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  • Press release - 06/03/2025

    Artificial Muscles for Tremor Suppression

    Scientists at the Max Planck Institute for Intelligent Systems, the University of Tübingen and the University of Stuttgart under the Bionic Intelligence Tübingen Stuttgart (BITS) collaboration developed a biorobotic arm that can mirror human tremors. Artificial muscles on either side of the forearm contract and relax to suppress the involuntary shaking of the wrist and hand.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/artificial-muscles-tremor-suppression
  • Press release - 13/01/2025

    New tool for synthetic biology

    Scientists at the University of Stuttgart have succeeded in controlling the structure and function of biological membranes with the help of "DNA origami". The system they developed may facilitate the transportation of large therapeutic loads into cells. This opens up a new way for the targeted administration of medication and other therapeutic interventions.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/new-tool-synthetic-biology
  • Press release - 28/11/2024

    Molecular biology: New interdisciplinary Research Training Group investigates cellular regulation

    Cell division, cell differentiation, cell repair and cell death play fundamental roles in the human organism, its development, health and reproduction. Cellular transformation processes are governed by two regulatory mechanisms: chromatin modifications and cell signaling networks. The EpiSignal Research Training Group sheds light on the hitherto little-researched interplay between these two complex systems.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/molecular-biology-new-interdisciplinary-research-training-group-investigates-cellular-regulation
  • Advancing quantum technology into real-world applications - 06/11/2024 Measurement setup with a quantum sensor.

    QSens: BMBF future cluster brings quantum sensors of the future into medicine

    The BMBF-funded future cluster ‘QSens – Quantum Sensors of the Future’ is developing ultra-sensitive sensors that could open up new options in medicine, enabling faster drug research, more accurate diagnostics and improved rehabilitation. The universities of Stuttgart and Ulm are actively working with 17 industry partners to put these cutting-edge innovations to immediate practical use.

    https://www.gesundheitsindustrie-bw.de/en/article/news/qsens-bmbf-future-cluster-brings-quantum-sensors-future-medicine
  • Press release - 05/11/2024

    How biomedical innovation improves preclinical research

    3D tumor models, simulations of drug responses or plant stems used for testing heart stents: the 3R-BioMedicUS center at the University of Stuttgart is developing innovative biomedical approaches to improve preclinical studies, to be seen in the new video.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/how-biomedical-innovation-improves-preclinical-research
  • Press release - 18/09/2024

    Future cluster QSens starts the second round of funding

    In the “Cluster4Future” QSens of the Universities of Stuttgart and Ulm, scientists, companies and start-ups are researching quantum sensors with a wide range of potential applications. The Federal Ministry of Education and Research is funding QSens for a further three years as part of “Clusters4Future”.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/future-cluster-qsens-starts-second-round-funding
  • Research association - 24/07/2024 Graphic in which the various thematic lines of the performance centre are shown in a circle using symbols, e.g. the health thematic line as a heart with a graph of an ECG measurement.

    SPI-MP: pioneer in personalised medical technology

    Every person is unique – even when they are ill. This is why many approaches to personalised medicine have been under development. The Stuttgart Partnership Initiative - Mass Personalization (SPI-MP), which focuses on basic research into fabrication and biomaterial technologies for personalised biomedical systems, is at the heart of such research work. The projects range from artificial knee joint cartilage to state-of-the-art stroke diagnostics.

    https://www.gesundheitsindustrie-bw.de/en/article/news/spi-mp-pioneer-personalised-medical-technology
  • Press release - 17/06/2024

    DNA as building material for tiny machines and artificial cells

    Humboldt Research Award winner Prof. Hao Yan has been conducting research at the 2nd Institute of Physics at the University of Stuttgart since May. He is regarded as one of the world's leading experts in the field of DNA nanotechnology. "My work has many points of commonality with the topics that my colleagues in Stuttgart are focusing on," says Yan. "I have therefore been cooperating with Professor Laura Na Liu's working…

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/dna-building-material-tiny-machines-and-artificial-cells
  • Press release - 24/05/2024

    Research Training Group on Cancer Surgery: German Research Foundation approves second funding period

    Since 2019, the Research Training Group (RTG) "Intraoperative Multisensoric Tissue Differentiation in Oncology," a collaboration between the University of Stuttgart and the University of Tübingen, has been advancing research in medical technology. With the help of new sensor methods, the researchers want to help make surgical procedures on cancer patients safer and more effective.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/research-training-group-cancer-surgery-german-research-foundation-approves-second-funding-period
  • Press release - 10/04/2024

