| Publisher DOI: | 10.18416/AUTOMED.2026.2492 | Title: | Simulation-aided workflow toward dynamic fluid phantoms for impedance plethysmography | Language: | English | Authors: | Hoffmann, Johannes Fueller, Larissa Kusche, Roman Zaunseder, Sebastian |
Issue Date: | 2026 | Publisher: | Infinite Science GmbH | Journal or Series Name: | Proceedings on automation in medical engineering | Volume: | 3 | Issue: | 1 | Conference: | Interdisciplinary AUTOMED Symposium in Collaboration with the TC Medical Robotics 2026 | Abstract: | Impedance plethysmography (IPG) is recently gaining traction as a non-invasive sensing technique suitable for wearable devices, such as smartwatches. In this context, dynamic fluid phantoms can provide well-defined test scenarios to enable algorithm design and training. We outline the initial steps of our phantom design process, which relies on a combination of simulation studies and experiments. We conducted measurements in saline solutions and implemented a corresponding simulation of a time-varying pulse wave. Our overarching goal is the integration of an IPG component into a multi-modal dynamic fluid phantom. |
URI: | https://hdl.handle.net/20.500.12738/19710 | Review status: | This version was reviewed (alternative review procedure) | Institute: | Fakultät für Elektro-, Medien- und Informationstechnik | Type: | Chapter/Article (Proceedings) | Additional note: | Article number: 2492 |
| Appears in Collections: | Publications without full text |
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