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Schematic of the thermal endoscopic imaging system. ( a ) The experimental setup for thermal endoscopy. ( b ) Evaluation result of the temperature sensing ability of the ITME. ( c ) IR images of the 0.1 mm pinhole attached to a heating pad. Two <t>colormaps</t> (gray and jet) from MATLAB are utilized. Scale bar: 0.2 mm. (d) X and Y-axis line profiles of 0.1 mm pinhole images including (c) (gray). The averaged FWHM of the X and Y-axes is calculated from 15 line profiles of each axis. (green and orange). (e) Conceptual diagram illustrating temperature changes in tumor and neighboring tissues during thermal modulation (cooling).
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Schematic of the thermal endoscopic imaging system. ( a ) The experimental setup for thermal endoscopy. ( b ) Evaluation result of the temperature sensing ability of the ITME. ( c ) IR images of the 0.1 mm pinhole attached to a heating pad. Two <t>colormaps</t> (gray and jet) from MATLAB are utilized. Scale bar: 0.2 mm. (d) X and Y-axis line profiles of 0.1 mm pinhole images including (c) (gray). The averaged FWHM of the X and Y-axes is calculated from 15 line profiles of each axis. (green and orange). (e) Conceptual diagram illustrating temperature changes in tumor and neighboring tissues during thermal modulation (cooling).
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Schematic of the thermal endoscopic imaging system. ( a ) The experimental setup for thermal endoscopy. ( b ) Evaluation result of the temperature sensing ability of the ITME. ( c ) IR images of the 0.1 mm pinhole attached to a heating pad. Two <t>colormaps</t> (gray and jet) from MATLAB are utilized. Scale bar: 0.2 mm. (d) X and Y-axis line profiles of 0.1 mm pinhole images including (c) (gray). The averaged FWHM of the X and Y-axes is calculated from 15 line profiles of each axis. (green and orange). (e) Conceptual diagram illustrating temperature changes in tumor and neighboring tissues during thermal modulation (cooling).
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Schematic of the thermal endoscopic imaging system. ( a ) The experimental setup for thermal endoscopy. ( b ) Evaluation result of the temperature sensing ability of the ITME. ( c ) IR images of the 0.1 mm pinhole attached to a heating pad. Two <t>colormaps</t> (gray and jet) from MATLAB are utilized. Scale bar: 0.2 mm. (d) X and Y-axis line profiles of 0.1 mm pinhole images including (c) (gray). The averaged FWHM of the X and Y-axes is calculated from 15 line profiles of each axis. (green and orange). (e) Conceptual diagram illustrating temperature changes in tumor and neighboring tissues during thermal modulation (cooling).
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Schematic of the thermal endoscopic imaging system. ( a ) The experimental setup for thermal endoscopy. ( b ) Evaluation result of the temperature sensing ability of the ITME. ( c ) IR images of the 0.1 mm pinhole attached to a heating pad. Two <t>colormaps</t> (gray and jet) from MATLAB are utilized. Scale bar: 0.2 mm. (d) X and Y-axis line profiles of 0.1 mm pinhole images including (c) (gray). The averaged FWHM of the X and Y-axes is calculated from 15 line profiles of each axis. (green and orange). (e) Conceptual diagram illustrating temperature changes in tumor and neighboring tissues during thermal modulation (cooling).
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Schematic of the thermal endoscopic imaging system. ( a ) The experimental setup for thermal endoscopy. ( b ) Evaluation result of the temperature sensing ability of the ITME. ( c ) IR images of the 0.1 mm pinhole attached to a heating pad. Two <t>colormaps</t> (gray and jet) from MATLAB are utilized. Scale bar: 0.2 mm. (d) X and Y-axis line profiles of 0.1 mm pinhole images including (c) (gray). The averaged FWHM of the X and Y-axes is calculated from 15 line profiles of each axis. (green and orange). (e) Conceptual diagram illustrating temperature changes in tumor and neighboring tissues during thermal modulation (cooling).
Matlab Gray Colormap, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Schematic of the thermal endoscopic imaging system. ( a ) The experimental setup for thermal endoscopy. ( b ) Evaluation result of the temperature sensing ability of the ITME. ( c ) IR images of the 0.1 mm pinhole attached to a heating pad. Two colormaps (gray and jet) from MATLAB are utilized. Scale bar: 0.2 mm. (d) X and Y-axis line profiles of 0.1 mm pinhole images including (c) (gray). The averaged FWHM of the X and Y-axes is calculated from 15 line profiles of each axis. (green and orange). (e) Conceptual diagram illustrating temperature changes in tumor and neighboring tissues during thermal modulation (cooling).

Journal: Scientific Reports

Article Title: Infrared thermal modulation endoscopy for label-free tumor detection

doi: 10.1038/s41598-024-76173-8

Figure Lengend Snippet: Schematic of the thermal endoscopic imaging system. ( a ) The experimental setup for thermal endoscopy. ( b ) Evaluation result of the temperature sensing ability of the ITME. ( c ) IR images of the 0.1 mm pinhole attached to a heating pad. Two colormaps (gray and jet) from MATLAB are utilized. Scale bar: 0.2 mm. (d) X and Y-axis line profiles of 0.1 mm pinhole images including (c) (gray). The averaged FWHM of the X and Y-axes is calculated from 15 line profiles of each axis. (green and orange). (e) Conceptual diagram illustrating temperature changes in tumor and neighboring tissues during thermal modulation (cooling).

Article Snippet: Two colormaps (gray and jet) from MATLAB are utilized.

Techniques: Imaging