Josefine Schreiter, M.Sc.

Position: PhD Candidate

Phone: ++49 391 67-59366

E-Mail: josefine.schreiter@ovgu.de

Office: G82-165

Short Bio

I obtained my Bachelor's degree in Medical Engineering (B.Eng.) at the University of Applied Sciences Jena, followed by a Master's degree in Medical Systems Engineering (M.Sc.) at Otto-von-Guericke University Magdeburg, where I specialized in Medical Imaging and Theoretical Neurosciences. Since 2020, I have pursuing my PhD in the Virtual and Augmented Reality Group at Otto-von-Guericke University Magdeburg and the Research Campus STIMULATE. I have gained international experiences through work stays in China, South Africa, Nicaragua, and Australia.

Research Interests

My research focuses on human-robot interaction in medical contexts and on integrating augmented and mixed reality technologies to support robotic interventional and surgical workflows. I explore how intuitive interaction concepts can enhance the collaboration between clinicans and robotic systems.

  • Multimodal interfaces for controlling (medical) robots
  • Comparative evaluation of interaction modalities for human–robot collaboration
  • AR/XR-based interfaces for robotic procedures

Contact:
LinkedIn | ORCID | ResearchGate

Publications

2025

Multimodal human–computer interaction in interventional radiology and surgery: a systematic literature review

Schreiter, J; Heinrich, F; Hatscher, B; Schott, D; Hansen, C

Multimodal human–computer interaction in interventional radiology and surgery: a systematic literature review Journal Article

In: International Journal of Computer Assisted Radiology and Surgery, vol. 20, no. 4, pp. 807–816, 2025, ISSN: 1861-6429.

Abstract | Links | BibTeX

Exploring Interaction Concepts for the Manipulation of a Collaborative Robot: A Comparative Study

Schreiter, J; Mielke, T; Georgiades, M; Pech, M; Hansen, C; Heinrich, F

Exploring Interaction Concepts for the Manipulation of a Collaborative Robot: A Comparative Study Proceedings Article

In: Proceedings of the 2025 ACM/IEEE International Conference on Human-Robot Interaction, pp. 55–64, IEEE Press, Melbourne, Australia, 2025.

Abstract | BibTeX

2022

A multimodal user interface for touchless control of robotic ultrasound

Schreiter, J; Mielke, T; Schott, D; Thormann, M; Omari, J; Pech, M; Hansen, C

A multimodal user interface for touchless control of robotic ultrasound Journal Article

In: International Journal of Computer Assisted Radiology and Surgery, vol. 18, no. 8, pp. 1429–1436, 2022, ISSN: 1861-6429.

Abstract | Links | BibTeX

AR-Supported Supervision of Conditional Autonomous Robots: Considerations for Pedicle Screw Placement in the Future

Schreiter, J; Schott, D; Schwenderling, L; Hansen, C; Heinrich, F; Joeres, F

AR-Supported Supervision of Conditional Autonomous Robots: Considerations for Pedicle Screw Placement in the Future Journal Article

In: Journal of Imaging, vol. 8, no. 10, pp. 255, 2022, ISSN: 2313-433X, (Publisher: Multidisciplinary Digital Publishing Institute).

Abstract | Links | BibTeX

Towards a real-time control of robotic ultrasound using haptic force feedback

Schreiter, J; Semshchikov, V; Hanses, M; Elkmann, N; Hansen, C

Towards a real-time control of robotic ultrasound using haptic force feedback Journal Article

In: Current Directions in Biomedical Engineering, vol. 8, no. 1, pp. 81–84, 2022, ISSN: 2364-5504, (Publisher: De Gruyter).

Abstract | Links | BibTeX

2021

Application Potential of Robot-Guided Ultrasound During CT-Guided Interventions

Schreiter, J; Joeres, F; March, C; Pech, M; Hansen, C

Application Potential of Robot-Guided Ultrasound During CT-Guided Interventions Proceedings Article

In: Noble, J; Aylward, S; Grimwood, A; Min, Z; Lee, S; Hu, Y (Ed.): Simplifying Medical Ultrasound, pp. 116–125, Springer International Publishing, Cham, 2021, ISBN: 978-3-030-87583-1.

Abstract | Links | BibTeX

error: Content is protected !!