Search results for "Stone composition"

showing 2 items of 2 documents

Kidney Stones in Primary Hyperoxaluria: New Lessons Learnt

2013

To investigate potential differences in stone composition with regard to the type of Primary Hyperoxaluria (PH), and in relation to the patient’s medical therapy (treatment naïve patients versus those on preventive medication) we examined twelve kidney stones from ten PH I and six stones from four PH III patients. Unfortunately, no PH II stones were available for analysis. The study on this set of stones indicates a more diverse composition of PH stones than previously reported and a potential dynamic response of morphology and composition of calculi to treatment with crystallization inhibitors (citrate, magnesium) in PH I. Stones formed by PH I patients under treatment are more compact and…

MaleBiomineralizationMineral Metabolism and the KidneyAnatomy and Physiology030232 urology & nephrologyCalcium oxalatelcsh:Medicine030204 cardiovascular system & hematologyPrimary hyperoxaluriachemistry.chemical_compound0302 clinical medicineMaterials ChemistryKidney StonesStone compositionChildlcsh:ScienceMineralsMultidisciplinaryMineralogyResponse to treatmentNephrologyMedicineMaterials CharacterizationResearch ArticleBiotechnologyAdultmedicine.medical_specialtyAdolescentUrologyUrinary systemMaterials ScienceUrologyengineering.materialBiomaterialsKidney CalculiYoung Adult03 medical and health sciencesmedicineHumansBiologyCalcium OxalateWhewellitelcsh:Rmedicine.diseaseSurgerychemistryHyperoxaluria PrimaryEarth Sciencesengineeringlcsh:QKidney stonesPhysiological ProcessesWeddellitePLoS ONE
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Efficacy of single-source rapid kV-switching dual-energy CT for characterization of non-uric acid renal stones: a prospective ex vivo study using ant…

2019

Purpose To investigate the accuracy of rapid kV-switching single-source dual-energy computed tomography (rsDECT) for prediction of classes of non-uric-acid stones. Materials and methods Non-uric-acid renal stones retrieved via percutaneous nephrolithotomy were prospectively collected between January 2017 and February 2018 in a single institution. Only stones >= 5 mm and with pure composition (i.e., >= 80% composed of one component) were included. Stone composition was determined using Fourier Transform Infrared Spectroscopy. The stones were scanned in 32-cm-wide anthropomorphic whole-body phantom using rsDECT. The effective atomic number (Zeff), the attenuation at 40 keV (HU40), 70 ke…

AdultMaleUrologymedicine.medical_treatmentStone compositionNephrolithotomy PercutaneousImaging phantom030218 nuclear medicine & medical imagingRapid kVp switchingRadiography Dual-Energy Scanned Projection03 medical and health scienceschemistry.chemical_compoundSingle-source0302 clinical medicineSpectroscopy Fourier Transform InfraredmedicineHumansUrolithiasiRadiology Nuclear Medicine and imagingProspective StudiesStone compositionKidney stonePercutaneous nephrolithotomyAgedRadiological and Ultrasound TechnologyPhantoms Imagingbusiness.industryGastroenterologyMiddle Agedmedicine.diseaseDual-energy CTchemistry030220 oncology & carcinogenesisMann–Whitney U testRadiographic Image Interpretation Computer-AssistedUric acidFemaleUrinary CalculiKidney stonesDual energy ctTomography X-Ray ComputedNuclear medicinebusinessSettore MED/36 - Diagnostica Per Immagini E RadioterapiaEffective atomic number
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