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US Patent 8121249 Multi-parameter X-ray computed tomography

Patent 8121249 was granted and assigned to Virginia Tech Intellectual Properties on February, 2012 by the United States Patent and Trademark Office.

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Is a
Patent
Patent

Patent attributes

Current Assignee
Virginia Tech Intellectual Properties
Virginia Tech Intellectual Properties
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
8121249
Date of Patent
February 21, 2012
Patent Application Number
12794160
Date Filed
June 4, 2010
Patent Citations Received
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US Patent 12133772 Augmented reality headset for navigated robotic surgery
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US Patent 12121240 Rotary motion passive end effector for surgical robots in orthopedic surgeries
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US Patent 12121278 Compliant orthopedic driver
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US Patent 12127803 System for neuronavigation registration and robotic trajectory guidance, robotic surgery, and related methods and devices
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US Patent 11668588 Metal detector for detecting insertion of a surgical device into a hollow tube
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US Patent 11672622 Robot arm and methods of use
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US Patent 11684329 Collimator and detector based medical imaging systems
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US Patent 11684431 Surgical robot platform
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Patent Primary Examiner
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Alexander H Taningco
Patent abstract

The present invention relates to the field of x-ray imaging. More particularly, embodiments of the invention relate to methods, systems, and apparatus for imaging, which can be used in a wide range of applications, including medical imaging, security screening, and industrial non-destructive testing to name a few. Specifically provided as embodiments of the invention are systems for x-ray imaging comprising: a) a first collimator-and-detector assembly having a first operable configuration to provide at least one first dataset comprising primary x-ray signals as a majority component of its data capable of being presented as a first image of an object subjected to x-ray imaging; b) a second collimator-and-detector assembly having a second operable configuration or wherein the first collimator-and-detector assembly is adjustable to a second configuration to provide at least one second dataset comprising primary and dark-field x-ray signals as a majority component of its data capable of being presented as a second image of the object; and c) a computer operably coupled with the collimator-and-detector assemblies comprising a computer readable medium embedded with processing means for combining the first dataset and the second dataset to extract the dark-field x-ray signals and produce a target image having higher contrast quality than the images based on the first or second dataset alone. Such systems can be configured to comprise at least two collimator-and-detector assemblies or configurations differing with respect to collimator height, collimator aperture, imaging geometry, or distance between an object subjected to the imaging and the collimator-and-detector assembly.

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