A Novel Analysis Technique for Transcutaneous Measurement of Glomerular Filtration Rate With Ultralow Dose Marker Concentrations
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Matthias Radle | Jürgen Hesser | Dzmitry Stsepankou | de H Herdt | Yury Shulhevich | Volker Buschmann | Anatoli Shmarlouski | Daniel Schock-Kusch | Tino Rohlicke | Deborah Herdt | J. Hesser | V. Buschmann | M. Rädle | D. Stsepankou | Daniel Schock-Kusch | Yury Shulhevich | Tino Rohlicke | Anatoli Shmarlouski
[1] B. Molitoris,et al. Rapid diagnosis and quantification of acute kidney injury using fluorescent ratio-metric determination of glomerular filtration rate in the rat. , 2010, American journal of physiology. Renal physiology.
[2] Uwe Ortmann,et al. Time-Resolved Fluorescence: Novel Technical Solutions , 2008 .
[3] N. Gretz,et al. Transcutaneous measurement of renal function in conscious mice. , 2012, American journal of physiology. Renal physiology.
[4] Kimberly R. Gaston,et al. Hydrophilic pyrazine dyes as exogenous fluorescent tracer agents for real-time point-of-care measurement of glomerular filtration rate. , 2011, Journal of medicinal chemistry.
[5] Michael Wahl,et al. Time-Correlated Single Photon Counting , 2009 .
[6] K. Bernstein,et al. Renal Generation of Angiotensin II and the Pathogenesis of Hypertension , 2014, Current Hypertension Reports.
[7] N. Gretz,et al. Transcutaneous assessment of renal function in conscious rats with a device for measuring FITC-sinistrin disappearance curves. , 2011, Kidney international.
[8] N. Gretz,et al. Fluorescein-labeled sinistrin as marker of glomerular filtration rate. , 2005, European journal of medicinal chemistry.
[9] N. Gretz,et al. Progression of Glomerular Filtration Rate Reduction Determined in Conscious Dahl Salt-Sensitive Hypertensive Rats , 2013, Hypertension.
[10] K. Svanberg,et al. Autofluorescence of various rodent tissues and human skin tumour samples , 2007, Lasers in Medical Science.
[11] H. Dickinson,et al. Transcutaneous measurement of glomerular filtration rate in small rodents: Through the skin for the win? , 2015, Nephrology.
[12] Ruben M Sandoval,et al. Rapid determination of renal filtration function using an optical ratiometric imaging approach. , 2007, American journal of physiology. Renal physiology.
[13] C. Rabito,et al. Optical, real-time monitoring of the glomerular filtration rate. , 2005, Applied optics.
[14] Jürgen Hesser,et al. Automatic artifact removal from GFR measurements , 2014, Biomed. Signal Process. Control..
[15] N. Gretz,et al. Online feedback-controlled renal constant infusion clearances in rats. , 2012, Kidney international.
[16] Rainer Erdmann,et al. Integrated multichannel photon timing instrument with very short dead time and high throughput. , 2013, The Review of scientific instruments.
[17] R. Ryan,et al. Null mutation of the nicotinamide adenine dinucleotide phosphate-oxidase subunit p67phox protects the Dahl-S rat from salt-induced reductions in medullary blood flow and glomerular filtration rate. , 2015, Hypertension.
[18] Inesa Ferulova,et al. Photobleaching effects on in vivo skin autofluorescence lifetime , 2015, Journal of biomedical optics.
[19] Matteo Trudu,et al. Common noncoding UMOD gene variants induce salt-sensitive hypertension and kidney damage by increasing uromodulin expression , 2013, Nature Medicine.
[20] Kimberly R. Gaston,et al. Exogenous fluorescent tracer agents based on pegylated pyrazine dyes for real-time point-of-care measurement of glomerular filtration rate. , 2012, Bioorganic & medicinal chemistry.
[21] C. MacAulay,et al. The Dynamics of Laser‐Induced Changes in Human Skin Autofluorescence—Experimental Measurements and Theoretical Modeling , 1998, Photochemistry and photobiology.
[22] J. Valentin,et al. Renal studies in safety pharmacology and toxicology: A survey conducted in the top 15 pharmaceutical companies. , 2015, Journal of pharmacological and toxicological methods.
[23] N. Gretz,et al. A Pilot Study to Assess the Feasibility of Transcutaneous Glomerular Filtration Rate Measurement Using Fluorescence-Labelled Sinistrin in Dogs and Cats , 2014, PloS one.
[24] N. Gretz,et al. Transcutaneous measurement of glomerular filtration rate using FITC-sinistrin in rats. , 2009, Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association.
[25] C. Sticht,et al. Reliability of Transcutaneous Measurement of Renal Function in Various Strains of Conscious Mice , 2013, PloS one.
[26] E. Delpire,et al. Renal angiotensin-converting enzyme is essential for the hypertension induced by nitric oxide synthesis inhibition. , 2014, Journal of the American Society of Nephrology : JASN.
[27] B. Molitoris. Measuring glomerular filtration rate in the intensive care unit: no substitutes please , 2013, Critical Care.
[28] J. Duncan,et al. Noninvasive fluorescence detection of hepatic and renal function. , 1998, Journal of biomedical optics.
[29] L. Schad,et al. Simultaneous Measurement of Kidney Function by Dynamic Contrast Enhanced MRI and FITC-Sinistrin Clearance in Rats at 3 Tesla: Initial Results , 2013, PLoS ONE.
[30] Exing Wang,et al. A portable fiberoptic ratiometric fluorescence analyzer provides rapid point-of-care determination of glomerular filtration rate in large animals. , 2012, Kidney international.
[31] Michael Wahl,et al. Dead-time effects in TCSPC data analysis , 2007, SPIE Optics + Optoelectronics.
[32] N. Gretz,et al. Pharmacological profile and toxicity of fluorescein-labelled sinistrin, a novel marker for GFR measurements , 2006, Naunyn-Schmiedeberg's Archives of Pharmacology.
[33] M. Patting,et al. Pattern-Based Linear Unmixing for Efficient and Reliable Analysis of Multicomponent TCSPC Data , 2014 .
[34] John W Pickering,et al. Clearance and beyond: the complementary roles of GFR measurement and injury biomarkers in acute kidney injury (AKI). , 2011, American journal of physiology. Renal physiology.