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1.
Stomatologiia (Mosk) ; 87(2): 15-24, 2008.
Artigo em Russo | MEDLINE | ID: mdl-18454113

RESUMO

Ultrasound transmission and reflection at the interface between restorative material and tooth tissue have been investigated using experimental flat-parallel models and whole extracted human teeth with restorations. It has been found that in the case of good bonding the ultrasound wave energy practically does not reflect at the cement/dentin interface and propagates into dentin layer. If any microscopic cavity had been formed between cement and dentin, the most part of the acoustic energy would be reflected from the interface between cement and gaseous or liquid contents of that cavity. The results acquired have been used for the interpretation of morphological peculiarities of the adhesive bonding area in visual images, non-destructively obtained in acoustic microscope ultrasound frequency - 50 MHz. The differences discovered could be used as a base for the design and development of new ultrasound methods for the restorative materials bonding evaluation as well as for secondary caries revealing.


Assuntos
Cárie Dentária/diagnóstico por imagem , Materiais Dentários/análise , Microscopia Acústica/métodos , Modelos Biológicos , Cárie Dentária/terapia , Humanos
2.
Phys Rev Lett ; 89(2): 025001, 2002 Jul 08.
Artigo em Inglês | MEDLINE | ID: mdl-12096998

RESUMO

We report on rear-side optical self-emission results from ultraintense laser pulse interactions with solid targets. A prompt emission associated with a narrow electron jet has been observed up to aluminum target thicknesses of 400 microm with a typical spreading half-angle of 17 degrees. The quantitative results on the emitted energy are consistent with models where the optical emission is due to transition radiation of electrons reaching the back surface of the target or due to a synchrotron-type radiation of electrons pulled back to the target. These models associated with transport simulation results give an indication of a temperature of a few hundred keV for the fast-electron population.

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