    Cyber Valley grants 500K to CELL’n’ROLL via 2023 Innovation Fellowship Program

    Pioneering cutting-edge diagnostic systems for the detection of complex diseases: Cyber Valley is pleased to announce it has awarded funding of 500K EUR to the CELL’n’ROLL team through the 2023 Cyber Valley Innovation Fellowship program, funded by the Carl-Zeiss-Stiftung.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/cyber-valley-grants-500k-cellnroll-2023-innovation-fellowship-program
  • Press release - 02/02/2024

    University of Stuttgart successful with cluster draft proposals

    The German Research Foundation (DFG) has announced the first pivotal decisions for the "Clusters of Excellence" funding line as part of the Excellence Strategy of the German federal and state governments. The University of Stuttgart has been given the green light for two new cluster initiatives.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/universitaet-stuttgart-mit-clusterskizzen-erfolgreich
  • Press release - 11/10/2023

    The new Center for Bionic Intelligence Tübingen Stuttgart

    The new Center for Bionic Intelligence Tübingen Stuttgart aims to optimize the interaction between humans and technical systems in a fundamentally new way. Scientists from the Universities of Stuttgart and Tübingen, the Max Planck Institute for Intelligent Systems and the Max Planck Institute for Biological Cybernetics are conducting research on intelligent bionic systems that will aid understanding and treatment of certain diseases of the CNS.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/zentrum-fuer-bionic-intelligence-tuebingen-stuttgart-gegruendet
  • Help with osteoarthritis of the knee - 27/09/2023 A skin-colored hemisphere printed with a silver needle in a 3D printer.

    Individualised knee-joint cartilage: artificial tissue that fits

    Knee joints are subject to considerable stress throughout our lives. The natural shock absorber cartilage wears out over a lifetime, so many people develop knee osteoarthritis. Treatment is available in the form of artificial cartilage. This "off-the-shelf" tissue often does not grow well. Researchers are developing an individualised cartilage replacement made from biomaterial that is produced by 3D printing based on MRI images.

    https://www.gesundheitsindustrie-bw.de/en/article/news/individualised-knee-joint-cartilage-artificial-tissue-fits
  • DNA nanotechnology - 25/08/2023 Graphic representation of the transport mechanism induced by digestion with RNase H of a vesicle shown in red along gray colored filaments.

    Artificial cytoskeleton made of DNA for synthetic cells

    The physicists Prof. Dr. Kerstin Göpfrich and Prof. Dr. Laura Na Liu want to understand life from the bottom up. They intend to do this by constructing an artificial cell. However, rather than natural protein building blocks, they are using 3D-DNA structures as construction material. The first step involved creating an artificial cell skeleton that dynamically assembles and disassembles like the biological model and can transport vesicles.

    https://www.gesundheitsindustrie-bw.de/en/article/news/artificial-cytoskeleton-made-dna-synthetic-cells
  • NeuroQ project - 26/07/2023 Zu sehen ist eine Frau mit einer Exoskeletthand, die ein Plastikflasche hält.

    Quantum sensors for exoskeletons: can quantum physics beat paralysis?

    Could people suddenly be able to move again decades after being paralysed? State-of-the-art quantum sensors integrated in exoskeletons could make this possible. Technology being developed as part of the BMBF-funded NeuroQ beacon project by researchers from organisations including the Fraunhofer IAF, the Charité in Berlin and the University of Stuttgart might achieve even more: besides facilitating movement, it could also help cure paralysis.

    https://www.gesundheitsindustrie-bw.de/en/article/news/quantum-sensors-exoskeletons-can-quantum-physics-beat-paralysis
  • Press release - 13/07/2023

    Intelligent rubber materials

    Wearable medical devices, such as soft exoskeletons that provide support for stroke patients or controlled drug delivery patches, have to be made of materials that can adapt intelligently and autonomously to the wearer's movements and to changing environmental conditions. These are the type of autonomously switchable polymer materials that have recently been developed by researchers at the University of Stuttgart and the University of…

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/intelligent-rubber-materials
  • Press release - 24/01/2023

    Controlling neural exoskeletons more precisely with diamond sensors

    Brain-computer interfaces are able to restore some mobility to paralyzed people by controlling exoskeletons. However, more complex control signals cannot yet be read from the head surface because conventional sensors are not sensitive enough. A collaboration of Fraunhofer IAF, Charité – Universitätsmedizin Berlin, University of Stuttgart and other industrial partners has taken up this challenge.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/mit-diamant-sensoren-neurale-exoskelette-praeziser-steuern
  • Press release - 21/06/2022

