IP Library Granted Patent US 11,176,669
Granted Patent B2
US 11,176,669 · App. 16/706,111 · Granted Nov 16, 2021

System for remote medical imaging using two conventional smart mobile devices and/or augmented reality (AR)

Inventor: Robert A. Connor (St. Paul, MN)
Assignee: Holovisions LLC
G06T7/0014G06T7/97G06T19/006G06T2219/2012G06T2219/2021
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Quick Facts
Patent No.
US 11,176,669
App. No.
16/706,111
Granted
Nov 16, 2021
Kind
B2
Abstract

This invention is a system for remote medical imaging which uses conventional mobile devices (such as two smart phones) and/or augmented reality to calibrate attributes such as the size, color, and shape of a wound, injury, skin lesion, and/or tissue abnormality on a person's body. One of the mobile devices is placed near the wound, injury, skin lesion, and/or tissue abnormality and acts as a digital fiducial marker or color key to help calibrate the size, color, and/or shape of the wound, injury, skin lesion, and/or tissue abnormality.

Claims (28)

1. A system for remote medical imaging comprising:

a first mobile device which is configured to be positioned a first distance from a wound, injury, skin lesion, and/or tissue abnormality, wherein the first distance is less than 30 centimeters, and wherein the first mobile device displays a first image;

a second mobile device which is configured to be positioned a second distance from the wound, injury, skin lesion, and/or tissue abnormality, wherein the second distance is greater than 3 centimeters and less than 300 centimeters; wherein the second mobile device records a second image; wherein both the wound, injury, skin lesion, and/or tissue abnormality and the first image are included in the second image; and

a data processor which analyzes the second image to evaluate a size, area, depth, volume, shape, outline, texture, color, temperature, spectral absorption distribution, and/or movement of the wound, injury, skin lesion, and/or tissue abnormality; wherein analysis of the second image includes analysis of a size, shape, color, and/or light intensity of objects in the first image to help evaluate the size, area, depth, volume, shape, outline, texture, color, temperature, spectral absorption distribution, and/or movement of the wound, injury, skin lesion, and/or tissue abnormality.

2. The system in claim 1 wherein the first mobile device is a first smart phone and the second mobile device is a second smart phone.

3. The system in claim 1 wherein the first mobile device is a smart phone and the second mobile device is smart eyewear with a camera.

4. The system in claim 1 wherein the first mobile device is a smart watch or other wearable device with a display and the second mobile device is smart eyewear with a camera.

5. The system in claim 1 wherein the first mobile device is a smart phone and the second mobile device is a smart watch or other wearable device with a camera.

6. The system in claim 1 wherein the first mobile device digitally displays a fiducial marker which is used in analysis of the size of the wound, injury, skin lesion, and/or tissue abnormality.

7. The system in claim 1 wherein the first mobile device digitally displays a color key or color spectrum which is used in analysis of the colors of the wound, injury, skin lesion, and/or tissue abnormality.

8. The system in claim 1 wherein the first mobile device digitally displays a geometric shape which is used in analysis of the size and/or shape of the wound, injury, skin lesion, and/or tissue abnormality or the viewing angle of the wound, injury, skin lesion, and/or tissue abnormality.

9. The system in claim 1 wherein a size of an element in the first image is adjusted by a person to match a size of the wound, injury, skin lesion, and/or tissue abnormality or a portion of the wound, injury, skin lesion, and/or tissue abnormality.

10. The system in claim 1 wherein a color of an element in the first image is adjusted by a person to match a color of the wound, injury, skin lesion, and/or tissue abnormality.

11. The system in claim 1 wherein a shape of an element in the first image is adjusted by a person to match a shape of the wound, injury, skin lesion, and/or tissue abnormality.

12. The system in claim 1 wherein a size of an element in the first image is adjusted automatically by the system to match a size of the wound, injury, skin lesion, and/or tissue abnormality or a portion of the wound, injury, skin lesion, and/or tissue abnormality.

13. The system in claim 1 wherein a color of an element in the first image is adjusted automatically by the system to match a color of the wound, injury, skin lesion, and/or tissue abnormality.

14. The system in claim 1 wherein a shape of an element in the first image is adjusted automatically by the system to match a shape of the wound, injury, skin lesion, and/or tissue abnormality.

15. The system in claim 1 wherein the first image guides a person concerning where to position and/or how to move the second device to capture an image of the wound, injury, skin lesion, and/or tissue abnormality from a selected distance and/or angle.

16. The system in claim 15 wherein the first image guides a person concerning where to position and/or how to move the second device to different distances and viewing angles relative to the wound, injury, skin lesion, and/or tissue abnormality in order to compile a 3D image of the wound, injury, skin lesion, and/or tissue abnormality.

17. A system for remote medical imaging comprising:

a first mobile device which is configured to be placed next to a wound, injury, skin lesion, and/or tissue abnormality on a surface which is substantially coplanar with the wound, injury, skin lesion, and/or tissue abnormality; wherein the first mobile device displays a first image including fiducial and/or calibration features;

a second mobile device which captures a second image which includes both the wound, injury, skin lesion, and/or tissue abnormality and the first image; and

a data processor which analyzes the second image, including the fiducial and/or calibration features displayed by the first mobile device, to evaluate a size, area, depth, volume, shape, outline, texture, color, temperature, spectral absorption distribution, and/or movement of the wound, injury, skin lesion, and/or tissue abnormality.

18. The system in claim 17 wherein the first mobile device is a first smart phone and the second mobile device is a second smart phone.

19. The system in claim 17 wherein the first mobile device is a smart phone and the second mobile device is smart eyewear with a camera.

20. A system for remote medical imaging comprising:

a mobile device with augmented reality (AR) functionality which enables a person to simultaneously see a wound, injury, skin lesion, and/or tissue abnormality and a virtual object displayed in their field of view; wherein the system moves the virtual object to guide the person concerning how to move a mobile device to capture images of the wound, injury, skin lesion, and/or tissue abnormality from different distances and/or angles in order to compile a 3D image of the wound, injury, skin lesion, and/or tissue abnormality; and

a data processor which analyzes the 3D image to evaluate a size, area, depth, volume, shape, outline, texture, color, temperature, spectral absorption distribution, and/or movement of the wound, injury, skin lesion, and/or tissue abnormality.

Continuity (2)
Provisional Application 62833761 · Apr 14, 2019
Related Publication 20200327670A1 · Oct 15, 2020