IP Library › Granted Patent US 11,213,208
Granted Patent B2
US 11,213,208 · App. 16/082,812 · Granted Jan 4, 2022

Multispectral imaging device

Inventors: Jae Youn Hwang (Daegu, KR); Jae Eun Jang (Daegu, KR); Man Jae Kim (Gyeonggi-do, KR)
Assignee: DAEGU GYEONGBUK INSTITUTE OF SCIENCE AND TECHNOLOGY
A61B5/0077A61B5/00A61B5/0033A61B5/441F21S2/005F21V5/04F21V9/00A61B5/6898A61B2562/0233
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Quick Facts
Patent No.
US 11,213,208
App. No.
16/082,812
Granted
Jan 4, 2022
Kind
B2
Abstract

A multispectral imaging device in accordance with one embodiment comprises: an illumination unit for emitting LED lighting to the skin for skin illumination; and a detection unit for causing light reflected from the skin to be incident on a camera, wherein the illumination unit is arranged on the outer side of the detection unit, so that a path of the LED lighting emitted from the illumination unit is formed on the outer side of the detection unit, and a path of the light reflected from the skin is formed on the inner side of the detection unit.

Claims (64)

1. A multispectral imaging device comprising:

an illuminator configured to emit light emitting diode (LED) light for skin illumination to a skin; and

a detector configured to allow light reflected from the skin to be incident on a camera,

wherein the illuminator is disposed on an outer side of the detector such that a path of the LED light emitted from the illuminator is formed externally to the detector and a path of the light reflected from the skin is formed internally to the detector,

wherein the illuminator comprises:

an LED substrate on which a plurality of LED light sources is mounted; and

a plurality of band-pass filters provided to be in contact with at least a portion of the plurality of LED light sources,

wherein the LED substrate is in a ring shape, and

wherein the plurality of LED light sources and the plurality of band-pass filters are selectively activated by controlling the plurality of LED light sources to be on or off, and the plurality of LED light sources is controlled to be on or off by an embedded system controlled by a mobile device.

2. The multispectral imaging device of claim 1 ,

wherein the detector comprises:

an optical lens configured to refract the light reflected from the skin; and

a first polarizing plate configured to polarize the light refracted by the optical lens in a first direction, and

wherein the camera is disposed on a center axis of the first polarizing plate and the optical lens.

3. The multispectral imaging device of claim 2 ,

wherein the detector further comprises:

a shield configured to internally receive the optical lens and the first polarizing plate, and

wherein the illuminator is disposed on an outer side of the shield.

4. The multispectral imaging device of claim 1 ,

wherein the plurality of LED light sources includes one ultraviolet (UV) LED, one near infrared (NIR) LED, and a plurality of white LEDs or a plurality of LEDs having different wavelengths corresponding to a center wavelength of the plurality of band-pass filters, and

wherein the plurality of band-pass filters is arranged to be in contact with the plurality of white LEDs or the plurality of LEDs.

5. The multispectral imaging device of claim 4 , wherein a number of the band-pass filters is less than a number of the white LEDs by one.

6. The multispectral imaging device of claim 1 , further comprising:

a cover configured to internally receive the illuminator and the detector, wherein the cover allows the illuminator and the detector to be disposed in a darkroom such that an external light influence corresponding to the light reflected from the skin or the LED light emitted from the illuminator is blocked.

7. The multispectral imaging device of claim 6 ,

wherein the cover comprises: a connecting member used for attachment to a mobile device, and

wherein the connecting member is adjustable in length.

8. A multispectral imaging device comprising:

an illuminator configured to emit light emitting diode (LED) light for skin illumination to a skin; and

a detector configured to allow light reflected from the skin to be incident on a camera,

wherein the illuminator is disposed on an outer side of the detector such that a path of the LED light emitted from the illuminator is formed externally to the detector and a path of the light reflected from the skin is formed internally to the detector,

wherein the illuminator comprises:

an LED substrate on which a plurality of LED light sources is mounted; and

a plurality of band-pass filters provided to be in contact with at least a portion of the plurality of LED light sources,

wherein the LED substrate is in a ring shape,

wherein the illuminator further comprises: a diffusion plate disposed to be in contact with the plurality of band-pass filters in a direction in which the LED light is promoted, to diffuse the LED light, and

wherein the diffusion plate includes a diffuser configured to diffuse light in a same shape as a shape that the plurality of LED light sources is mounted.

