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Spectroscopy / Medical imaging / Medical physics / Microscopy / Molecular imaging / Fluorescence-lifetime imaging microscopy / Fluorescence / Preclinical imaging / Nitrogen-vacancy center / Chemistry / Physics / Science


Wide-field in vivo background free imaging by selective magnetic modulation of nanodiamond fluorescence Susanta K. Sarkar,1,5 Ambika Bumb,1,5 Xufeng Wu,2 Kem A. Sochacki,1 Peter Kellman,3 Martin W. Brechbiel,4 and Keir C
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Company

Laboratory Supplies Company Inc. / Sentinel / Sigma-Aldrich / APW Company / Charles River Laboratories / Spectrum Laboratories / pathway NV / fluorescent NV / G. Hermosillo / /

Country

United States / /

Currency

USD / /

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Event

FDA Phase / Company Expansion / /

Facility

Blood Institute / Laboratory Animal Care / National Cancer Institute / Laboratory of Molecular Biophysics / /

IndustryTerm

vivo near-infrared fluorescence imaging / nanodiamond imaging capabilities / lock-in algorithm / fluorescence-based imaging / chemical probes / optical imaging probes / injection site / lifetime imaging / in vivo background free imaging / lock-in processing / in vivo imaging applications / in-vivo fluorescence imaging / in vivo optical imaging / wide-field backgroundfree imaging technique / quantum dot lymphatic imaging / background-free imaging scheme / fluorescence imaging / long-term imaging / imaging / in vivo fluorescence imaging / gas mixtures / biocompatible imaging probes / spectral unmixing algorithms / nanodot systems / Fluorescence lifetime imaging techniques / dye solution / Background-free imaging / Background-free imaging using wide-field lock-in detection / multicolor imaging / background-free selective imaging / in vivo imaging / image processing / energy level structure / lock-in detection imaging microscopy / fluorescence imaging platforms / field imaging / biological imaging / wide-field background-free imaging / contrast-enhanced imaging / lock-in post-processing / Excess solution / lymph node imaging / optical imaging / software-based approach / applied backgroundfree imaging technique / anesthetized using gas mixtures / /

Organization

National Cancer Institute / Optical Society of America OCIS / Laboratory of Molecular Biophysics / National Heart / Lung / and Blood Institute / American Association for Laboratory Animal Care / Molecular Biophysics / National Heart / Lung / and Blood Institute / National Cancer Institute’s Animal Care and Use Committee / Any / Cell Biology & Physiology Center / Bank of England / /

Person

Y. Urano / A. Jarmola / V / H. Kobayashi / P. L. Choyke / N. Kosaka / Nat / T. Barrett / M. Bernardo / J. G. Egen / M. W. Brechbiel / A. Bumb / K. C. Neuman / P. R. Hemmer / Y. Hama / S. K. Sarkar / N. Sato / N. Billington / C. A. Regino / Grace BioLabs / M. Ogawa / Y. Koyama / P. J. Dobson / R. N. Germain / /

Product

Avanti / FND / /

ProvinceOrState

Maryland / Ontario / /

Technology

quantum dots / Radiation / microwave / image processing / lock-in algorithm / laser / drug delivery / Biomaterials / spectral unmixing algorithms / Maestro protocol / dialysis / performed following the Maestro protocol / /

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