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Minimally invasive surgery has revolutionized medicine by enabling interventions without large incisions, thereby significantly improving clinical outcomes. Such surgical techniques include insertions of needles, flexible snake-like continuum robots, and micro- and nano-robots. For effective medical diagnosis and treatment, the device must reach its intended target. In order to increase the targeting accuracy of the procedure and improve clinical outcomes, the goal of this research project is to develop new methods to design, manufacture, and control novel and micro/nano-robotic systems that mimic motion of organisms. Techniques would be developed to track and control the path of the novel devices using images (MR and ultrasound imaging modalities). You will build on the existing expertise in the lab in the micro-robotics and image-guided control of flexible surgical devices.
The present project will be conducted within the Surgical Robotics Laboratory and the Department of Biomechanical Engineering. In addition there are excellent opportunities for close collaboration with the MESA+ Institute for Nanotechnolgy, and several institutions abroad.
Please upload your application through the apply button before 1 March 2026.
Your application includes the following documents as a single pdf file with:
You are welcome to contact Prof. Sarthak Misra for any questions you might have.
Contact Information:
Prof. Sarthak Misra
Phone: +31-53-489-2704
Email: [email protected]
Lab website: Surgial Robotics Lab
At the Faculty of Engineering Technology (ET), we work on engineering for impact: developing smart, sustainable, human-centred and technological solutions for societal challenges. We connect fundamental education, research and practice across five core domains: Asset & Maintenance engineering, Intelligent Manufacturing Systems, Personalised Health Technology, Resilience Engineering, and Sustainable Production, Energy and Resources.
We work on education and research in mechanical engineering, civil engineering and industrial design engineering. Together, we learn by making, creating, and innovating, addressing challenges in a solution-oriented way. Quality, connection and inclusivity are the foundation of our culture.
In our open community, students, researchers and staff collaborate with industrial and societal partners. This enables us to develop insights, applications and solutions that add value to society.
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