Hugo LencastreUniversity of Lisbon | UL · Department of Informatics
Hugo Lencastre
Bachelor of Engineering
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23
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Introduction
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Publications
Publications (23)
Computer-Aided Diagnosis (CADx) systems are essential when diagnosing patients with cancer. Medical Imaging Multimodality Breast Cancer Diagnosis User Interface (MIMBCD-UI) is a Computer-aided Detection (CADe) system that allows to open, view and manipulate medical images in order to diagnose patients with breast cancer. In this work, we aim to imp...
Four images that are taken when doing an MG, two per each Breast, each breast will do a CC and a MLO projection. In this image, in the left part, the blue lines represent the MLO projection view, a tilt capture, and the CC projection view, represented with red lines, in the right, has a horizontal capture.
MIMBCD-UI UTA11 - Focus Group - Transcript
MIMBCD-UI UTA9 - Focus Group - Transcript
MIMBCD-UI UTA10 - Focus Group - Transcript
Focus Group Transcript UTA8 02/06/2020
User Testing Architecture Tree describes the architecture that will be followed in the next iterations of the project MIMBCD-UI. In this architectural tree, we have 8 definitions available, they are: (1) PROJECT; (2) User Testing and Analysis (UTA); (3) PHASE; (4) SCENARIO; (5) ANALYSIS; (6) FORMALITY; (7) ACTIVITY; and (8) TASK. The top definition...
Nowadays diagnosis in radiology are done with old tools, though medical exams are improving, the tools used to perform the diagnose are not. Furthermore, Deep Learning (DL) approach has increased the potential of autonomous medical diagnoses at the cost of building qualified datasets to train such supervised Machine Learning (ML) methods. One of th...
MIMBCD: Scalable Interactions architecture envolving the basic architecture of the MIMBCD-UI project with the integration of the Orthanc Server and the ConerstoneJS image manipulation.
3D Module feature that receives breast cancer modalities such as CT, DTS and MRI and converts to a 3D module of the lesion. This feature will be developed in the MIMBCD-UI: Scalable Interactions project.
Temporal View feature offers a visualization of a lesion through time by presenting previous annotations on top of the present lesion. By doing this it enables the detection of size variation in the lesion. This feature will be developed in the project MIMBCD-UI: Scalable Interactions.
Recorded View feature gives the physician the possibility to store all actions previously executed, by doing this, the physician when changes to other modality doesn't lose any information that was already processed and it can view it again.
This feature will be developed in the project MIMBCD-UI: Scalable Interactions.
MIMBCD-UI: Scalable Interactions black box architecture that exists inside the MIMBCD-UI project.
Coordinated View feature aims to reduce time when diagnosed, by automatically opening the opposite image in the opposite viewport available, at the same time adjust all images position to be more close to each other, and finally by allowing that one action in one image, has the same effect in all other images opened in other View-Ports. This featur...
Artificial Intelligence has the potential to alter many application domains fundamentally. One prominent example is clinical radiology. The literature hypothesizes that Deep Learning algorithms will profoundly affect the clinical workflow. In this work, we utilized the unprecedented opportunity presented by developing Radiomics to investigate how a...
The FeedBot project is an autonomous robot arm that feeds patients with cerebral palsy. The objective of the User Testing Guide is to develop a set of tests that, not only characterize the potential users of the system, but also, analyses the performance of the daily meal task made by the users, caregivers, and with the robot.
This questionnaire a...
Artificial Intelligence has the potential to alter many application domains fundamentally. One prominent example is clinical radiology. The literature hypothesizes that Deep Learning algorithms will profoundly affect the clinical workflow. In this work, we utilized the unprecedented opportunity presented by developing Radiomics to investigate how a...
The FeedBot project is an autonomous robot arm that feeds patients with cerebral palsy. The objective of the User Testing Guide is to develop a set of tests that, not only characterize the potential users of the system, but also, analyses the performance of the daily meal task made by the users, caregivers, and with the robot.
This questionnaire a...
The FeedBot project is an autonomous robot arm that feeds patients with cerebral palsy. The objective of the User Testing Guide is to develop a set of tests that, not only characterize the potential users of the system, but also, analyses the performance of the daily meal task made by the users, caregivers, and with the robot.
This questionnaire a...
The FeedBot project is an autonomous robot arm that feeds patients with cerebral palsy. The objective of the User Testing Guide is to develop a set of tests that, not only characterize the potential users of the system, but also, analyses the performance of the daily meal task made by the users, caregivers, and with the robot.
User Testing Guide D...
The FeedBot project is an autonomous robot arm that feeds patients with cerebral palsy. The objective of the User Testing Guide is to develop a set of tests that, not only characterize the potential users of the system, but also, analyses the performance of the daily meal task made by the users, caregivers, and with the robot.
User Testing Guide U...
The FeedBot project is an autonomous robot arm that feeds patients with cerebral palsy. The objective of the User Testing Guide is to develop a set of tests that, not only characterize the potential users of the system, but also, analyses the performance of the daily meal task made by the users, caregivers, and with the robot.
This questionnaire a...