Date: Aug 25, 2026 Location: Company: PULSION Medical Systems SE Remote Work: 3-4 days at home (hybrid) With a passion for life Join our diverse teams of passionate people and a career that allows you to develop both personally and professionally. At Getinge we exist to make life-saving technology accessible for more people. To make a true difference for our customers – and to save more lives, we need team players, forward thinkers, and game changers. Are you looking for an inspiring career? You just found it. Master Thesis Opportunity - Optimization of thermal response characteristics of an intravascular PiCCO Catheter Become part of something bigger At Getinge, we are committed to helping save lives. Every day, our products support healthcare professionals worldwide in delivering safe and effective patient care. To strengthen our R&D Consumables team, we are looking for a Master's student who is passionate about medical technology, product development, and engineering innovation. Master Thesis Topic Optimization of the thermal response time of a PiCCO Catheter for Advanced Hemodynamic Monitoring The PiCCO catheter is a key component of the PiCCO hemodynamic monitoring technology and enables the determination of cardiac output through transpulmonary thermodilution. A temperature sensor (thermistor) integrated into the catheter measures very small blood temperature changes. The speed and consistency of this measurement, commonly expressed as the thermal response time (τ), are critical for measurement accuracy and clinical performance. Your Challenge In this thesis you will investigate how the thermal response behaviour of the existing PiCCO catheter design can be improved and how variability between catheters can be reduced. The current design includes an integrated sensor located inside the catheter, creating a complex heat transfer system between blood, catheter materials, and sensor components. Scope Conduct a literature review on heat transfer mechanisms, sensor technology, and medical sensor design. Analyse the current catheter design and identify key parameters influencing thermal response time. Develop and assess innovative design concepts to reduce τ and improve measurement consistency. Investigate the impact of geometry, materials, sensor positioning, and manufacturing tolerances. Perform simulations (e.g., FEM/CFD) and/or experimental testing to evaluate design alternatives. Use Design of Experiments (DoE) and statistical methods to identify critical parameters. Establish decision criteria considering performance, manufacturability, risk, regulatory impact, and cost. Recommend an optimized design concept and implementation roadmap. Expected Outcome The thesis should deliver a comprehensive understanding of the factors influencing thermal response performance and provide a data-driven recommendation for future product improvements. The results may directly contribute to the next generation of PiCCO catheter technology. Your Profile Master's student in: Biomedical Engineering Medical Technology Mechanical Engineering Materials Science Polymer Engineering Physics or a related field Strong analytical and problem-solving skills Interest in medical device development Experience with laboratory testing, simulation tools, or statistical analysis is beneficial Independent and structured working style Good communication skills in English What We Offer Exciting and meaningful work within a global medical technology company Direct contribution to products that support critical care patients worldwide Hands-on experience in product development within a regulated medical device environment Close collaboration with experienced R&D engineers and subject matter experts Opportunity to combine experimental work, simulations, and product innovation Flexible start date and thesis duration according to university requirements Location Aschheim-Dornach (Munich Area), Germany Interested? Join us and help improve technologies that make a difference for patients around the world. About us With a firm belief that every person and community should have access to the best possible care, Getinge provides hospitals and life science institutions with products and solutions aiming to improve clinical results and optimize workflows. The offering includes products and solutions for intensive care, cardiovascular procedures, operating rooms, sterile reprocessing and life science. Getinge employs over 12,000 people worldwide and the products are sold in more than 135 countries.
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