Papers
7
Total Citations
135
H-Index
6
About
Peter Seitz is a versatile researcher whose work spans advanced imaging systems and medical robotics, with particular expertise in smart image sensors, three-dimensional imaging, and image-guided radiotherapy. His most influential contributions lie in the development of miniaturized 3D cameras based on the time-of-flight (TOF) principle, enabling real-time depth sensing in compact form factors — work that has attracted significant attention, with his 2006 paper on miniaturized smart cameras earning 43 citations and a companion study on demodulation pixel architectures garnering 39. These innovations have broad implications for robotics, automotive systems, surveillance, and industrial applications. Earlier in his career, Seitz pioneered smart image sensor technology that integrates photosensitive and electronic components on a single chip, laying groundwork that anticipated the field's growth. He also contributed to omnidirectional camera design, achieving 360-degree horizontal fields of view for navigation and security contexts. More recently, Seitz has pivoted toward medical imaging, contributing to robot-assisted, ultrasound-guided radiation therapy systems that promise real-time, radiation-free tumor localization. This breadth of impact — from consumer optics to life-saving clinical technology — marks Seitz as a remarkably adaptable and forward-thinking engineer.
Research Focus
Key Achievements
Top Papers
- 1Miniaturized smart cameras for 3D-imaging in real-time43 citations · 2006
- 2Demodulation Pixel Based on Static Drift Fields39 citations · 2006
- 3Development of a robot-assisted ultrasound-guided radiation therapy (USgRT)22 citations · 2019
- 4A time-of-flight line sensor: development and application12 citations · 2004
- 5Ultra-miniature catadioptrical system for an omnidirectional camera8 citations · 2008
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