A Low-Cost, Robust, Optical Method of Measuring Object in Three-Dimensions at High Accuracy and High Resolution
The attenuation and other optical properties of a medium are exploited to measure a thickness of the medium between a sensor and a target surface. Disclosed herein are various mediums, arrangements of hardware, and processing techniques that can be used to capture these thickness measurements and obtain three-dimensional images of the target surface in a variety of imaging contexts. This includes general techniques for imaging interior/concave surfaces as well as exterior/convex surfaces, as well as specific adaptations of these techniques to imaging ear canals, human dentition, and so forth.
Researchers
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three-dimensional imaging using an inflatable membrane and an intensity ratio based on differential light absorption at two wavelengths
United States of America | Granted | 8,116,853 -
imaging tray with medium disposed therein for ratiometric determination of object shape
United States of America | Granted | 8,116,854 -
three-dimensional imaging using a luminescent surface and a differentially attenuating medium
United States of America | Granted | 8,112,146 -
three-dimensional imaging using absorption
United States of America | Granted | 8,107,086 -
three-dimensional imaging using a single camera
United States of America | Granted | 8,619,154 -
three-dimensional imaging using a single camera
United States of America | Granted | 8,976,263 -
systems and methods for imaging using absorption
European Patent Convention | Granted | 2,746,719 -
layered medium for three-dimensional imaging
United States of America | Granted | 9,097,512 -
systems and methods for imaging using absorption
Japan | Granted | 5,946,886 -
layered medium for three-dimensional imaging
United States of America | Granted | 9,820,636 -
systems and methods for imaging using absorption
European Patent Convention | Granted | 3,266,367
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