Abstract:
A non-therapeutic cosmetic process for treating human keratin materials (K), comprising the step consisting in exposing said materials (K) to a polarized cold atmospheric plasma and comprising also a topical application of a cosmetic composition before and/or during and/or after the exposure to the polarized cold atmospheric plasma.
Abstract:
Apparatus and a method are presented, including disinfecting a disinfection chamber (34) that is defined between (i) a prefilled therapeutic substance reservoir (32) and (ii) a sterile fluid path (22) disposed within a therapeutic substance delivery device (20). The sterile fluid path includes a needle (26) at an upstream end (24) of the sterile fluid path and an injection assembly (30) at a downstream end (28) of the sterile fluid path. Subsequently to disinfecting the disinfection chamber, the disinfection chamber and then the reservoir are penetrated with the needle. Other applications are also described.
Abstract:
Disclosed is a system for controlling growth of microorganisms, comprising a first light source (104, 204) for radiating a blue light at a first wavelength that ranges between 400 to 480 nanometres to control growth of microorganisms; a second light source (106, 206) for radiating an ultra-violet light at a second wavelength that ranges between 250 to 300 nanometres to kill microorganisms; a light sensor (110, 212) for detecting an intensity of a light; a motion sensor (112, 214, 306, 406) for detecting a moving object (408); and a microcontroller (108), communicatively connected to the first light source, the second light source, the light sensor and the motion sensor, configured to modify an intensity of the blue light based on the light sensor data; and control an intensity of the ultra-violet light based on detection of a moving object by the motion sensor.
Abstract:
The invention relates to a device for detecting and eliminating harmful elements comprising a support for connecting to a mobile element of a drone type or similar, an infrared scanning device for detecting the harmful elements, a plurality of UV radiation emitters to eliminate the harmful elements, and an external control, connected to the device wirelessly. The device incorporates a mobile telescopic arm that projects from the support, that can be actuated through the external control, which in turn comprises joints, movement elements with respect to the support, and a tray located on one free end of the arm to house at least the scanning device and the UV radiation emitters.
Abstract:
An apparatus for treating air includes a housing with an air inlet and an air outlet, the housing enclosing an air treatment zone and an ozone removal zone, wherein the ozone removal zone is positioned downstream of the air treatment zone with respect to a flow direction of the air being treated, an ozone generator in the air treatment zone configured to generate ozone from the air, wherein the ozone generated by the ozone generator treats the air in the air treatment zone, catalyst in the ozone removal zone that removes at least a portion of the ozone generated the ozone generator, a particle matter (PM) filter positioned between the air treatment zone and the ozone removal zone, wherein the ozone generated by the ozone generator treats the PM filter, and an air mover positioned near the air outlet configured to draw the air through the air inlet.
Abstract:
A device for producing ozonated water from a reservoir of water is provided, the apparatus comprising an electrochemical cell operable to electrolyse water to produce ozone and having a first electrode assembly and a second electrode assembly; an electrical supply for providing an electrical energy source to the electrochemical cell; a conductivity sensor for determining the conductivity of fluid in the region of the electrode assemblies of the cell; a processor for receiving an indication of fluid conductivity from the conductivity sensor and determining if the conductivity of the fluid in the region of the electrode assemblies is above a threshold value and, if the conductivity is above the threshold value, activating the electrochemical cell. A method for producing ozonated water from a reservoir of water comprises providing an electrochemical cell operable to electrolyse water to produce ozone having a first electrode assembly and a second electrode assembly; determining the conductivity of the fluid in the region of the electrode assemblies of the cell; comparing the conductivity of the fluid in the region of the electrode assemblies with a threshold value; and if the conductivity of the fluid in the region of the electrodes is above the threshold value, activating the electrochemical cell.
Abstract:
A system (100) for hydrogen peroxide treatment is provided. The system comprises a supply (110) of hydrogen peroxide, a supply (120) of water, and an intermediate storage (130) for hydrogen peroxide being in fluid communication with the supply (110) of hydrogen peroxide and the supply (120) of water, wherein the system (100) further comprises a control unit (140) being connected to said supply (110) of hydrogen peroxide and the supply (120) of water for controlling the concentration of hydrogen peroxide in the intermediate storage (130).
Abstract:
The present invention relates to a light control system. The light control system comprising: a plurality of light sources (104) each configured to emit light within a predetermined spectral range, each of the plurality of light sources (104) being configured to illuminate a corresponding sub-portion (108) of a space (100), a sensor (106) configured to within the space (100), detect a location (112) of a human (114) or an animal; and a control engine (107) configured to control the plurality of light sources (104) based on the detected location (112) of the human (114) or the animal such that a subportion (108a) of the space (100) in which the human (114) or the animal is not present is exposed (116) to the light (118) within the predetermined spectral range at a predetermined threshold intensity. A method for exposing a sub-portion of a space with light within a predetermined spectral range at a predetermined threshold intensity is also provided.
Abstract:
본 발명은 플라즈마 증강 부재, 그를 포함하는 플라즈마 공급 장치 및 의료 기기에 관한 것이다. 본 발명의 일 실시예에 따른 플라즈마 증강 부재는, 플라즈마를 생성하는 장치에 체결되는 체결부; 플라즈마의 작용을 증강시키는 증강 물질을 수용하는 증강 물질 수용부; 및 상기 증강 물질을 포함하는 플라즈마를 배출하는 배출부를 포함할 수 있다.
Abstract:
본 발명은 자외선 조사에 의해 의료용 센서를 소독 및 살균할 수 있는 장치에 관한 것으로, 내부에 공간부가 형성되고 일면에 개구부가 형성되는 함체 형태의 케이스와, 케이스의 일측에 힌지 결합되며 케이스의 개구부를 개폐하는 도어와, 케이스의 공간부에 설치되며 일측에 의료용 센서가 거치되는 거치부재와, 거치부재의 일측에 설치되는 자외선 살균기를 포함한다.