Auf einen Blick
- Aufgaben: Help model 3D human spine motion and develop algorithms for biomechanics research.
- Arbeitgeber: Join Zuse Institute Berlin, a leading research hub in applied mathematics and computer science.
- Mitarbeitervorteile: Enjoy flexible working hours, mobile work options, and support for your master's thesis.
- Warum dieser Job: Dive into cutting-edge research on lower back pain while enhancing your skills in 3D graphics and programming.
- Gewünschte Qualifikationen: Must be a master's student in relevant fields with programming experience in Python or C++.
- Andere Informationen: Women and applicants with disabilities are encouraged to apply; the position is limited to 18 months.
Zuse Institute Berlin - Visual and Data-Centric Computing
The Zuse Institute Berlin (ZIB) is a non-university research institute under public law of the state of Berlin. We conduct research and development in applied mathematics and computer science as well as the analysis and processing of complex data in conjunction with high-performance computing.
For our research group Computational Diagnosis and Therapy Planning, which is part of the division Visual and Data-Centric Computing, we are looking for a Student Assistant - 3D Human Spine Modeling and Articulation (f/m/d).
We are addressing this offer to master's students, who are highly interested in simulating human body motion, and modeling human anatomy with a focus on biomechanics and experimental orthopedics.
Working field:
The project in which we are looking for support is part of the DFG Research Unit 5177 that we carry out in close collaboration with Charité Berlin. The main goal of the research unit is to investigate reasons and possible therapeutic concepts for lower back pain (LBP). In our sub-project, we are investigating which spinal configurations and motions that may be associated with LBP. For that purpose, it is crucial to analyze a large pool of 3D models of the human spine.
In this position, you will support us in our implementation and test of novel algorithms within the fields of 3D computer graphics and geometry processing.
Your Tasks:
- Modeling joints between 3D shapes of spinal vertebrae to simulate spinal motion (flexion, extension, torsion)
- Developing a fast collision detection and avoidance algorithm
- Fitting the articulated spine model to individual spine measurements without model intersections
Requirements:
Your Profile - Basic Requirements
- A master's student in computer science, computer engineering, applied mathematics or any program with comparable course work
- Experience in one programming languages such as Python or C++
- Knowledge in developing GPU-accelerated algorithms utilizing libraries such as OpenGL, OpenCL, CUDA or similar - (optional)
- Highly interested in 3D computer graphics, the development of fast algorithms, game engines, and game development
- Basic knowledge in some of the following topics is a plus: distance fields, collision detection/avoidance, inverse kinematics, 3D animation - (optional)
- Interested in modeling human anatomy and body motion for applied biomechanics
- Capable of working in a team, as well as independently, and in a goal-oriented manner
- Good knowledge in linear algebra and practical experience in respective libraries
- Interest in basic optimization algorithms
What we offer:
Active introductory training in a small and motivated team as well as a flexible working environment with the possibility of mobile work. The employment is based on the collective agreement for student employees with 41 hours/month and is limited to 18 months (with an option for extension). We will support a possible master's thesis based on this work. Female applicants are highly encouraged to apply. Since women are underrepresented in information technology, the ZIB is trying to increase the proportion of women in this research area.
How to apply:
Applicants with disabilities will be given preference if equally qualified. Please send your full application, quoting the reference code SH 14/23, including CV and the standard supporting documents as well as your certificate of matriculation in pdf-format (one file) by October 22nd, 2023 (date of receipt) to: jobs@zib.de
Our private policy statement regarding application data is available at www.zib.de/impressum. For further information about the position, please refer to our website www.zib.de or contact Cagdas Aslan (aslan@zib.de) or Dr. Stefan Zachow (zachow@zib.de). For further job offers please visit our website at www.zib.de/jobads.
Student Assistant - 3D Human Spine Modeling and Articulation (f/m/d) Reference Code: SH 14/23 Pay Arbeitgeber: Zuse Institute Berlin
Kontaktperson:
Zuse Institute Berlin HR Team
jobs@zib.de
StudySmarter Bewerbungstipps 🤫
So bekommst du den Job: Student Assistant - 3D Human Spine Modeling and Articulation (f/m/d) Reference Code: SH 14/23 Pay
✨Tip Number 1
Make sure to familiarize yourself with the specific algorithms and techniques mentioned in the job description, such as collision detection and inverse kinematics. This knowledge will not only help you during the interview but also show your genuine interest in the role.
✨Tip Number 2
Engage with the research community at Zuse Institute Berlin by attending relevant seminars or workshops. This can provide you with insights into their current projects and help you make valuable connections that could support your application.
✨Tip Number 3
If you have experience with GPU-accelerated algorithms, be prepared to discuss specific projects or challenges you've faced. Highlighting your practical experience will demonstrate your capability to contribute effectively to the team.
✨Tip Number 4
Showcase your teamwork skills by preparing examples of past collaborative projects. The ability to work well in a team is emphasized in the job description, so having concrete examples ready can set you apart from other candidates.
Diese Fähigkeiten machen dich zur top Bewerber*in für die Stelle: Student Assistant - 3D Human Spine Modeling and Articulation (f/m/d) Reference Code: SH 14/23 Pay
Tipps für deine Bewerbung 🫡
Understand the Role: Make sure you fully understand the responsibilities and requirements of the Student Assistant position. Familiarize yourself with the specific tasks related to 3D modeling and biomechanics, as well as the programming languages and algorithms mentioned in the job description.
Tailor Your CV: Customize your CV to highlight relevant experience in computer science, applied mathematics, or any related field. Emphasize your skills in programming languages like Python or C++, and any experience with GPU-accelerated algorithms or 3D graphics.
Craft a Strong Cover Letter: Write a compelling cover letter that explains your interest in the position and how your background aligns with the research goals of the Zuse Institute Berlin. Mention any specific projects or experiences that demonstrate your capabilities in 3D modeling and algorithm development.
Prepare Supporting Documents: Gather all necessary documents, including your certificate of matriculation, CV, and any other supporting materials. Ensure they are compiled into a single PDF file as requested in the job description before submitting your application.
Wie du dich auf ein Vorstellungsgespräch bei Zuse Institute Berlin vorbereitest
✨Show Your Passion for 3D Modeling
Make sure to express your enthusiasm for 3D computer graphics and modeling human anatomy. Share any relevant projects or experiences that demonstrate your interest in biomechanics and how they relate to your studies.
✨Demonstrate Your Technical Skills
Be prepared to discuss your experience with programming languages like Python or C++. Highlight any work you've done with GPU-accelerated algorithms or libraries such as OpenGL, OpenCL, or CUDA, as these are crucial for the role.
✨Prepare for Problem-Solving Questions
Expect questions that assess your problem-solving abilities, especially related to collision detection and avoidance algorithms. Think of examples where you successfully tackled similar challenges in your coursework or projects.
✨Emphasize Teamwork and Independence
The position requires both teamwork and independent work. Be ready to share examples of how you've successfully collaborated with others on projects, as well as instances where you took initiative and worked independently towards a goal.