9. The multispectral imaging device of claim 8 , wherein the illuminator further comprises: a second polarizing plate disposed to be in contact with the diffusion plate in the direction in which the LED light is promoted, to polarize the LED light diffused by the diffusion plate in a second direction, and wherein the second polarizing plate includes a polarizer in a same shape as the diffuser.

10. A multispectral imaging device comprising:

an illuminator configured to emit light emitting diode (LED) light for skin illumination to a skin; and

a detector configured to allow light scattered on the skin to be incident on a camera,

wherein the illuminator and the detector are arranged on a same axis, a path of the LED light emitted from the illuminator is formed to be inclined toward the skin, and a path of the light scattered or reflected by the skin is formed on the same axis,

wherein the illuminator comprises:

an LED substrate on which a plurality of LED light sources is mounted; and

a plurality of band-pass filters provided to be in contact with at least a portion of the plurality of LED light sources,

wherein the LED substrate includes an inclined plane formed to be inclined toward the skin, and wherein the plurality of LED light sources is mounted on the inclined plane, and

wherein the plurality of LED light sources and the plurality of band-pass filters are selectively connected by controlling the plurality of LED light sources to be on or off, and the plurality of LED light sources is controlled to be on or off by an embedded system controlled by a mobile device.

11. The multispectral imaging device of claim 10 , wherein the illuminator further comprises:

a diffusion plate disposed to be in contact with the plurality of band-pass filters in a direction in which the LED light is promoted, to diffuse the LED light; and

a first polarizing plate disposed to be in contact with the diffusion plate in the direction in which the LED light is promoted, to polarize the LED light diffused by the diffusion plate in a first direction.

12. The multispectral imaging device of claim 11 , further comprising:

a shield provided in a cylindrical shape to internally receive the detector,

wherein the shield is configured to prevent the LED light diffused by the diffusion plate from being introduced to the path of the light scattered or reflected by the skin.

13. The multispectral imaging device of claim 11 ,

wherein the detector comprises: a second polarizing plane configured to polarize the light scattered or reflected by the skin in a second direction orthogonal to the first direction, and

wherein the second polarizing plate is configured to prevent light reflected from the skin from being incident on the camera.

14. The multispectral imaging device of claim 13 ,

wherein the detector further comprises: an optical lens configured to refract the light polarized by the second polarizing plate; and

wherein the skin, the second polarizing plate, the optical lens, and the camera are on a same line.

15. The multispectral imaging device of claim 10 , wherein the LED substrate is in a ring shape, the detector is disposed to penetrate the LED substrate, and the plurality of LED light sources is radially arranged on the LED substrate at intervals.

16. The multispectral imaging device of claim 10 , further comprising:

a cover configured to internally receive the illuminator and the detector,

wherein the detector is disposed on a center axis of the cover and the illuminator is spaced apart from the center axis in a radial direction.

17. The multispectral imaging device of claim 16 , wherein one end of the cover is disposed adjacent to the camera, the other end of the cover is disposed adjacent to the skin, and the cover has a cross-sectional area that decreases from one end toward the other end.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2018
From: HWANG, JAE YOUN; JANG, JAE EUN; KIM, MAN JAE
To: DAEGU GYEONGBUK INSTITUTE OF SCIENCE AND TECHNOLOGY
Reel/Frame 046806/0409 →
Priority Claims (1)
KR 10-2016-0027156 · Mar 7, 2016 · national
Continuity (1)
Related Publication 20190090751A1 · Mar 28, 2019
Cited By (2)
US 12,496,460 US 12,635,851