Abstract:
The present invention relates to a system for treating a non-hypertrophic scar by using laser characterized by providing the peel laser and non-peel laser setting information suitable for treatment of a non-hypertrophic scar. The present invention relates to a system for treating scar and skin diseases by using laser characterized by providing the peel laser and non-peel laser setting information suitable for treatment of a non-hypertrophic scar, the dye laser setting information suitable for treatment of pigmentary diseases, the blood vessel laser setting information suitable for treatment of vascular diseases, and the laser setting information suitable for treatment of hypertrophic and keloid scars.
Abstract:
The microwave signal generator includesa magnetron generating microwave signal. A filter filters a signal that may be a signal of the intrinsic oscillation frequency band of the magnetron, whichis fed-back to the magnetron.
Abstract:
Provided is a micro bubble generating device. The present invention comprises: an outer casing having a sealed internal space of a predetermined size; an inner casing provided in the internal space of the outer casing such that an open upper end of the inner casing is spaced at a predetermined distance from the sealed ceiling surface of the outer casing and a lower end is spaced at a predetermined distance from the bottom surface of the outer casing; a supply pipe, of which an outlet end is provided to the inner casing by penetrating the outer casing, having at least one rotary blade that is provided lengthwise in the middle of a supply path which supplies air and water via a motor pump such that the rotary blade primarily generates micro bubbles by mixing the water and air while rotating in one direction using the flow of the water and air that are supplied to the internal space of the inner casing; and a discharge pipe, of which an inlet end is provided to the outer casing, having a valve type nozzle section that is provided lengthwise in the middle of a discharge path which discharges water and bubbles filled in the outer casing such that the valve type nozzle section generates micro bubbles when opened while controlling the opening and closing of the discharge path. Therefore, the primarily generated micro bubbles pass through the valve type nozzle section with the water using the internal pressure of the outer casing, which is higher than atmospheric pressure, such that micro bubbles are secondarily generated and discharged to the outside.
Abstract:
The present invention relates to a system for treating a non-hypertrophic scar by using laser characterized by providing the peel laser and non-peel laser setting information suitable for treatment of a non-hypertrophic scar. The present invention relates to a system for treating scar and skin diseases by using laser characterized by providing the peel laser and non-peel laser setting information suitable for treatment of a non-hypertrophic scar, the dye laser setting information suitable for treatment of pigmentary diseases, the blood vessel laser setting information suitable for treatment of vascular diseases, and the laser setting information suitable for treatment of hypertrophic and keloid scars.
Abstract:
Disclosed is an ink refill device. In the ink refill device, the main body is provided with a receiving space for receiving an ink cartridge therein, and first ink injecting part through which ink passes is provided on one outer side wall thereof. An ink injector is provided with second ink injecting part corresponding to the first ink injecting part so that ink is injected into the ink cartridge. Further, an ink absorber is provided in the main body neighboring the first ink injecting part to be closely contacted to an ink nozzle so that it absorbs ink being leaked from the ink nozzle. Whereby, a user, the surroundings or the ink cartridge can be prevented from being soiled.
Abstract:
The present invention discloses a method for refilling ink into an ink cartridge. The method for refilling ink into an ink cartridge according to a preferred embodiment of the present invention comprises the steps of: sealing an ink outlet of the ink cartridge with a cap of the ink outlet; making a through hole close to an ink injection hole by a perforating means like a drill, etc.; joining an ink injector to the through hole and injecting ink into the ink cartridge; separating the ink injector from the through hole and sealing the through hole with a through hole plug; and separating the cap of the ink outlet from the ink outlet. Therefore, the method for refilling ink is simple, so that it becomes easy to refill ink and the time required can be saved.
Abstract:
A preparation method for anti-glare glass comprises the following steps: forming a ceramic coating layer having a uniform thickness on a glass substrate; stripping the ceramic coating layer from the glass substrate with a first etching solution to form a first roughness on the surface of the glass substrate; and etching the surface of the glass substrate with a second etching solution to form a second roughness on the surface of the glass substrate.
Abstract:
A cooking appliance includes a heat source; an input unit configured to input a plurality of operational modes of the heat source for cleaning a cavity; and a control unit configured to operate the heat source in accordance with a mode input through the input unit, wherein the input unit comprises a selection unit configured to select a specific mode of the plurality of operational modes.
Abstract:
The present invention relates to a medicinal composition for preventing or treating pancreatic cancer, comprising 3-alkoxy-6-allylthiopyridazine or a pharmaceutically acceptable salt thereof as an effective ingredient. An MTT assay, to assess the viability of cells, and flow cytometric analysis, to measure apoptotic cell death, were performed, and the results, which revealed that the compound and pharmaceutically acceptable salts thereof have preventive and therapeutic activity against pancreatic cancer, are presented herein.
Abstract:
A cooking appliance includes a heat source; an input unit configured to input a plurality of operational modes of the heat source for cleaning a cavity; and a control unit configured to operate the heat source in accordance with a mode input through the input unit, wherein the input unit comprises a selection unit configured to select a specific mode of the plurality of operational modes.