For: | Baumann JM, Affolter B. From crystalluria to kidney stones, some physicochemical aspects of calcium nephrolithiasis. World J Nephrol 2014; 3(4): 256-267 [PMID: 25374820 DOI: 10.5527/wjn.v3.i4.256] |
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URL: | https://www.wjgnet.com/2220-6124/full/v3/i4/256.htm |
Number | Citing Articles |
1 |
Dominique Bazin, Michel Daudon, Vincent Frochot, Jean-Philippe Haymann, Emmanuel Letavernier. Foreword to microcrystalline pathologies: combining clinical activity and fundamental research at the nanoscale. Comptes Rendus. Chimie 2022; 25(S1): 11 doi: 10.5802/crchim.200
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2 |
Joseph J. Crivelli, Kyle D. Wood, Dean G. Assimos. Is It Time to Retire the Low-Oxalate Diet? No!. Journal of Endourology 2021; 35(10): 1435 doi: 10.1089/end.2021.0576
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3 |
Early Evidence of Global DNA Methylation and Hydroxymethylation Changes in Rat Kidneys Consequent to Hyperoxaluria-Induced Renal Calcium Oxalate Stones. Cytology and Genetics 2022; 56(5): 458 doi: 10.3103/S0095452722050085
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4 |
Dakai Di, Shudong He, Rong Zhang, Kuan Gao, Min Qiu, Xingjiang Li, Hanju Sun, Sophia Xue, John Shi. Exploring the dual role of anti-nutritional factors in soybeans: a comprehensive analysis of health risks and benefits. Critical Reviews in Food Science and Nutrition 2024; : 1 doi: 10.1080/10408398.2024.2430757
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5 |
J. M. Solano-Altamirano, Saul Goldman. Thermodynamic stability in elastic systems: Hard spheres embedded in a finite spherical elastic solid. The European Physical Journal E 2015; 38(12) doi: 10.1140/epje/i2015-15133-1
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6 |
J. M. Baumann, B. Affolter. The paradoxical role of urinary macromolecules in the aggregation of calcium oxalate: a further plea to increase diuresis in stone metaphylaxis. Urolithiasis 2016; 44(4): 311 doi: 10.1007/s00240-016-0863-z
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7 |
Yogita Mehra, Nachiappa Ganesh Rajesh, Pragasam Viswanathan. Analysis and Characterization of Lactobacillus paragasseri and Lacticaseibacillus paracasei: Two Probiotic Bacteria that Can Degrade Intestinal Oxalate in Hyperoxaluric Rats. Probiotics and Antimicrobial Proteins 2022; 14(5): 854 doi: 10.1007/s12602-022-09958-w
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8 |
Angela Guerra, Andrea Ticinesi, Franca Allegri, Antonio Nouvenne, Silvana Pinelli, Fulvio Lauretani, Marcello Maggio, Gianfranco Cervellin, Loris Borghi, Tiziana Meschi. Calcium urolithiasis course in young stone formers is influenced by the strength of family history: results from a retrospective study. Urolithiasis 2017; 45(6): 525 doi: 10.1007/s00240-016-0955-9
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9 |
Johannes M. Baumann, Roberto Casella. Prevention of Calcium Nephrolithiasis: The Influence of Diuresis on Calcium Oxalate Crystallization in Urine. Advances in Preventive Medicine 2019; 2019: 1 doi: 10.1155/2019/3234867
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10 |
George S. Reusz, Adam Hosszu, Eva Kis. Evaluation of a child with suspected nephrolithiasis. Current Opinion in Pediatrics 2020; 32(2): 265 doi: 10.1097/MOP.0000000000000880
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11 |
G. Laffite, C. Leroy, C. Bonhomme, L. Bonhomme-Coury, E. Letavernier, M. Daudon, V. Frochot, J. P. Haymann, S. Rouzière, I. T. Lucas, D. Bazin, F. Babonneau, A. Abou-Hassan. Calcium oxalate precipitation by diffusion using laminar microfluidics: toward a biomimetic model of pathological microcalcifications. Lab on a Chip 2016; 16(7): 1157 doi: 10.1039/C6LC00197A
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12 |
Sen-Yuan Hong, Lin-Tao Miao, Jia-Qiao Zhang, Shao-Gang Wang. Identification of Two Clusters in Renal Pelvis Urobiome of Unilateral Stone Formers Using 2bRAD-M. Microorganisms 2023; 11(9): 2276 doi: 10.3390/microorganisms11092276
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13 |
Joseph J. Crivelli, Tanecia Mitchell, John Knight, Kyle D. Wood, Dean G. Assimos, Ross P. Holmes, Sonia Fargue. Contribution of Dietary Oxalate and Oxalate Precursors to Urinary Oxalate Excretion. Nutrients 2020; 13(1): 62 doi: 10.3390/nu13010062
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14 |
Krittaya Saelee, Aroonlug Lulitanond, Nattaya Sae-ung, Vitoon Prasongwatana, Patcharee Boonsiri, Ratree Tavichakorntrakool. Effects of Escherichia coli and Proteus mirabilis on the Growth and Aggregation of Calcium Oxalate Crystal under Microaerobic Conditions. Diagnostics 2022; 12(11): 2651 doi: 10.3390/diagnostics12112651
