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Diana Pinho
ORCID
Publication Activity (10 Years)
Years Active: 2015-2023
Publications (10 Years): 6
Top Topics
White Blood Cells
Moving Object Trajectories
Flow Analysis
Scanning Devices
Top Venues
Micromachines
BIODEVICES
Int. J. Medical Eng. Informatics
SAC
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Publications
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Inês M. Gonçalves
,
Diana Pinho
,
Andrea Zille
,
Hirokazu Kaji
,
Graça Minas
,
Rui A. Lima
,
Patrícia C. Sousa
,
Ana S. Moita
Analysis of a Simple Method to Change the Wettability of the PDMS Surface for Biomicrofluidic Applications.
BIODEVICES
(2023)
Bruna Ramos
,
Diana Pinho
,
A. Ismael F. Vaz
Optimal Inspection Trajectories for 3D Printed Objects.
PAAMS
(2022)
Luís Ferreira
,
Leopoldo Silva
,
Diana Pinho
,
Francisco Morais
,
Carlos Manuel Martins
,
Pedro Miguel Pires
,
Pedro Fidalgo
,
Helena Rodrigues
,
Paulo Cortez
,
André Luiz Pilastri
A federated machine learning approach to detect international revenue share fraud on the 5G edge.
SAC
(2022)
Inês Gonçalves
,
J. Varelas
,
G. Coutinho
,
Ana S. Moita
,
Diana Pinho
,
Rui A. Lima
,
J. M. Miranda
,
E. J. Veja
,
J. M. Montanaro
,
António L. N. Moreira
Dynamic Flow Behaviour of a Blood Analogue Fluid in Microchannels for Microcirculation Studies.
BIODEVICES
(2021)
Elmano Pinto
,
Vera Faustino
,
Diana Pinho
,
Raquel O. Rodrigues
,
Rui A. Lima
,
Ana I. Pereira
Cell-free layer analysis in a polydimethysiloxane microchannel: a global approach.
Int. J. Medical Eng. Informatics
8 (3) (2016)
Joana Calejo
,
Diana Pinho
,
Francisco J. Galindo-Rosales
,
Rui A. Lima
,
Laura Campo-Deaño
Particulate Blood Analogues Reproducing the Erythrocytes Cell-Free Layer in a Microfluidic Device Containing a Hyperbolic Contraction.
Micromachines
7 (1) (2016)
Raquel Lopes
,
Raquel O. Rodrigues
,
Diana Pinho
,
Valdemar Garcia
,
Helmut Schuette
,
Rui Lima
,
Stefan Gassmann
Low cost microfluidic device for partial cell separation: Micromilling approach.
ICIT
(2015)
Elmano Pinto
,
Vera Faustino
,
Raquel O. Rodrigues
,
Diana Pinho
,
Valdemar Garcia
,
João Mário Miranda
,
Rui A. Lima
A Rapid and Low-Cost Nonlithographic Method to Fabricate Biomedical Microdevices for Blood Flow Analysis.
Micromachines
6 (1) (2015)