Abstract:
The present invention relates to a marker which can be used to diagnose a diabetic retinopathy patient and determine the progression of diabetic retinopathy, a composition for diagnosing diabetic retinopathy, which comprises an agent for measuring the level of a gene or protein associated with the marker, and the use thereof.
Abstract:
The present invention relates to a marker which can be used to diagnose a diabetic retinopathy patient and determine the progression of diabetic retinopathy, a composition for diagnosing diabetic retinopathy, which comprises an agent for measuring the level of a gene or protein associated with the marker, and the use thereof.
Abstract:
The present invention relates to a marker which can be used to diagnose a diabetic retinopathy patient and determine the progression of diabetic retinopathy, a composition for diagnosing diabetic retinopathy, which comprises an agent for measuring the level of a gene or protein associated with the marker, and the use thereof.
Abstract:
The present disclosure relates to a gas sensor that minimizes the effects of humidity. The present disclosure relates to a gas sensor that minimizes the effects of humidity. Provided, in the present disclosure, is a gas sensor comprising: a substrate; a unit sensing unit disposed on the substrate and including a wiring electrode, a heater electrode, and a gas sensing material; a protective cap having a side wall part formed on the substrate and surrounding the unit sensing unit and a cover part disposed above the unit sensing unit and including at least one hole; and a heater unit disposed between the unit sensing unit and the cover unit, wherein the heater unit generates heat together with the heater electrode so as to lower humidity around the unit sensing unit.
Abstract:
A dual heater gas sensor module according to an embodiment of the present invention comprises: a housing having a front side and a back side which are partially open and forming the exterior of the dual heater gas sensor module; a first gas sensor for heating the air flowing in through the front side of the housing; and a second gas sensor for measuring a specific gas contained in the air discharging through the backside of the housing, wherein the first gas sensor is located in a first region, the second gas sensor is located in a second region that is higher than the first region, and the first region and the second region may be connected by an inclined plane.
Abstract:
A sensor is disclosed. The sensor comprises a first substrate; a second substrate positioned relative to the first substrate; a first electrode located between the first substrate and the second substrate, the first electrode formed on the second substrate; a sensing portion covering at least a part of the first electrode and further covering at least a portion of the second substrate; a pad electrode located between the first substrate and the second substrate, wherein the pad electrode is formed on the second substrate and is electrically coupled to the first electrode; and a bonding pad located between the first substrate and the second substrate, wherein the bonding pad is formed on the first substrate and is electrically coupled to the pad electrode.
Abstract:
The present disclosure relates to a sensor for detecting saccharide and manufacturing method thereof and detection method of glycated hemoglobin using the same wherein the sensor for detecting saccharide includes a reactive layer synthesized with hydrogel having a boronic acid-modified 3D mesh structure. A selective and sensitive detection of the glycated protein including glucose or glycated hemoglobin (HbA1c) in blood through high level of signal may be enabled, and the durability of the sensor for detecting saccharide may be enhanced.