    Another step towards synthetic cells

    Scientists from the 2. Physics Institute at the University of Stuttgart and the Max Planck Institute for Medical Research were now able to take the next step towards synthetic cells: They introduced functional DNA-based cytoskeletons into cell-sized compartments and showed functionality. The results were recently published in Nature Chemistry.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/another-step-towards-synthetic-cells
  • Press release - 31/01/2022

    Cancer research learns from space travel

    Researchers use epigenetic factors to investigate the role of stress in the development of tumor diseases. Experts believe that stress plays a major role in the development of tumors. One occupational group, for example, that experiences extreme stress over a short period of time is astronauts.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/cancer-research-learns-space-travel
  • Gene regulation as a starting point for cancer therapies - 02/12/2021 Schematische Darstellung der verschiedenen Stadien der Genexpression. Nukleinsäurestränge sind durch farbige Linien, Proteine durch farbige Ellipsen und die Methylierung durch kleine Kreise dargestellt.

    New investigation method for deciphering complex epigenetic networks

    The development and maintenance of uncontrolled cell division in tumours is often due to the unbalanced, complex interplay of regulatory epigenetic networks. Researchers at the Institute of Biochemistry and Technical Biochemistry in Stuttgart have developed a new screening system to identify essential components that can serve as targets for anticancer drugs.

    https://www.gesundheitsindustrie-bw.de/en/article/news/new-investigation-method-deciphering-complex-epigenetic-networks
  • Press release - 19/10/2021

    Gips Schüle Research Award for three scientists from the University of Stuttgart

    Prof. Dr. Harald Gießen from the Institute of Physics (4) as well as Prof. Dr. Alois Herkommer and Dr. Simon Thiele from the Institute of Applied Optics at the University of Stuttgart received the Gips Schüle Research Award 2021 on October 19, 2021. The researchers were awarded the prize, which is valued at EUR 50,000.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/gips-schuele-research-award-three-scientists-university-stuttgart
  • Press release - 16/09/2021

    Organ twin: a “flight simulator” for surgeons

    Cyber Valley researchers have created medical educational tools that could potentially train the surgeons of the future, much like flight simulators train pilots. The team developed a range of artificial organ phantoms to serve as training platforms for surgeons. Thanks to the structured data of experienced medical professionals, a quantitative and objective assessment of a trainee’s skills can be assessed in real time.

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/organ-twin-flight-simulator-surgeons
  • Press release - 17/06/2021

    To fear or not - how does the brain switch?

    Which neurons in the brain mediate fear responses - and how do they flip the switch when the danger is over? The research team of Prof. Ingrid Ehrlich at the Institute of Biomaterials and Biomolecular Systems (IBBS), Department of Neurobiology studies these questions. Their latest results obtained in collaboration with scientists at the Friedrich Miescher Institute in Basel (Switzerland), the National Institute of Health (USA), and Innsbruck…

    https://www.gesundheitsindustrie-bw.de/en/article/press-release/fear-or-not-how-does-brain-switch
  • SICOS BW GmbH - 18/06/2020 SICOS BW ermöglicht zusammen mit dem Höchstleistungsrechenzentrum Stuttgart Unternehmen den Zugang zu Data Analytics, Smart Data und Big Data, KI und Virtual-Reality-Technologie.

    High-performance computing and data analytics to combat coronavirus

    In an epidemic, data exchange and the use of innovative technologies are essential to be able to act effectively and quickly against the infection. High-performance computers and data analytics make a valuable contribution to this. SICOS BW is a promising solution centre that bridges the gap from numerical simulation, big data and AI to companies in the medical technology sector.

    https://www.gesundheitsindustrie-bw.de/en/article/news/high-performance-computing-and-data-analytics-to-combat-coronavirus
  • Article - 19/09/2019 Die Biologin im Labor mit Algen in Glasflaschen

    Magnetised algae as microrobots for medical and environmental purposes

    Algae, for most of us, is something that lives in water courses that we occasionally find unpleasant. However, that is to do them a wrong. These extremely versatile and frugal organisms might in future prove to be extremely important. Scientists at the University of Stuttgart are investigating how algae can be used as microrobots in biomedicine and environmental remediation.

    https://www.gesundheitsindustrie-bw.de/en/article/news/magnetisierte-algen-als-mikroroboter-fuer-medizin-und-umwelt

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