IP Library Granted Patent US 8,653,469
Granted Patent B1
US 8,653,469 · App. 13/709,794 · Granted Feb 18, 2014

K-alpha probe for detection of photon emissions

Inventor: John D. Call (Waverly, OH)
Assignee: Devicor Medical Products, Inc.
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Quick Facts
Patent No.
US 8,653,469
App. No.
13/709,794
Granted
Feb 18, 2014
Kind
B1
Abstract

A probe for detecting K-alpha photon emissions. A housing has an aperture at an end. A detector crystal is situated within the housing adjacent to the housing aperture. An energy conversion device is situated within the housing between the detector crystal and the aperture. The energy conversion device is made from a predetermined material configured to convert energy directed through the housing aperture from a source of primary photon emission radiation to a corresponding secondary K-alpha emission within a predetermined emission energy acceptance window. A power supply is coupled to the detector crystal and is configured to establish a polarized electrical field between the anode and the cathode of the detector crystal. The detector crystal receives the K-alpha emission and generates an electrical signal representative of the amount of target emissions received through the housing aperture.

Claims (27)

1. A probe for detecting K-alpha photon emissions, the probe comprising:

a housing having a housing end configured for receiving energy from a primary photon emission source;

an energy conversion device disposed within the housing, the energy conversion device comprising a material configured to convert energy received from the primary photon emission source to a corresponding secondary K-alpha emission; and

a detector crystal disposed within the housing, the detector crystal configured to receive the secondary K-alpha emission and generate a signal representative of energy received through the housing end.

2. The probe of claim 1 wherein the housing end further comprises an aperture through which energy from the primary photon emission source is received.

3. The probe of claim 1 wherein the detector crystal comprises cadmium zinc telluride.

4. The probe of claim 1 wherein the detector crystal comprises cesium iodide.

5. The probe of claim 1 wherein the energy conversion device comprises a metal.

6. The probe of claim 1 wherein the energy conversion device comprises at least one of lead, tantalum, tungsten, gold and bismuth.

7. The probe of claim 1 , further comprising a side shield.

8. The probe of claim 7 wherein the side shield substantially surrounds an edge of the detector crystal.

9. The probe of claim 1 , further comprising a shield aft of the detector crystal.

10. A probe for detecting K-alpha photon emissions, comprising:

a housing having a housing end;

a cadmium zinc telluride detector crystal having a cathode and an anode spaced apart from the cathode, the detector crystal disposed within the housing with one of the cathode and the anode adjacent to the housing end; and

a metallic member disposed within the housing intermediate the detector crystal and the housing end, the metallic member being configured to convert energy directed through the housing end from a source of primary photon emission radiation to a corresponding secondary K-alpha emission within a predetermined emission energy acceptance window.

11. The probe of claim 10 , further comprising a side shield disposed to shield an edge of the detector crystal.

12. The probe of claim 10 , further comprising a shield proximate the detector crystal.

13. The probe of claim 10 , further comprising a power supply coupled to the detector crystal and configured to establish a polarized electrical field across the detector crystal.

14. The probe of claim 10 , further comprising a cover adjacent to the metallic member.

15. The probe of claim 10 wherein the metallic member comprises at least one of lead, tantalum, tungsten, bismuth, and gold.

16. A probe for detecting K-alpha photon emissions, comprising:

an energy conversion device comprising a metal and configured to convert energy from a source of primary photon emission radiation to a corresponding secondary K-alpha emission within a predetermined emission energy acceptance window; and

a detector crystal having a cathode, an anode spaced apart from the cathode, and an edge extending between the cathode and the anode, the detector crystal disposed to receive the K-alpha emission, and the detector crystal configured to generate an electrical signal representative of the amount of primary photon energy received by the energy conversion device.

17. The probe of claim 16 , further comprising a side shield disposed to shield the edge of the detector crystal.

18. The probe of claim 16 , further comprising a shield aft of and proximate the detector crystal.

19. The probe of claim 16 wherein the detector crystal comprises cadmium zinc telluride.

Assignments (3)
NUNC PRO TUNC ASSIGNMENT Recorded May 10, 2013
From: CALL, JOHN D.
To: NEOPROBE CORPORATION
Reel/Frame 030394/0386 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2013
From: CALL, JOHN D.
To: NEOPROBE CORPORATION
Reel/Frame 030055/0950 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2013
From: NEOPROBE CORPORATION
To: DEVICOR MEDICAL PRODUCTS, INC.
Reel/Frame 030056/0254 →
Continuity (2)
Continuation 12727441 · Mar 19, 2010
Provisional Application 61162221 · Mar 20, 2009