IP Library › Granted Patent US 10,864,287
Granted Patent B2
US 10,864,287 · App. 16/232,571 · Granted Dec 15, 2020

Microbe inactivation processing method and cell activation processing method

Inventor: Tatsushi Igarashi (Tokyo, JP)
Assignee: Ushio Denki Kabushiki Kaisha
A61L2/10G02B5/208A61L2202/14
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Quick Facts
Patent No.
US 10,864,287
App. No.
16/232,571
Granted
Dec 15, 2020
Kind
B2
Abstract

Disclosed are a microbe inactivation processing method that can perform inactivation processing of microbes, while damage to human body cells is prevented or inhibited, with an efficient use of light emitted from a light source and the obtainment of a large effective irradiation area. Also provided are a cell activation processing method that can reliably activate target cells with high efficiency. The microbe inactivation processing method includes: a step of applying light emitted from a light source through an optical filter, with the light source configured to emit light having a wavelength within a wavelength range of 190 nm to 237 nm, in order to perform inactivation processing of a target microbe. When the light emitted from the light source is incident at an incident angle of 0°, the optical filter transmits at least a part of ultraviolet light having a wavelength within a range of not lower than 190 nm and not more than 230 nm, and transmits at least apart of ultraviolet light having a wavelength within a range of more than 230 nm and not more than 237 nm, and the optical filter blocks transmission of ultraviolet light having a wavelength out of a wavelength range of not lower than 190 nm and not more than 237 nm.

Claims (10)

1. A microbe inactivation processing method comprising a step of applying light emitted from a light source through an optical filter onto a human body, with the light source configured to emit light having a wavelength within a wavelength range of 190 nm to 237 nm, in order to perform inactivation processing of a target microbe in the human body with an energy of 300 mJ/cm 2 to 1000 mJ/cm 2 , wherein

when the light emitted from the light source is incident on the optical filter at an incident angle of 0°, the optical filter transmits at least a part of ultraviolet light having a wavelength within a range of not lower than 190 nm and not more than 230 nm, and transmits at least a part of ultraviolet light having a wavelength within a range of more than 230 nm and not more than 237 nm, and the optical filter blocks transmission of ultraviolet light having a wavelength outside of a wavelength range of not lower than 190 nm and not more than 237 nm.

2. A microbe inactivation processing method comprising: a step of applying light emitted from a light source through an optical filter onto a human body, with the light source configured to emit the light having a wavelength within a wavelength range of 190 nm to 237 nm, in order to perform inactivation processing of a target microbe in the human body with an energy of 300 mJ/cm 2 to 1000 mJ/cm 2 , wherein

when the light emitted from the light source is incident on the optical filter at an incident angle of 0°, the optical filter transmits at least a part of ultraviolet light having a wavelength within a range of not lower than 190 nm and not more than 230 nm, and transmits at least a part of ultraviolet light having a wavelength within a range of more than 230 nm and not more than 237 nm, and the optical filter blocks transmission of ultraviolet light having a wavelength within wavelength ranges of UV-B and UV-C excluding a wavelength range of not lower than 190 nm and not more than 237 nm.

3. A cell activation processing method comprising: a step of applying light emitted from a first light source through an optical filter onto a surface of a human body or inside of a human body, and applying light emitted from a second light source onto the surface of the human body or inside of the human body, with the first light source configured to emit the light having a wavelength within a wavelength range of 190 nm to 237 nm inside of the human body with an energy of 300 mJ/cm 2 to 1000 mJ/cm 2 , and the second light source configured to emit the light having a wavelength in an infrared range, in order to perform activation processing of cells in a light irradiation area, wherein

when the light emitted from the first light source is incident on the optical filter at an incident angle of 0°, the optical filter transmits at least a part of ultraviolet light having a wavelength within a range of not lower than 190 nm and not more than 230 nm, and transmits at least a part of ultraviolet light having a wavelength within a range of more than 230 nm and not more than 237 nm, and the optical filter blocks transmission of ultraviolet light having a wavelength outside of a wavelength range of not lower than 190 nm and not more than 237 nm.

4. A cell activation processing method comprising: a step of applying light emitted from a first light source through an optical filter onto a surface of a human body or inside of a human body, and applying light emitted from a second light source onto the surface of the human body or inside of the human body, with the first light source configured to emit light having a wavelength within a wavelength range of 190 nm to 237 nm inside of the human body with an energy of 300 mJ/cm 2 to 1000 mJ/cm 2 , and the second light source configured to emit light having a wavelength in an infrared range, in order to perform activation processing of cells in a light irradiation area, wherein

when the light emitted from the first light source is incident on the optical filter at an incident angle of 0°, the optical filter transmits at least a part of ultraviolet light having a wavelength within a range of not lower than 190 nm and not more than 230 nm, and transmits at least a part of ultraviolet light having a wavelength within a range of more than 230 nm and not more than 237 nm, and the optical filter blocks transmission of ultraviolet light having a wavelength within wavelength ranges of UV-B and UV-C excluding a wavelength range of not lower than 190 nm and not more than 237 nm.

5. The cell activation processing method according to claim 3 , wherein

after a predetermined time has elapsed since the application of the light emitted from the first light source was started, the application of the light emitted from the second light source is started.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 26, 2018
From: IGARASHI, TATSUSHI
To: USHIO DENKI KABUSHIKI KAISHA
Reel/Frame 047853/0468 →
Priority Claims (1)
JP 2017-251511 · Dec 27, 2017 · national
Continuity (1)
Related Publication 20190192709A1 · Jun 27, 2019
Cited By (2)
US 12,329,872 US 12,453,791