Abstract:
The present invention relates to an apparatus for monitoring vectors of livestock diseases, a system having the same, and a method of monitoring vectors of livestock diseases, and the apparatus for monitoring vectors of livestock diseases includes a communication module, at least one sensor module, and a processor configured to recognize at least one of information on a vehicle entering or exiting a corresponding region, information on a person exiting a vehicle, and information on a wild animal on the basis of sensing data collected through the at least one sensor module and transmit the recognized information and device status information to an external device through the communication module.
Abstract:
The present invention relates to a biosensor technique in which multiple types of target substances (biomarkers) contained in saliva or the like are allowed to be simultaneously measured or N samples for one target substance (biomarker) are allowed to be simultaneously measured and reliability of sensed results and high sensitivity are secured. A fluidic channel-based planar biosensor chip, in which a plurality of fluidic channels capable of measuring target substances (biomarkers) are embedded in one flat plate sensor chip and the flat plate sensor chip is measured by a light-emitting element (optical source) and a light-receiving element, and a biomarker measuring apparatus using the same are provided.
Abstract:
A plasma generating apparatus according to embodiments of the inventive concept, which provides plasma to a biological material, includes a housing configured to provide an inner space in which plasma is generated, a ground electrode coupled to one side of the housing, a power electrode coupled to the other side of the housing, and a controller configured to control a generation mode of the plasma. The generation mode includes a first mode in which the plasma is provided to the biological material while generating the plasma and a second mode in which the plasma is generated in the housing, and then the generated plasma is provided to the biological material.
Abstract:
Provided herein is a vibrator that includes a mesh structure and sprays a liquid material through the mesh structure and a manufacturing method thereof, the vibrator including the mesh structure including a vibrator structure including a hollow configured to introduce fluid from outside; a mesh structure configured to touch the hollow and include a porous mesh including a plurality of holes; and an electrode unit configured to apply a voltage for causing vibration of the vibrator structure to the vibrator, wherein the vibrator structure and mesh structure are configured as one integrated object, and the voltage is a direct voltage or alternating voltage.
Abstract:
The present invention relates to a photocurable polyethylene glycol silsesquioxane, a polyethylene glycol silsesquioxane network prepared therefrom, an anti-biofouling device including the polyethylene glycol silsesquioxane network, and a method of preparing a nanopattern. The polyethylene glycol silsesquioxane network has a high anti-biofouling property, low viscosity, high optical transparency, good hydrophilicity, high resistance to swelling in organic solvents/aqueous solutions, high stability under biological, chemical, and thermal stress, and high mechanical strength, and can be useful in a wide range of biomedical devices because it enables the manufacture of micro-nanopatterns.
Abstract:
Provided herein is a plasma system including a nozzle including an outer circumference exposed towards outside, an inner circumference facing the outer circumference and touching gas, and an exit from which the gas is sprayed; a first electrode formed on a portion of the outer circumference or inner circumference; and a second electrode formed on a portion of the outer circumference and distanced from the first electrode; wherein the first electrode is electrically connected to a first power having a first voltage, and the second electrode is electrically connected to a second power having a second voltage that is different from the first voltage, and the second electrode is formed closer to the exit than the first electrode.
Abstract:
Provided herein an apparatus for generating plasma, the apparatus including a nozzle array, first electrode, and housing. The nozzle discharges plasma. The first electrode is disposed to surround the nozzle array. The housing is disposed to surround the nozzle array and first electrode. The nozzle includes a plurality of nozzles disposed adjacent to one another and in the form of an array, each nozzle configured to discharge plasma. Therefore, it is possible to generate a large size plasma evenly and stably.
Abstract:
A vibration device including a supporting portion formed to cover both ends of a vibration region, and a method of manufacturing the vibration device are provided. The vibration device may include a lower substrate on which an insulating layer is formed, an upper substrate connected onto the insulating layer, and including a vibration region that vibrates and that is separated from the lower substrate by at least a predetermined distance, and a supporting portion formed to cover both ends of the vibration region, to support the vibration region.