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Miguel A Pleitez

Showing results (1-10 of 23) with videos related to

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Nature Reviews. Endocrinology|May 28, 2021
Author Correction: Optoacoustic imaging in endocrinology and metabolismAngelos Karlas, Miguel A Pleitez, Juan Aguirre, et al.
Nature Reviews. Endocrinology|April 20, 2021
Optoacoustic imaging in endocrinology and metabolismAngelos Karlas, Miguel A Pleitez, Juan Aguirre, et al.
Light, Science & Applications|March 7, 2019
Looking at sound: optoacoustics with all-optical ultrasound detectionGeorg Wissmeyer, Miguel A Pleitez, Amir Rosenthal, et al.
Analytical Chemistry|November 12, 2021
Wide-Field Mid-Infrared Hyperspectral Imaging by Snapshot Phase Contrast Measurement of Optothermal ExcitationTao Yuan, Miguel A Pleitez, Francesca Gasparin, et al.
Cell Metabolism|October 2, 2018
Emerging Technologies to Image Tissue MetabolismVasilis Ntziachristos, Miguel A Pleitez, Silvio Aime, et al.
The Analyst|January 19, 2017
Depth-selective photothermal IR spectroscopy of skin: potential application for non-invasive glucose measurementOtto Hertzberg, Alexander Bauer, Arne Küderle, et al.
Science Advances|February 21, 2024
Phase-shifting optothermal microscopy enables live-cell mid-infrared hyperspectral imaging of large cell populations at high confluencyTao Yuan, Lucas Riobo, Francesca Gasparin, et al.
Journal of Biophotonics|April 19, 2017
IR-spectroscopy of skin in vivo: Optimal skin sites and properties for non-invasive glucose measurement by photoacoustic and photothermal spectroscopyAlexander Bauer, Otto Hertzberg, Arne Küderle, et al.
Spectrochimica Acta. Part A, Molecular and Biomolecular Spectroscopy|May 14, 2017
Infrared reflectometry of skin: Analysis of backscattered light from different skin layersMiguel A Pleitez, Otto Hertzberg, Alexander Bauer, et al.
The Review of Scientific Instruments|September 7, 2013
Windowless ultrasound photoacoustic cell for in vivo mid-IR spectroscopy of human epidermis: low interference by changes of air pressure, temperature, and humidity caused by skin contact opens the possibility for a non-invasive monitoring of glucose in the interstitial fluidMiguel A Pleitez, Tobias Lieblein, Alexander Bauer, et al.
Pageof 3

Showing results (1-10 of 23) with videos related to

Sort By:
Pageof 3
Nature Reviews. Endocrinology|May 28, 2021
Author Correction: Optoacoustic imaging in endocrinology and metabolismAngelos Karlas, Miguel A Pleitez, Juan Aguirre, et al.
Nature Reviews. Endocrinology|April 20, 2021
Optoacoustic imaging in endocrinology and metabolismAngelos Karlas, Miguel A Pleitez, Juan Aguirre, et al.
Light, Science & Applications|March 7, 2019
Looking at sound: optoacoustics with all-optical ultrasound detectionGeorg Wissmeyer, Miguel A Pleitez, Amir Rosenthal, et al.
Analytical Chemistry|November 12, 2021
Wide-Field Mid-Infrared Hyperspectral Imaging by Snapshot Phase Contrast Measurement of Optothermal ExcitationTao Yuan, Miguel A Pleitez, Francesca Gasparin, et al.
Cell Metabolism|October 2, 2018
Emerging Technologies to Image Tissue MetabolismVasilis Ntziachristos, Miguel A Pleitez, Silvio Aime, et al.
The Analyst|January 19, 2017
Depth-selective photothermal IR spectroscopy of skin: potential application for non-invasive glucose measurementOtto Hertzberg, Alexander Bauer, Arne Küderle, et al.
Science Advances|February 21, 2024
Phase-shifting optothermal microscopy enables live-cell mid-infrared hyperspectral imaging of large cell populations at high confluencyTao Yuan, Lucas Riobo, Francesca Gasparin, et al.
Journal of Biophotonics|April 19, 2017
IR-spectroscopy of skin in vivo: Optimal skin sites and properties for non-invasive glucose measurement by photoacoustic and photothermal spectroscopyAlexander Bauer, Otto Hertzberg, Arne Küderle, et al.
Spectrochimica Acta. Part A, Molecular and Biomolecular Spectroscopy|May 14, 2017
Infrared reflectometry of skin: Analysis of backscattered light from different skin layersMiguel A Pleitez, Otto Hertzberg, Alexander Bauer, et al.
The Review of Scientific Instruments|September 7, 2013
Windowless ultrasound photoacoustic cell for in vivo mid-IR spectroscopy of human epidermis: low interference by changes of air pressure, temperature, and humidity caused by skin contact opens the possibility for a non-invasive monitoring of glucose in the interstitial fluidMiguel A Pleitez, Tobias Lieblein, Alexander Bauer, et al.
Pageof 3