Abstract:
Provided is a fluid analysis cartridge that performs a test on a fluid sample. The fluid analysis cartridge includes: a testing part configured to receive a fluid sample and configured to perform a test on the fluid sample; a housing including at least one supply hole configured to supply the fluid sample to the testing part; a filtering part that is disposed between the at least one supply hole and the testing part and is configured to filter a particular material included in the fluid sample; and at least one stepped part provided on a surface of the housing facing the filtering part and that forms a gap between the filtering part and the surface of the housing.
Abstract:
An electronic device is provided. The electronic device includes a processor and a memory, wherein the memory includes instructions that, when executed by the processor, cause the electronic device to perform obtaining an image for generating an edited video from a plurality of contents, generating matching information between the edited video and the plurality of contents, and generating the edited video based on the obtained image and the matching information. The matching information includes information of at least one of a source file, time, or location associated with the obtained image.
Abstract:
A fluid analysis cartridge and a method for manufacturing the same are provided. The fluid analysis cartridge includes an inspection unit configured to receive and inspect the fluid sample, a housing comprising at least one supply hole that is configured to supply the fluid sample to the inspection unit, and a filtering unit disposed between the supply hole of the housing and the inspection unit and configured to filter a specific substance present in the fluid sample.
Abstract:
Provided is a fluid analysis cartridge configured to analyze a fluid specimen, a fluid analysis sheet forming the same and a method of manufacturing the fluid analysis cartridge. The fluid analysis sheet includes at least one cut out part configured to form an intermediate layer of an inspection substrate, the cut out part including a flow passage structure including an inlet part in which a fluid is introduced and an inspection part in which the fluid is introduced to react with a reagent; and wherein the cut out part is further configured to include a first end adjacent to the inspection part and a second end adjacent to the inlet part, and wherein a minimum distance between the first end and the flow passage structure is at least 1 mm.
Abstract:
A microfluidic device includes a chamber configured to accommodate a sample and air, and a detection device provided with a light emitter configured to emit light towards the chamber on a light transmission path and a light receiver configured to receive the light, and further configured to measure an optical density of the chamber to determine whether the sample is accommodated in the chamber based on the received light. A boundary between the sample and the air accommodated in the chamber is provided on the light transmission path.
Abstract:
A microfluidic device and a method of producing the microfluidic device are provided. The microfluidic device includes an upper substrate and a lower substrate fixed to each other to form a microfluidic structure, and a hydrophobic porous layer disposed between the upper substrate and the lower substrate, and configured to fix the upper and lower substrates and absorb air within the microfluidic structure.
Abstract:
An image processing method and an electronic device supporting the same are disclosed. An electronic device is provided to collect a plurality of images. The electronic device may collect the images by taking pictures/videos with a camera or by receiving the images from an external device. The electronic device also includes a processor able to determine an activity type during at least a portion of time when the images were taken by the camera or an activity type of the device that originally generated the images received from the external device. The processor may be able to select at least some of the collected images based on the activity type to generate a highlight content.
Abstract:
Provided is a microfluidic device having a structure in which scattering of a sample can be prevented. The microfluidic device includes: a platform including: a sample injection hole, at least one chamber configured to accommodate a sample introduced through the sample injection hole, at least one channel connected to the at least one chamber; and a cover disposed over the sample injection hole, wherein a gap is disposed between the sample injection hole and the cover.
Abstract:
Disclosed herein is a microfluidic device, which includes a platform, at least one chamber provided in the platform to accommodate a sample, and at least one channel configured to couple the chambers to each other. The at least one chamber includes a detection chamber configured to detect the sample, and the microfluidic device further includes a light blocking portion configured to prevent external light from entering the detection chamber so as to prevent occurrence of errors in detection of the sample in the detection chamber. The microfluidic device can be useful for preventing the occurrence of detection errors which might otherwise be caused by interference of external light. The microfluidic device may also be useful for reducing an inspection time and for miniaturizing microfluidic devices. Further, the microfluidic device may be useful for preventing contaminants from entering the detection chamber.