IP Library Granted Patent US 9,188,682
Granted Patent B2
US 9,188,682 · App. 13/804,399 · Granted Nov 17, 2015

Computed radiography (CR) system

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Quick Facts
Patent No.
US 9,188,682
App. No.
13/804,399
Filed
Mar 14, 2013
Granted
Nov 17, 2015
Kind
B2
Examiner
VU, MINDY D
Art Unit
2884
USPC
250/363.01
Abstract

A computed radiography system includes a stimulating light source, a imaging plate (IP), a light collector having a bundle of optical fibers, a light detector, a mechanism providing relative movement in two orthogonal directions between the IP and the stimulating light source while maintaining the perpendicular relationship between the IP and the stimulating light, and a mechanism including an analog to digital converter for converting the collected and detected PLL to a diagnostic readout.

Claims (7)

1. A computed radiography system, comprising a stimulating light source, an imaging plate (IP) positioned such that the stimulating light impinges the IP perpendicularly thereto producing photostimulated luminescence light (PLL) having a wavelength different from said stimulating light source, a light collector having a bundle of optical fibers for collecting and transferring PLL emitted from the IP, the bundle providing with a linear end proximate to the IP and a two-dimensional end far away from the IP in which a plurality of optical fibers are arranged according to a constant rule, an optical filter in communication with said light collector for blocking stimulating light waves and passing PLL therethrough, a light detector for receiving PLL from the two-dimensional end of the bundle of the light collector, a mechanism providing relative movement in two orthogonal directions between the IP and the stimulating light source while maintaining the perpendicular relationship between the IP and the stimulating light, and a mechanism including an analog to digital converter for converting the collected and detected PLL to a diagnostic readout,

wherein a two dimensional shaped output portion includes the plurality of optical fibers advanced in a zigzag pattern along one direction of a predetermined two dimensional shape.

2. The computed radiography (CR) system of claim 1 , wherein the constant rule is that a n+1th optical fiber is disposed proximately to a nth optical fiber at the output end from which the PLL outputs.

3. The computed radiography (CR) system of claim 2 , wherein the plurality of optical fibers are arranged in order along one direction at a nth row and then arranged in order along the opposite direction at a n+1 th row so as to form the two dimensional shaped output portion.

4. The computed radiography (CR) system of claim 2 , wherein the two dimensional shaped output portion has one shape selected from a group of circular, square, and hexagon.

5. The computed radiography (CR) system of claim 4 , wherein the two dimensional shaped output portion is a hexagon.

6. The computed radiography (CR) system of claim 4 , wherein the two dimensional shaped output portion is a square.