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1.
Chem Biomed Imaging ; 2(3): 213-221, 2024 Mar 25.
Artigo em Inglês | MEDLINE | ID: mdl-38551010

RESUMO

High-resolution spatial and temporal analysis and 3D visualization of time-dependent processes, such as human dental enamel acid demineralization, often present a challenging task. Overcoming this challenge often requires the development of special methods. Dental caries remains one of the most important oral diseases that involves the demineralization of hard dental tissues as a consequence of acid production by oral bacteria. Enamel has a hierarchically organized architecture that extends down to the nanostructural level and requires high resolution to study its evolution in detail. Enamel demineralization is a dynamic process that is best investigated with the help of in situ experiments. In previous studies, synchrotron tomography was applied to study the 3D enamel structure at certain time points (time-lapse tomography). Here, another distinct approach to time-evolving tomography studies is presented, whereby the sample image is reconstructed as it undergoes continuous rotation over a virtually unlimited angular range. The resulting (single) data set contains the data for multiple (potentially overlapping) intermediate tomograms that can be extracted and analyzed as desired using time-stepping selection of data subsets from the continuous fly-scan recording. One of the advantages of this approach is that it reduces the amount of time required to collect an equivalent number of single tomograms. Another advantage is that the nominal time step between successive reconstructions can be significantly reduced. We applied this approach to the study of acidic enamel demineralization and observed the progression of demineralization over time steps significantly smaller than the total acquisition time of a single tomogram, with a voxel size smaller than 0.5 µm. It is expected that the approach presented in this paper can be useful for high-resolution studies of other dynamic processes and for assessing small structural modifications in evolving hierarchical materials.

2.
Chem Biomed Imaging ; 2(3): 222-232, 2024 Mar 25.
Artigo em Inglês | MEDLINE | ID: mdl-38551011

RESUMO

The Dual Imaging and Diffraction (DIAD) beamline at Diamond Light Source (Didcot, U.K.) implements a correlative approach to the dynamic study of materials based on concurrent analysis of identical sample locations using complementary X-ray modalities to reveal structural detail at various length scales. Namely, the underlying beamline principle and its practical implementation allow the collocation of chosen regions within the sample and their interrogation using real-space imaging (radiography and tomography) and reciprocal space scattering (diffraction). The switching between the two principal modes is made smooth and rapid by design, so that the data collected is interlaced to obtain near-simultaneous multimodal characterization. Different specific photon energies are used for each mode, and the interlacing of acquisition steps allows conducting static and dynamic experiments. Building on the demonstrated realization of this state-of-the-art approach requires further refining of the experimental practice, namely, the methods for gauge volume collocation under different modes of beam-sample interaction. To address this challenge, experiments were conducted at DIAD devoted to the study of human dental enamel, a hierarchical structure composed of hydroxyapatite mineral nanocrystals, as a static sample previously affected by dental caries (tooth decay) as well as under dynamic conditions simulating the process of acid demineralization. Collocation and correlation were achieved between WAXS (wide-angle X-ray scattering), 2D (radiographic), and 3D (tomographic) imaging. While X-ray imaging in 2D or 3D modes reveals real-space details of the sample microstructure, X-ray scattering data for each gauge volume provided statistical nanoscale and ultrastructural polycrystal reciprocal-space information such as phase and preferred orientation (texture). Careful registration of the gauge volume positions recorded during the scans allowed direct covisualization of the data from two modalities. Diffraction gauge volumes were identified and visualized within the tomographic data sets, revealing the underlying local information to support the interpretation of the diffraction patterns. The present implementation of the 4D microscopy paradigm allowed following the progression of demineralization and its correlation with time-dependent WAXS pattern evolution in an approach that is transferable to other material systems.

3.
An. Fac. Odontol. (Montev.) ; (26): 49-61, dic. 1990. ilus
Artigo em Espanhol | LILACS | ID: lil-106696

RESUMO

El adenoma pleomórfico metastasiante de las glándulas salivales es una variedad rara de adenoma pleomórfico de apariencia microscópica benigna y de comportamiento biológico maligno, productor de metástasis. El estudio microscópico con las técnicas de rutina, no es suficiente en la mayoría de los casos para descubrir la naturaleza de esta variedad de tumores y generalmente son diagnosticados como benignos. Tardíamente, luego de varias recurrencias y aparición de metástasis, la naturaleza maligna del tumor se hace evidente. El número de regiones de organización nucleolar (NORs, del inglés nucleolar organizing regions) en cada núcleo celular observados por medio de una técnica de plata coloidal, puede ser utilizado en histopatología para la determinación del grado de actividad celular. En este artículo reportamos los resultados del estudio de los NORs en un caso de adenoma pleomórfico metastasiante de la glándula submaxilar. Esta técnica demostró ser de gran utilidad para el diagnóstico y la caracterización metabólica de estos tumores y el diagnóstico diferencial de las otras variedades benignas


Assuntos
Adenoma , Neoplasias Primárias Desconhecidas , Região Organizadora do Nucléolo , Neoplasias das Glândulas Salivares
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