Zobrazeno 1 - 5
of 5
pro vyhledávání: '"J. O. Flores Flores"'
Publikováno v:
Universidad Nacional Autónoma de México
UNAM
Redalyc-UNAM
Journal of Applied Research and Technology (México) Num.1 Vol.14
UNAM
Redalyc-UNAM
Journal of Applied Research and Technology (México) Num.1 Vol.14
The objective was to research the physical and chemical properties of collagen scaffolds (CS) obtained from bone matrix Nukbone ® subject to a demineralization process using hydrochloric acid. The CS samples were characterized by optical and scannin
Autor:
N. Hevia-Montiel, B. Reyes-Ramírez, J. O. Flores-Flores, Fernando Arámbula-Cosío, C. García-Segundo, R. Y. Sato-Berrú, Rosa M Quispe-Siccha
Publikováno v:
Universidad Nacional Autónoma de México
UNAM
Redalyc-UNAM
Journal of Applied Research and Technology (México) Num.1 Vol.10
UNAM
Redalyc-UNAM
Journal of Applied Research and Technology (México) Num.1 Vol.10
We present experimental results related to the manufacturing of phantoms based on polyvinyl-alcohol (PVA) mixedwith SiO2, graphite and Ag nanoparticles. These phantoms are dummy representations of the human tissue of thebreast gland. We focus our att
Publikováno v:
SPIE Proceedings.
We present results of resolution and optical characterization studies of silicon dioxide nanoparticle solutions. These phantoms consist of spherical particles with a mean controlled diameter of 168 and 429 nm. The importance of this work lies in usin
Autor:
E. Ortiz Rascón, N. C. Bruce, J. O. Flores Flores, R. Sato Berru, Maria-Ester Brandan, Flora Herrera-Martinez, Veronica Ramírez-R., Mercedes Rodriguez-Villafuerte
Publikováno v:
AIP Conference Proceedings.
We present the results of optical characterization of silicon dioxide nanoparticle solutions. These are spherical particles with a controlled diameter between 100 nm and 600 nm. The importance of this work lies in using these solutions to develop a p
Autor:
Celia Sánchez-Pérez, J O Flores-Flores, R Y Sato-Berrú, Rubén G. Barrera, Augusto García-Valenzuela
Publikováno v:
Journal of Physics: Conference Series. 274:012064
In this work we assess experimentally a new methodology for sizing non-absorbing colloidal particles in situ. It requires measuring the real and imaginary part of the effective refractive index per unit volume fraction occupied by the particles. The