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Use of a Digital Positioning and Categorisation Aid for Clinical Investigations on Medical Devices: Questioning the Complexity of the Field and Harmonizing Stakeholders' Understanding., , , , , , and . BIOSTEC (1), page 864-871. SCITEPRESS, (2024)A Biochip Based Medical Device for Point-of-Care ABO Compatibility: Towards a Smart Transfusion Line., , , , , , , , and . BIOSTEC (Selected Papers), volume 881 of Communications in Computer and Information Science, page 94-105. Springer, (2017)Blood-to-blood Immunological Compatibility Test: A Possibility with Fluorescent Immuno-Biochips., , , , , , , and . BIODEVICES, page 160-166. SciTePress, (2019)SmarTTransfuser - A Biochip System for the Final Abo Compatibility Test., , , , , , , , and . BIODEVICES, page 257-262. SciTePress, (2012)Is Usability Engineering Anticipation Possible during the Initial Research Actions? An Example with the R-Link in Vitro Self-monitoring Device., , , , , , , and . BIODEVICES, page 259-269. SCITEPRESS, (2022)Test Device for Blood Transfusion Safety - How Acoustics Can Help Preventing Any Red Cells Incompatibility., , , , , , and . BIODEVICES, page 206-211. SciTePress, (2018)An Automated Medical Device for Ultimate ABO Compatibility Test at the Patient's Bedside - Towards the Automation of Point-of-care Transfusion Safety., , , , , , , , and . BIODEVICES, page 58-67. SciTePress, (2015)Functional Analysis to Drive Research and Identify Regulation Requirements: An Example with a Lithium Monitoring Device., , , , , , and . BIODEVICES, page 300-307. SCITEPRESS, (2021)