Human kidney stones: a natural record of universal biomineralization
Sivaguru M, Saw J, Wilson E, Lieske J, Krambeck A, Williams J, Romero M, Fouke K, Curtis M, Kear-Scott J, Chia N, Fouke B. Human kidney stones: a natural record of universal biomineralization. Nature Reviews Urology 2021, 18: 404-432. PMID: 34031587, DOI: 10.1038/s41585-021-00469-x.Peer-Reviewed Original ResearchConceptsHot spring depositsCalcium-rich mineralsFields of geologyFundamental natural processesBillions of yearsDisequilibrium precipitationParagenetic sequenceConcentric zoningDeep subsurfaceNatural recordsSector zoneRoman aqueductCoral reefsNatural processesBroad length scalesCrystal aggregatesIndividual stonesHydroxyapatite spherulesThermodynamic energeticsOrders of magnitudeNew transdisciplinary approachDissolutionTotal volumeRecrystallizationStratigraphyIn Vivo Entombment of Bacteria and Fungi during Calcium Oxalate, Brushite, and Struvite Urolithiasis.
Saw J, Sivaguru M, Wilson E, Dong Y, Sanford R, Fields C, Cregger M, Merkel A, Bruce W, Weber J, Lieske J, Krambeck A, Rivera M, Large T, Lange D, Bhattacharjee A, Romero M, Chia N, Fouke B. In Vivo Entombment of Bacteria and Fungi during Calcium Oxalate, Brushite, and Struvite Urolithiasis. Kidney360 2021, 2: 298-311. PMID: 35373025, PMCID: PMC8740987, DOI: 10.34067/kid.0006942020.Peer-Reviewed Original Research