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1.
Braz. j. oral sci ; 21: e226036, jan.-dez. 2022. ilus
Artigo em Inglês | LILACS, BBO | ID: biblio-1393321

RESUMO

Dental implants could give back function, esthetics and quality of life to patients. The correct choice of the implant, especially in borderline cases, is essential for a satisfactory result. Aim: Thus, the objective of this study was to evaluate the mechanical behavior of Morse taper implants with two different prosthetic interfaces. Methods: Twenty self-locking Morse taper implants, 2.9 mm in diameter (FAC), and 20 Morse taper implants, 3.5 mm in diameter (CM) were divided into two groups (n=10), and submitted to strength to failure test, optical microscopic evaluation of fracture, metallographic analysis of the alloy, finite element analysis (FEA) and strain gauge test. A Student's t test (α = 0.05) was made for a statistical analysis. Results: For the strength to failure test, a statistically difference was observed (p <0.001) between FAC (225.0 ± 19.8 N) and CM (397.3 ± 12.5 N). The optical microscopic evaluation demonstrated a fracture pattern that corroborated with FEA ́s results. The metallographic analysis determined that the implants of the FAC group have titanium-aluminum-vanadium alloy in their composition. In the strain gauge test, there was no statistical difference (p = 0.833) between CM (1064.8 ± 575.04 µS) and FAC (1002.2 ± 657.6 µS) groups. Conclusion: Based on the results obtained in this study, ultra-narrow implants (FAC) should ideally be restricted to areas with low masticatory effort


Assuntos
Resistência à Tração , Implantação Dentária , Resistência à Flexão
2.
Biosci. j. (Online) ; 26(3): 463-477, May-June 2010. ilus
Artigo em Português | LILACS | ID: lil-561959

RESUMO

As ciências ômicas tratam da análise global dos sistemas biológicos, integrando diferentes áreas do conhecimento, como a bioquímica, genética, fisiologia e computação, com o objetivo de isolar e caracterizar genes, proteínas e metabólitos, assim como estudar as interações entre eles, com base em técnicas experimentais, softwares e bancos de dados. A bioinformática por sua vez, propõe novas formas de ciência baseada na experimentação in silico, sendo muito dinâmica na sua atualização e fornecendo a base para geração de novos dados e conhecimentos que podem ser aplicados na pesquisa básica e na aplicada com o desenvolvimento de novos produtos e soluções. Este processo está intimamente relacionado à inovação tecnológica, que é conseguida unindo-se a biotecnologia e a bioinformática. Contudo, o objetivo desta revisão é apresentar uma pequena abordagem dos recursos de bioinformática aplicados às ciências ômicas, como genômica, transcriptômica, proteômica, interatômica, metabolômica, farmacogenômica, dentre outras.


The omic sciences had a wide point of view of the biological systems, integrating different knowledgement areas, as biochemistry, genetics and physiology, with the aim of isolation and characterization of genes, proteins and metabolites as well study their interactions, based on experimental techniques, softwares and data banks. Bioinformatics proposes a new science, which is based on in silico experimentation, being very dynamic in its update and also can provides the basis for generation of new data and knowledge that can be applied in basic research and applied to the development of new products and solutions. This process is closely related to technological innovation, which is achieved joining biotechnology and bioinformatics. However, the objective of this review is to present a small approach of bioinformatics resources applied to the omics science, like genomics, transcriptomics, proteomics, interatomics, metabolomics, pharmacogenomics, among others.


Assuntos
Biotecnologia , Biologia Computacional , Bases de Dados como Assunto , Genômica , Proteômica
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