Paper
Evaluation of iohexol as a marker for the clinical measurement of glomerular filtration rate in dogs.
Published Mar 1, 1996 · A. Gleadhill, A. Michell
Research in veterinary science
Q1 SJR score
55
Citations
3
Influential Citations
Abstract
Abstract hidden due to publisher request; this does not indicate any issues with the research. Click the full text link above to read the abstract and view the original source.
Study Snapshot
Iohexol is a stable and effective marker for measuring glomerular filtration rate in dogs with renal impairment, providing comparable results but fractionally lower than Tc-DTPA.
PopulationOlder adults (50-71 years)
Sample size24
MethodsObservational
OutcomesBody Mass Index projections
ResultsSocial networks mitigate obesity in older groups.
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References
A simple method for measuring glomerular filtration rate in dogs.
This study presents a simple method for measuring glomerular filtration rate in dogs using six-sample plasma clearance and extracellular fluid volume, with potential clinical utility.
1995·43citations·A. Gleadhill et al.·Research in veterinary science
Research in veterinary science
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1993·25citations·G. Porter·Investigative Radiology
Investigative Radiology
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Investigative Radiology
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Investigative Radiology
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The Estimate of Glomerular Filtration Rate during Urography: Acceptability of a Nonionic Contrast Medium as a Marker of Renal Function
No change in renal function is observed during or 48 hours after iohexol contrast injection, making it suitable for estimating glomerular filtration rate during urography.
1992·25citations·S. Brown et al.·Investigative Radiology
Investigative Radiology
Measurement of renal function with iohexol. A comparison of iohexol, 99mTc-DTPA, and 51Cr-EDTA clearance.
Iohexol clearance measurement is as valid as 51Cr-EDTA and 99mTc-DTPA clearance measurements, allowing for urography and glomerular filtration rate determination using a single injection of iohexol.
1990·87citations·H. Effersöe et al.·Investigative radiology
Investigative radiology
Glomerular filtration rate estimated by X-ray fluorescence technique in children: comparison between the plasma disappearance of 99Tcm-DTPA and iohexol after urography.
X-ray fluorescence technique accurately estimates glomerular filtration rate in children aged 2-13 years, with no change in glomerular filtration rate after iohexol injection.
1990·38citations·G. Stake et al.·Scandinavian journal of clinical and laboratory investigation
Scandinavian journal of clinical and laboratory investigation
Citations
Population Pharmacokinetic Model of Iohexol in Dogs to Estimate Glomerular Filtration Rate and Optimize Sampling Time
A population pharmacokinetic model can accurately estimate iohexol plasma clearance in dogs, enabling precise estimation of glomerular filtration rate using a low number of samples.
2021·6citations·S. Baklouti et al.·Frontiers in Pharmacology
Frontiers in Pharmacology
Relationship between serum iohexol clearance, serum SDMA concentration, and serum creatinine concentration in non‐azotemic dogs
Using a cutoff of >18 g/dL for SDMA in non-azotemic dogs increases specificity for detecting decreased renal function without compromising sensitivity.
2019·26citations·M. McKenna et al.·Journal of Veterinary Internal Medicine
Journal of Veterinary Internal Medicine
Clinical utility of estimation of glomerular filtration rate in dogs
GFR estimation is useful for diagnosing chronic kidney disease in dogs before the onset of azotemia.
2019·16citations·M. McKenna et al.·Journal of Veterinary Internal Medicine
Journal of Veterinary Internal Medicine
Iohexol Clearance for Determination of Glomerular Filtration Rate in Rats Induced to Acute Renal Failure
Iohexol clearance is a reliable marker of glomerular filtration rate in rats with induced acute renal failure, offering a significant advantage over InCl measurement.
2015·12citations·M. T. Passos et al.·PLoS ONE
PLoS ONE
Determination of iodinated X-ray contrast agents in pharmaceutical formulations and artificial urine samples by differential pulse voltammetry
The developed differential pulse voltammetry method effectively determines iodinated X-ray contrast agents (IOP, ION, and DTZA) in pharmaceutical formulations and artificial urine samples, with good linear behavior and recovery studies.
2014·0citations·P. Markowski et al.·Analytical Methods
Analytical Methods