BIDS Managing and Analysis Tool
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BIDS Managing and Analysis Tool

> Github repository
The BMAT software is a complete and easy-to-use local open-source neuroimaging analysis tool with a graphical user interface (GUI) that uses the BIDS format to organize and process brain MRI data for MS imaging research studies. BMAT provides the possibility to translate data from MRI scanners to the BIDS structure, create and manage BIDS datasets as well as develop and run automated processing pipelines.

BMAT is now compatible to work with remote server using shared samba folder and a slurm scheduler to process data on remote server. It has to be noted that this feature has been implemented for users based in the Institute of NeuroSciences (IoNS) from UCLouvain. Therefore, it may not work easily with every servers, but feel free to fork the code and adapt it for your institue.

Exploring Foundation Models Fine-Tuning for Cytology Tasks
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Exploring Foundation Models Fine-Tuning for Cytology Tasks

> Github repository
In this paper, we explore the application of existing foundation models to cytological classification tasks, focusing on low-rank adaptation (LoRA), a parameter-efficient fine-tuning method well-suited to few-shot learning scenarios. We evaluate five foundation models across four cytological classification datasets. Our results demonstrate that fine-tuning the pre-trained backbones with LoRA significantly enhances model performance compared to merely fine-tuning the classifier head, achieving state-of-the-art results on both simple and complex classification tasks while requiring fewer data samples.

Cardinal
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Cardinal

Cardinal est le backend sécurisé de référence pour la Health-Tech. Que vous conceviez des dispositifs médicaux, des dossiers médicaux et patients (DMI-DPI), ou des applications patient-médecin, le Backend et les SDKs Cardinal offrent les outils et le support pour concrétiser votre vision, réduire vos coûts de développement et accélérer votre mise sur le marché. Chaque fonctionnalité disponible dans Cardinal se concentre sur…

MCsquare
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MCsquare

The use of Monte Carlo dose calculation instead of typical analytical algorithms can improve the accuracy of proton therapy treatment planning. Especially, range uncertainties are significantly reduced in heterogeneous anatomies. MCsquare, a new fast Monte Carlo code, has been developed to simulate proton PBS treatments with the accuracy and calculation speed required in the clinic….

Parrot
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Parrot

PARROT, which stands for Platform for ARtificial intelligence guided Radiation Oncology Treatment, is a user-friendly, free, and open-source web platform. It allows users to visualize DICOM files, run AI models, display and evaluate predictions easily. The platform includes several trained state-of-the-art dose prediction and contour segmentation models. Users can also add their own models using…

LiblineaR
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LiblineaR

LiblineaR is an R package for large-scale linear modeling  supporting classification and regression of large datasets. The original software in C/C++ was developed by Prof. Chih-Jen Lin and his team at the Machine Learning Group of the Taiwan University. As most of our developments are done in the open source R language, we have developed the R library LiblineaR, making all the…

Orthanc
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Orthanc

Orthanc est un écosystème libre et open-source destiné à la gestion et au partage d’images médicales. Orthanc implémente le standard international DICOM qui régule l’imagerie médicale numérique dans tout établissement de santé. Cela permet à Orthanc de recevoir, de stocker et de transmettre des images en provenance de n’importe quel équipement de radiologie (scanners, IRM,…

OpenTPS
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OpenTPS

OpenTPS is an open-source treatment planning system (TPS) for research in radiation therapy and proton therapy. It was developed in Python with a special focus on simplifying contribution to the core functions to let the user develop their own features. It contains a variety of treatment planification and evaluation methods, as well as image processing and…