The PVOH device: our first stop on the path to small and very small physical embodiments of the PV[O]H algorithm
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Jonathan Cormier | Seth Fillioe | Joseph Chaiken | Charles M. Peterson | David Rice | Jeffrey Bebernes | Sheryl Bebernes | John Fayos | Michael Houk | Howard Ammenheuser | J. Chaiken | Seth Fillioe | Charles M. Peterson | H. Ammenheuser | J. Fayos | David Rice | Jeff Bebernes | Jonathan Cormier | Michael Houk | Sheryl Bebernes
[1] Bin Deng,et al. Continuous noninvasive in vivo monitoring of intravascular plasma volume and hematocrit changes during hemodialysis in humans: direct comparison with the CRIT-LINE , 2014, Photonics West - Biomedical Optics.
[2] Elena Salomatina,et al. Optical properties of normal and cancerous human skin in the visible and near-infrared spectral range. , 2006, Journal of biomedical optics.
[3] J. Chaiken,et al. On probing human fingertips in vivo using near-infrared light: model calculations. , 2010, Journal of biomedical optics.
[4] Michael S Feld,et al. Turbidity-corrected Raman spectroscopy for blood analyte detection. , 2009, Analytical chemistry.
[5] Jerry Goodisman,et al. Simultaneous, noninvasive observation of elastic scattering, fluorescence and inelastic scattering as a monitor of blood flow and hematocrit in human fingertip capillary beds. , 2009, Journal of biomedical optics.
[6] Jerry Goodisman,et al. Analyzing near infrared scattering from human skin to monitor changes in hematocrit , 2011, Other Conferences.
[7] J. Chaiken,et al. Coupled Turbidity and Spectroscopy Problems: A Simple Algorithm for the Volumetric Analysis of Optically Thin or Dilute Two-Phase Systems , 2015, Applied spectroscopy.
[8] Bin Deng,et al. Continuous noninvasive in vivo monitoring of intravascular plasma volume and hematocrit changes in response to blood removal and fluid replacement in a rat model , 2014, Photonics West - Biomedical Optics.
[9] Bin Deng,et al. Direct noninvasive observation of near infrared photobleaching of autofluorescence in human volar side fingertips in vivo , 2010, BiOS.
[10] A. Goodship,et al. Numerical Simulations of Subsurface Probing in Diffusely Scattering Media Using Spatially Offset Raman Spectroscopy , 2005, Applied spectroscopy.
[11] Bin Deng,et al. Singlet oxygen induced advanced glycation end-product photobleaching of in vivo human fingertip autofluorescence , 2012, Other Conferences.
[12] J. M. Jameson,et al. Quantitative Chemical Analysis , 1944, Nature.
[13] Bin Deng,et al. Simultaneous, noninvasive, in vivo, continuous monitoring of hematocrit, vascular volume, hemoglobin oxygen saturation, pulse rate and breathing rate in humans and other animal models using a single light source , 2018, BiOS.
[14] J. Chaiken,et al. Coupled Turbidity and Spectroscopy Problems: A Simple Algorithm for Volumetric Analysis of Optically Thin or Dilute, In Vitro Bacterial Cultures in Various Media , 2020, Applied spectroscopy.
[15] Seth Fillioe,et al. In vivo, noncontact, real-time, PV[O]H imaging of the immediate local physiological response to spinal cord injury in a rat model , 2019, Journal of biomedical optics.
[16] Martina Meinke,et al. Optical properties of platelets and blood plasma and their influence on the optical behavior of whole blood in the visible to near infrared wavelength range. , 2007, Journal of Biomedical Optics.
[17] A. L. Koch,et al. Turbidity measurements of bacterial cultures in some available commercial instruments. , 1970, Analytical biochemistry.