Schmitz-Rode, Thomas 1958-
Thomas Schmitz-Rode researcher
VIAF ID: 15403458 ( Personal )
Permalink: http://viaf.org/viaf/15403458
Preferred Forms
4xx's: Alternate Name Forms (4)
5xx's: Related Names (3)
- 551 _ _ ‡a Aachen ‡4 ortw ‡4 https://d-nb.info/standards/elementset/gnd#placeOfActivity
- 510 2 _ ‡a Helmholtz-Institut für Biomedizinische Technik ‡4 affi ‡4 https://d-nb.info/standards/elementset/gnd#affiliation ‡e Affiliation
- 551 _ _ ‡a Langenfeld (Rheinland) ‡4 ortg ‡4 https://d-nb.info/standards/elementset/gnd#placeOfBirth
Works
Title | Sources |
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Assessing degradation of nano drug carriers - Magnetic particle imaging as a solution | |
Bone Marrow Derived Mesenchymal Stromal Cells Promote Vascularization and Ciliation in Airway Mucosa Tri-Culture Models in Vitro | |
Choosing the Right Differentiation Medium to Develop Mucociliary Phenotype of Primary Nasal Epithelial Cells In Vitro | |
Controlling the flow balance: In vitro characterization of a pulsatile total artificial heart in preload and afterload sensitivity | |
Detection of physiological control inputs preload and afterload from intrinsic pump parameters in total artificial heart | |
Development and evaluation of a variable, miniaturized oxygenator for various test methods | |
EndOxy: Mid‐term stability and shear stress resistance of endothelial cells on PDMS gas exchange membranes | |
Experimental investigation of right-left flow balance concepts for a total artificial heart | |
Extracorporeal Hyperoxygenation Therapy (EHT) for Carbon Monoxide Poisoning In-Vitro Proof of Principle | |
Ghost Cells for Mechanical Circulatory Support In Vitro Testing A Novel Large Volume Production | |
Guidance for clinical evaluation under the medical device regulation through automated scoping searches | |
Hemodynamics inside the neo‐ and native sinus after TAVR: Effects of implant depth and cardiac output on flow field and coronary flow | |
Hemolysis at low blood flow rates: in-vitro and in-silico evaluation of a centrifugal blood pump | |
Hot topics der Medizintechnik Acatech-Empfehlungen in der Diskussion | |
In Vitro and In Vivo Feasibility Study for a Portable VV-ECMO and ECCO2R System | |
In Vitro Calcification of Bioprosthetic Heart Valves: Test Fluid Validation on Prosthetic Material Samples | |
In-vitro performance of a single-chambered total artificial heart in a Fontan circulation | |
In vitro thrombogenicity testing of pulsatile mechanical circulatory support systems: Design and proof-of-concept | |
In-Vitro Visualization of Thrombus Growth in Artificial Lungs Using Real-Time X-Ray Imaging: A Feasibility Study | |
Interventionelle Therapie der massiven Lungenembolie Entwicklung und experimentelle Erprobung eines Fragmentationskathetersystems | |
Introducing 3D-potting a novel production process for artificial membrane lungs with superior blood flow design | |
Linear structures of magnetic nanoparticles in hyperthermia and magnetic particle imaging | |
MPI visualization of hybrid implant fibers using different system matrices | |
Nanomagnetic actuation of hybrid stents for hyperthermia treatment of hollow organ tumors | |
Positionspapier Bioimplantate biologische, biologisierte und biofunktionalisierte Implantate ; [gemeinsames Positionspapier der DGBMT - Deutsche Gesellschaft für Biomedizinische Technik im VDE e.V. und acatech - Deutsche Akademie der Technikwissenschaften] | |
Runder Tisch Medizintechnik Wege zur Beschleunigten Zulassung und Erstattung Innovativer Medizinprodukte | |
Small Caliber Compliant Vascular Grafts Based on Elastin-Like Recombinamers for in situ Tissue Engineering | |
Strömungsmechanische Untersuchungen zum Einfluss pathologischer Aortengeometrien auf die Durchströmung von Standard-Aortenklappenprothesen | |
Three-dimensional membranes for artificial lungs Comparison of flow-induced hemolysis | |
Towards Realistic 3D Models of Tumor Vascular Networks | |
Towards technically controlled bioreactor maturation of tissue-engineered heart valves | |
TPMS-based membrane lung with locally-modified permeabilities for optimal flow distribution | |
Two-Photon Endoscopy State of the Art and Perspectives | |
Vessel delineation using U-Net: A sparse labeled deep learning approach for semantic segmentation of histological images |