IP Library Granted Patent US 10,582,906
Granted Patent B2
US 10,582,906 · App. 16/571,947 · Granted Mar 10, 2020

Radiological imaging device with advanced sensors

Inventors: Gregory William Stoutenburgh (San Clemente, CA); Damiano Fortuna (Rignano Sull'Arno, IT); Leonardo Manetti (Montevarchi, IT)
Assignee: Epica International, Inc.
A61B6/5205A61B6/032A61B6/035A61B6/0407A61B6/06A61B6/08A61B6/4035A61B6/4233A61B6/487A61B6/542
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Quick Facts
Patent No.
US 10,582,906
App. No.
16/571,947
Granted
Mar 10, 2020
Kind
B2
Abstract

A method and device for acquiring a radiological image of at least part of a patient placed in a gantry. The method includes causing a source to emit radiation that passes through the at least part of the patient and receiving the radiation at a detector. In one embodiment the detector may include at least one first linear sensor having a first sensitive surface and a second linear sensor having a second sensitive surface, wherein the sensitive surfaces are partially overlapped along the direction of movement. The method also includes generating the radiological image at a control unit by generating a first image acquired by the first linear sensor and a second image acquired by the second linear sensor. The control unit may overlap the first and second images in a region where the first and second linear sensors overlap.

Claims (23)

1. A method of acquiring a radiological image of at least part of a patient placed in a gantry, the method comprising:

causing a source to emit radiation that passes through the at least part of the patient, the radiation defining a central axis of propagation;

receiving the radiation at a detector, and the detector includes at least one first linear sensor having a first sensitive surface and a second linear sensor having a second sensitive surface, wherein the sensitive surfaces are partially overlapped along the direction of movement;

outputting data signals from the detector to a control unit;

generating the radiological image, at the control unit, by generating a first image acquired by the first linear sensor and a second image acquired by the second linear sensor, and overlapping the first and second images in a region where the first and second linear sensors overlap.

2. The method of claim 1 , further comprising continuously translating the source and the detector in a direction of movement substantially perpendicular to the central axis of propagation using a translation mechanism that is connected to the source and the detector.

3. The method of claim 2 , further comprising acquiring an image from data signals received continuously from the detector while the translation mechanism continuously translates the source emitting the radiation and the detector receiving the radiation, so as to scan the at least part of the patient.

4. The method of claim 1 , wherein a superimposition zone of the sensitive surfaces is positioned substantially at the central axis of propagation.

5. The method of claim 1 , further comprising providing a bed suitable to support the patient, wherein the bed defines an axis of extension.

6. The method of claim 5 , wherein the direction of movement is substantially parallel to the axis of extension.

7. The method of claim 5 , further comprising rotating the source and the detector in relation to the axis of extension.

8. The method of claim 1 , further comprising reducing edge effects by reconstructing, at the control unit, the radiological image by excluding a portion of the first image that overlaps an edge of the first linear sensor.

9. The method of claim 8 , further comprising reducing edge effects by reconstructing, at the control unit, the radiological image by excluding a portion of the second image that overlaps an edge of the second linear sensor.

10. A radiological imaging device comprising:

a gantry defining an analysis zone in which at least part of a patient is placed;

a source suitable to emit radiation that passes through the at least part of the patient, the radiation defining a central axis of propagation; and

a detector suitable to receive the radiation, and the detector includes at least one first linear sensor having a first sensitive surface and a second linear sensor having a second sensitive surface, the first sensitive surface is equal in size to the second sensitive surface, and in relation to a direction of movement that is perpendicular to the central axis of propagation, the first sensitive surface overlaps the second sensitive surface so that a fraction of the first and second sensitive surfaces to be hit by the radiation is less than 30%.

11. The device of claim 10 , wherein and in relation to the direction of movement, the first sensitive surface overlaps the second sensitive surface so that a fraction of the first and second sensitive surfaces to be hit by the radiation is less than 20%.

12. The device of claim 10 , wherein and in relation to the direction of movement, the first sensitive surface overlaps the second sensitive surface so that a fraction of the first and second sensitive surfaces to be hit by the radiation is less than 10%.

13. The device of claim 10 , further comprising a translation mechanism adapted to translate the source and the detector in the direction of movement substantially perpendicular to the central axis of propagation.

14. The device of claim 13 , further comprising a control unit adapted to acquire an image from data signals received continuously from the detector while the translation mechanism continuously translates the source emitting the radiation and the detector receiving the radiation, so as to scan the at least part of the patient.

15. The device of claim 10 , wherein the detector includes an inversion unit adapted to rotate at least one of the first linear sensor and the second linear sensor.

16. The device of claim 15 , wherein the inversion unit rotates at least one of the first linear sensor and the second linear sensor in relation to an axis of rotation substantially parallel to the central axis of propagation.

Assignments (3)
INTELLECTUAL PROPERTY SECURITY INTEREST AGENT AGREEMENT Recorded Mar 13, 2026
From: AVENUE VENTURE OPPORTUNITIES FUND, L.P.
To: QUANTUM SCAN HOLDINGS, INC.
Reel/Frame 075093/0287 →
SECURITY INTEREST Recorded Sep 5, 2024
From: EPICA INTERNATIONAL, INC.; EPICA MEDICAL INNOVATIONS LLC
To: AVENUE VENTURE OPPORTUNITIES FUND, L.P., AS AGENT
Reel/Frame 068503/0757 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2021
From: STOUTENBURGH, GREGORY WILLIAM, MR; FORTUNA, DAMIANO, MR; MANETTI, LEONARDO, MR
To: EPICA INTERNATIONAL, INC.
Reel/Frame 055613/0235 →
Continuity (7)
Continuation 15366883 · Dec 1, 2016
Continuation 14323808 · Jul 3, 2014
Provisional Application 61932024 · Jan 27, 2014
Provisional Application 61932028 · Jan 27, 2014
Provisional Application 61932034 · Jan 27, 2014
Provisional Application 61944956 · Feb 26, 2014
Related Publication 20200008767A1 · Jan 9, 2020
Cited By (1)
US 12,527,534