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Due to its high soft tissue contrast and the lack of ionizing irradiation Magnetic resonance imaging (MRI) is also considered useful to monitor kidney volume changes in ADPKD.
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To monitor kidney function serum creatinine and urea levels were monitored over a period of seven days following renal IR.
To monitor kidney function, the albumin-to creatinine ratio (ACR) was measured on spot urines.
It is thus important to monitor kidney function regularly, using an adequate assay.
Regarding SAKI prevention, ScvO2 monitoring performs better than lactate clearance rate or renal Doppler for monitoring kidney perfusion.
Some investigators have trialled noninvasive approaches to monitoring kidney disease severity and efficacy of dialysis treatment.
The analysis of sequential MRI scans was shown to be accurate to monitor rates of kidney volume enlargement in ADPKD [ 7].
In AKI, a frequent finding is the increase in the kidney volume due to edema [4].
Kidney volume was measured to be approximately 5 cm3, based on CT analysis.
Plasma clearance was estimated from FDG excretion by multiplying the kidney volume with the corresponding rate coefficient after fitting the model to total kidney TACs.
In autosomal dominant polycystic kidney disease (ADPKD), obtaining measured total kidney volume (mTKV) by magnetic resonance (MR) imaging and manual tracing is time consuming.
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