Nova Patents
EP2223652B2

Dental extraoral x-ray imaging system

Abstract

This record has no abstract on file.

EP2223652B2, drawing sheet 1
Sheet 1 of 13

Term

0.1 yearsleft in the term

Expires 10 November 2026.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

9 claims: 1 independent, 8 dependent

  1. 1
    An extra-oral dental x-ray imaging system comprising:(a) an x-ray source (16) exposing x-rays to an object to be imaged (19), which x-ray source (16) is adapted to move for the duration of the exposure;(b) an x-ray imaging device (14) suitable for producing multiple overlapping frames (40) during at least part of the exposure, wherein the x-ray imaging device (14) has an active area (520) with a long dimension m (530) and a short dimension n (510) and wherein m/n > 1.5;(c) at least one rotational axis around which at least one of the x-ray source (16) and the imaging device (14) rotates along a spline along a predetermined geometric path and according to a predefined speed profile, the axis being located between a focal point (36) of the x-ray source (16) and the x-ray imaging device (14);(d) a processing device for inputting the multiple overlapping frames (40) to compose: an image of a first panoramic layer, and a limited volumetric 3D image of a volume corresponding to a part of said first panoramic layer, characterized in that the processing device is adapted to compose said limited volumetric 3D image utilizing an iterative algorithm, wherein said algorithm is adapted to use the 3D location of the x-ray source (16) and the x-ray imaging device (14) and the related movement profiles during the exposure and the predetermined geometric path to form reprojection data containing estimates of the projected frames based on a 3D model, said algorithm is adapted to calculate an error (1200) between the multiple overlapping frames and the estimates of the projected frames and to use the error to update the 3D model (1220), and said algorithm is adapted to use prior data to set restrictions on the 3D model.