-scale range is [4.2–58]∙106 photons/s∙mm2. (i.e. fluorescence background and maximum value). d) The same excised tumor imaged with our custom NIRF scanner. The tumor was imaged from the opposite side with respect to the wide-field NIR fluorescence imager. The grayscale ranges from the background count rate to 0.8 times the maximum count rate of the image, in numbers: [1.8–21.6]∙106 photons/s. e) Zoomed in view of the area marked by the red square in (d) showing heterogeneity of the tumor. The connective tissue appears as white (low-fluorescence) areas. The greyscale range is [1.8–21.6]∙106 photons/s. All scale bars are 500 µm.

Article Snippet: Thereafter, mice were placed in a wide-field NIR fluorescence imager (In-Vivo Xtreme Imager, Bruker, Leiderdorp, The Netherlands) with excitation and emission filters of 760 nm and 830 nm, respectively for NIR fluorescence imaging for 5 sec. After imaging, the mice were sacrificed and all visible tumor lesions were taken out for ex vivo wide-field NIR fluorescence imaging.

Techniques: Positron Emission Tomography-Computed Tomography, Fluorescence, Ex Vivo

( A ) Synthesis diagram of IR780@BSA@SPIO nanosystem. ( B ) DLS data and TEM characterization of IR780@BSA@SPIO nanosystem. ( C ) T 2 WI image and the relationship between the relaxation value and concentration of IR780@BSA@SPIO nanosystem. ( D ) NIR-II fluorescence imaging of IR780@BSA@SPIO and IR780@BSA two systems, and the relationship between the signal intensity and IR780’s concentration. The image on the top shows the fluorescence image of IR780@BSA while the one at the bottom displays the fluorescence image of IR780@BSA@SPIO. ( E ) Heating absorption and dissipation rocking result of nanosystem under 808 nm laser irradiation at [IR780] 1.5 μg/mL.

Journal: Regenerative Biomaterials

Article Title: Albumin-based nanosystem for dual-modality imaging-guided chem-phototherapy against immune-cold triple-negative breast cancer

doi: 10.1093/rb/rbad073

Figure Lengend Snippet: ( A ) Synthesis diagram of IR780@BSA@SPIO nanosystem. ( B ) DLS data and TEM characterization of IR780@BSA@SPIO nanosystem. ( C ) T 2 WI image and the relationship between the relaxation value and concentration of IR780@BSA@SPIO nanosystem. ( D ) NIR-II fluorescence imaging of IR780@BSA@SPIO and IR780@BSA two systems, and the relationship between the signal intensity and IR780’s concentration. The image on the top shows the fluorescence image of IR780@BSA while the one at the bottom displays the fluorescence image of IR780@BSA@SPIO. ( E ) Heating absorption and dissipation rocking result of nanosystem under 808 nm laser irradiation at [IR780] 1.5 μg/mL.

Article Snippet: The NIR-II fluorescence in vivo imaging system was carried out and a 9.4 T MRI instrument (Bruker, America) was used to perform in vivo MRI studies.

Techniques: Concentration Assay, Fluorescence, Imaging, Irradiation

( A ) In vivo MR imaging of tumor-bearing mice after injection of IR780@BSA@SPIO nanosystem. Color according to the local gray value. ( B ) NIR-II fluorescence imaging of tumor-bearing mice administrated with various drugs and isolated organs and tumors after 72 h (H: heart; Li: liver; S: spleen; L: lung; K: kidney; T: tumor). Semi-quantitative analysis of fluorescence intensity from tumor-bearing mice ( C ) and isolated organs and tumors ( D ). The data are expressed as mean ± standard deviation ( n = 3). Signal intensity differences between BSA-based nanosystems and free IR780 group were analyzed, * P < 0.05.

Journal: Regenerative Biomaterials

Article Title: Albumin-based nanosystem for dual-modality imaging-guided chem-phototherapy against immune-cold triple-negative breast cancer

doi: 10.1093/rb/rbad073

Figure Lengend Snippet: ( A ) In vivo MR imaging of tumor-bearing mice after injection of IR780@BSA@SPIO nanosystem. Color according to the local gray value. ( B ) NIR-II fluorescence imaging of tumor-bearing mice administrated with various drugs and isolated organs and tumors after 72 h (H: heart; Li: liver; S: spleen; L: lung; K: kidney; T: tumor). Semi-quantitative analysis of fluorescence intensity from tumor-bearing mice ( C ) and isolated organs and tumors ( D ). The data are expressed as mean ± standard deviation ( n = 3). Signal intensity differences between BSA-based nanosystems and free IR780 group were analyzed, * P < 0.05.

Article Snippet: The NIR-II fluorescence in vivo imaging system was carried out and a 9.4 T MRI instrument (Bruker, America) was used to perform in vivo MRI studies.

Techniques: In Vivo, Imaging, Injection, Fluorescence, Isolation, Standard Deviation