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British Journal of Urology
|
September 1, 1990
Study of factors affecting calcium oxalate crystalline aggregation
F Grases, A Costa-Bauzá
Anticancer Research
|
January 8, 2000
Phytate (IP6) is a powerful agent for preventing calcifications in biological fluids: usefulness in renal lithiasis treatment
F Grases, A Costa-Bauzá
Urolithiasis
|
May 13, 2025
Kidney stones and oxidative stress. Types of papillary renal calculi
F Grases, A Costa-Bauzá
Scanning Microscopy
|
September 1, 1993
Studies on structure of calcium oxalate monohydrate renal papillary calculi. Mechanism of formation
F Grases, A Costa-Bauzá, A Conte
Urological Research
|
June 13, 2000
Effects of phytate and pyrophosphate on brushite and hydroxyapatite crystallization. Comparison with the action of other polyphosphates
F Grases, M Ramis, A Costa-Bauzá
International Urology and Nephrology
|
February 7, 2001
Renal stone formation and development
F Grases, O Söhnel, A Costa-Bauzá
Urolithiasis
|
March 15, 2023
The power of desktop scanning electron microscopy with elemental analysis for analyzing urinary stones
A Costa-Bauzá, F Grases, F Julià
Urological Research
|
January 1, 1994
Studies on calcium oxalate monohydrate crystallization: influence of inhibitors
F Grases, M Kroupa, A Costa-Bauzá
Urological Research
|
January 1, 1996
Study of the early stages of renal stone formation: experimental model using urothelium of pig urinary bladder
F Grases, L García-Ferragut, A Costa-Bauzá
British Journal of Urology
|
September 1, 1994
Artificial simulation of the early stages of renal stone formation
F Grases, A Costa-Bauzá, J G March
Page
of 6
Search research articles
Search
Showing results (1-10 of 55) with videos related to
Sort By:
Page
of 6
British Journal of Urology
|
September 1, 1990
Study of factors affecting calcium oxalate crystalline aggregation
F Grases, A Costa-Bauzá
Anticancer Research
|
January 8, 2000
Phytate (IP6) is a powerful agent for preventing calcifications in biological fluids: usefulness in renal lithiasis treatment
F Grases, A Costa-Bauzá
Urolithiasis
|
May 13, 2025
Kidney stones and oxidative stress. Types of papillary renal calculi
F Grases, A Costa-Bauzá
Scanning Microscopy
|
September 1, 1993
Studies on structure of calcium oxalate monohydrate renal papillary calculi. Mechanism of formation
F Grases, A Costa-Bauzá, A Conte
Urological Research
|
June 13, 2000
Effects of phytate and pyrophosphate on brushite and hydroxyapatite crystallization. Comparison with the action of other polyphosphates
F Grases, M Ramis, A Costa-Bauzá
International Urology and Nephrology
|
February 7, 2001
Renal stone formation and development
F Grases, O Söhnel, A Costa-Bauzá
Urolithiasis
|
March 15, 2023
The power of desktop scanning electron microscopy with elemental analysis for analyzing urinary stones
A Costa-Bauzá, F Grases, F Julià
Urological Research
|
January 1, 1994
Studies on calcium oxalate monohydrate crystallization: influence of inhibitors
F Grases, M Kroupa, A Costa-Bauzá
Urological Research
|
January 1, 1996
Study of the early stages of renal stone formation: experimental model using urothelium of pig urinary bladder
F Grases, L García-Ferragut, A Costa-Bauzá
British Journal of Urology
|
September 1, 1994
Artificial simulation of the early stages of renal stone formation
F Grases, A Costa-Bauzá, J G March
Page
of 6