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15 |
Sandra Lapsina, Martina Stirn, Regina Hofmann-Lehmann, Angelika Schoster, Barbara Riond. Acidification is required for calcium and magnesium concentration measurements in equine urine. BMC Veterinary Research 2024; 20(1) doi: 10.1186/s12917-023-03848-1
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16 |
Julian A. Marschner, Shrikant R. Mulay, Stefanie Steiger, Lidia Anguiano, Zhibo Zhao, Peter Boor, Khosrow Rahimi, Antonio Inforzato, Cecilia Garlanda, Alberto Mantovani, Hans-Joachim Anders. The Long Pentraxin PTX3 Is an Endogenous Inhibitor of Hyperoxaluria-Related Nephrocalcinosis and Chronic Kidney Disease. Frontiers in Immunology 2018; 9 doi: 10.3389/fimmu.2018.02173
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17 |
Muhammed A. P. Manzoor, Ashish K. Agrawal, Balwant Singh, M. Mujeeburahiman, Punchappady-Devasya Rekha, Yogendra Kumar Mishra. Morphological characteristics and microstructure of kidney stones using synchrotron radiation μCT reveal the mechanism of crystal growth and aggregation in mixed stones. PLOS ONE 2019; 14(3): e0214003 doi: 10.1371/journal.pone.0214003
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18 |
Johannes M. Baumann. Pathophysiology - Altered Physiological States. 2018; doi: 10.5772/intechopen.70598
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19 |
Shrikant R. Mulay, Jonathan N. Eberhard, Jyaysi Desai, Julian A. Marschner, Santhosh V.R. Kumar, Marc Weidenbusch, Melissa Grigorescu, Maciej Lech, Nuru Eltrich, Lisa Müller, Wolfgang Hans, Martin Hrabě de Angelis, Volker Vielhauer, Bernd Hoppe, John Asplin, Nicolai Burzlaff, Martin Herrmann, Andrew Evan, Hans-Joachim Anders. Hyperoxaluria Requires TNF Receptors to Initiate Crystal Adhesion and Kidney Stone Disease. Journal of the American Society of Nephrology 2017; 28(3): 761 doi: 10.1681/ASN.2016040486
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20 |
Jun Oh. Metabolische Abklärung bei rezidivierenden Nierensteinen. Dialyse aktuell 2022; 26(07): 300 doi: 10.1055/a-1894-3176
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21 |
Amrik Sahota, Jay A. Tischfield, David S. Goldfarb, Michael D. Ward, Longqin Hu. Cystinuria: genetic aspects, mouse models, and a new approach to therapy. Urolithiasis 2019; 47(1): 57 doi: 10.1007/s00240-018-1101-7
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22 |
Audrey Steely, Elaine Worcester, Megan Prochaska. Contrasting Response of Urine Stone Risk to Medical Treatment in Calcium Oxalate versus Calcium Phosphate Stone Formers. Kidney360 2024; 5(2): 228 doi: 10.34067/KID.0000000000000362
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23 |
Adrian Rodriguez, Concepcion Saez-Torres, Concepcion Mir, Paula Casasayas, Nuria Rodriguez, Dolores Rodrigo, Guiem Frontera, Juan Manuel Buades, Cristina Gomez, Antonia Costa-Bauza, Felix Grases. Effect of sample time on urinary lithogenic risk indexes in healthy and stone-forming adults and children. BMC Urology 2018; 18(1) doi: 10.1186/s12894-018-0430-8
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24 |
Concepcion Mir, Adrian Rodriguez, Dolores Rodrigo, Concepcion Saez-Torres, Guiem Frontera, Javier Lumbreras, Natalia Espinosa, Cristina Gomez, Antonia Costa-Bauza, Felix Grases. Analysis of urine composition from split 24-h samples: use of 12-h overnight samples to evaluate risk factors for calcium stones in healthy and stone-forming children. Journal of Pediatric Urology 2020; 16(3): 371.e1 doi: 10.1016/j.jpurol.2020.02.011
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25 |
Joris Vrielinck, Geert P. J. Janssens, Ilias Chantziaras, An Cools, Dominiek Maes. Urolithiasis Problems in Finishing Pigs. Veterinary Sciences 2023; 10(12): 688 doi: 10.3390/vetsci10120688
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26 |
Allen L. Rodgers. Physicochemical mechanisms of stone formation. Urolithiasis 2017; 45(1): 27 doi: 10.1007/s00240-016-0942-1
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27 |
Michael G. Hill, Erich Königsberger, Peter M. May. Predicting the risk of kidney stone formation in the nephron by ‘reverse engineering’. Urolithiasis 2020; 48(3): 201 doi: 10.1007/s00240-019-01172-8
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28 |
Mohamed Beghalia, Najet Mendi , Lind Derri . Search for Crystalline Species of Urinary Stones by Patients in the Region of Tissemsilt, Algeria. Ukraïnsʹkij žurnal medicini, bìologìï ta sportu 2021; 6(3): 325 doi: 10.26693/jmbs06.03.325
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