Publication Type Journal Article
Title Local Response of Sialoliths to Lithotripsy: Cues on Fragmentation Outcome
Authors Pedro Nolasco Ana J. dos Anjos Jose Dias Paulo V. Coelho Carla Coelho Manuel Evaristo A. Cavaleiro A. Mauricio M. F. C. Pereira Virginia Infante A. P. Alves de Matos Raul C. Martins P. A. Carvalho
Groups
Journal MICROSCOPY AND MICROANALYSIS
Year 2017
Month June
Volume 23
Number 3
Pages 584-598
Abstract Lithotripsy methods show relatively low efficiency in the fragmentation of sialoliths compared with the success rates achieved in the destruction of renal calculi. However, the information available on the mechanical behavior of sialoliths is limited and their apparently tougher response is not fully understood. This work evaluates the hardness and Young s modulus of sialoliths at different scales and analyzes specific damage patterns induced in these calcified structures by ultrasonic vibrations, pneumoballistic impacts, shock waves, and laser ablation. A clear correlation between local mechanical properties and ultrastructure/chemistry has been established: sialoliths are composite materials consisting of hard and soft components of mineralized and organic nature, respectively. Ultrasonic and pneumoballistic reverberations damage preferentially highly mineralized regions, leaving relatively unaffected the surrounding organic matter. In contrast, shock waves leach the organic component and lead to erosion of the overall structure. Laser ablation destroys homogeneously the irradiated zones regardless of the mineralized/organic nature of the underlying ultrastructure; however, damage is less extensive than with mechanical methods. Overall, the present results show that composition and internal structure are key features behind sialoliths comminution behavior and that the organic matter contributes to reduce the therapeutic efficiency of lithotripsy methods.
DOI http://dx.doi.org/10.1017/S143192761700037X
ISBN
Publisher
Book Title
ISSN 1431-9276
EISSN 1435-8115
Conference Name
Bibtex ID ISI:000407562200013
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