BIOSTEC 2027 - 20th International Joint Conference on Biomedical Engineering Systems and Technologies BIOSTEC 2026 - 19-21 February 2026, Valletta, Malta BIOSTEC 2027 - May 14-16 2027, Nanjing, China
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Special Sessions

Special sessions are very small and specialized events to be held during the conference as a set of oral and poster presentations that are highly specialized in some particular theme or consisting of the works of some particular international project. The goal of special sessions (minimum 4 papers; maximum 9) is to provide a focused discussion on innovative topics. All accepted papers will be published in a special section of the conference proceedings book, under an ISBN reference, and on digital support. All papers presented at the conference venue will be available at the SCITEPRESS Digital Library. SCITEPRESS is a member of CrossRef and every paper is given a DOI (Digital Object Identifier). The proceedings are submitted for indexation by SCOPUS, Google Scholar, DBLP, Semantic Scholar, EI and Web of Science / Conference Proceedings Citation Index.


Symposia proposals are accepted until:

October 2, 2026


If you wish to propose a new Special Session please kindly fill out and submit this Expression of Interest form.

SYMPOSIA/SPECIAL SESSIONS LIST

DEMS 2027Special Session on Design and Evaluation of Monitoring Systems
Chair(s): Eunji Lee

OMNIS-PARK 2027Special Session on Objective MonitoriNg of Non-CognItive Symptoms in PARKinson's Disease Based on Wearable Sensors and Artificial Intelligence
Chair(s): Fernanda Irrera

MOSAIC 2027Special Session on Multimodal Omics and Healthcare Data Integration through Interoperable Computing
Chair(s): Lorenzo Martini and Gianluca Amprimo

CompBioFab 2027Special Session on Computational Methods for Intelligent Biofabrication: Models, Data and Reproducible Benchmarks
Chair(s): Roberta Bardini, Laurence Calzone, Miriam Filippi and Diana Massai

Special Session on Design and Evaluation of Monitoring Systems - DEMS 2027

Paper Submission: December 3, 2026
Authors Notification: December 21, 2026
Camera Ready and Registration: January 8, 2027


Chair

Eunji Lee
Chalmers University of Technology
Sweden
e-mail
 
Scope

This session will explore innovative approaches to designing monitoring systems that can enhance healthcare delivery and patient outcomes. Topics will include service design, user-centred design, integration of wearable and/or IoT technologies, synthetic data and sandboxes, and the role of artificial intelligence in optimizing monitoring and diagnostics. The session will also address challenges such as interoperability and usability in diverse healthcare settings. We welcome contributions that present case studies, novel frameworks, and design methodologies aimed at creating effective, scalable, and accessible monitoring solutions for various types of patients or general population.


Special Session on Objective MonitoriNg of Non-CognItive Symptoms in PARKinson's Disease Based on Wearable Sensors and Artificial Intelligence - OMNIS-PARK 2027

Paper Submission: December 3, 2026
Authors Notification: December 21, 2026
Camera Ready and Registration: January 8, 2027


Chair

Fernanda Irrera
University of Rome "Sapienza"
Italy
e-mail
 
Scope

Wearable sensors can strengthen Parkinson's disease care by adding continuous, objective monitoring at home to the periodic subjective assessments performed during clinical checkups. Using wearable sensors, it is possible to track motion metrics such as postural and axial impairments, tremors, gait disorders, dysphagia outside outpatient environment, in more comfortable conditions for patients. Artificial intelligence algorithms analyse data from the sensors to accurately measure symptom severity in time and make a stratified classification, to complement clinical scores. By capturing subtle, day-to-day changes that periodic visits may miss, wearable systems ultimately aim to improve patients' quality of life and delay advanced complications, empowering physicians to make precise, data-driven management of the disease and adjust medication.


Special Session on Multimodal Omics and Healthcare Data Integration through Interoperable Computing - MOSAIC 2027

Paper Submission: December 3, 2026
Authors Notification: December 21, 2026
Camera Ready and Registration: January 8, 2027


Co-chairs

Lorenzo Martini
Department of Control and Computer Engineering (DAUIN), Politecnico di Torino
Italy
e-mail
 
Gianluca Amprimo
Politecnico di Torino
Italy
e-mail
 
Scope

The integration of heterogeneous biomedical data is becoming essential for understanding complex biological mechanisms and improving healthcare. Combining multi-omics, molecular and cellular data, medical imaging, electronic health records, physiological signals, and other complementary data modalities provides unprecedented opportunities to uncover biological insights, identify disease mechanisms, and support precision medicine. However, realizing this potential requires reproducible, interoperable, and reusable computational solutions capable of integrating diverse data sources into coherent analytical frameworks. This special session aims to bring together researchers developing innovative software, workflows, pipelines, and computational methods for multimodal data integration across bioinformatics and health informatics. Particular emphasis is placed on FAIR and interoperable software ecosystems, reproducible computational analyses, and applications that bridge fundamental biological research with clinical and translational medicine


Special Session on Computational Methods for Intelligent Biofabrication: Models, Data and Reproducible Benchmarks - CompBioFab 2027

Paper Submission: December 3, 2026
Authors Notification: December 21, 2026
Camera Ready and Registration: January 8, 2027


Co-chairs

Roberta Bardini
Politecnico di Torino
Italy
e-mail
 
Laurence Calzone
Computational Oncology Unit, Institut Curie
France
e-mail
 
Miriam Filippi
Institute for Robotics and Intelligent Systems, ETH Zurich
Switzerland
e-mail
 
Diana Massai
Politecnico di Torino
Italy
e-mail
 
Scope

Biofabrication, the automated generation of functional constructs from cells, biomaterials and bioactive molecules, still relies on trial-and-error design, and the cost of wet-lab iterations makes exhaustive experimentation infeasible. Intelligent Biofabrication replaces this with model-based, predictive engineering: simulators of cellular behaviour, hybrid multi-scale models and digital twins, protocol optimisation, and data-driven approaches learning from accumulated evidence. Beyond construct quality, it makes accelerated discovery, shorter translational timelines, lower cost and smaller environmental footprint explicit design objectives. Interdisciplinary convergence is this session's organising principle. Progress comes when models are calibrated on data produced with them in mind, and experimental platforms are designed to be modelled. It is structured around an objective both sides need: shared benchmark problems, datasets and evaluation protocols.


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