Abstract:
The present invention provides biomarkers for detecting kidney disease, selected from the oligonucleotide sequence, complementary sequence or derivatives, amino acid sequence or derivatives, fragment, variants, antibody of annexin A2 or S100A6 or combinations thereof. Moreover, the present invention also provides an assay kit and a method for kidney disease detecting, practically for the kidney disease resulting from acute tubular necrosis.
Abstract:
An exemplary thermal protection system includes a body having a first surface, at least one stationary thermal member disposed at least partially proximate the first surface and at least one heat producing device. An aperture, defined by at least one exterior edge can penetrate both the body and the stationary thermal member. At least a portion of the heat producing device can be disposed proximate the aperture. A moveable thermal member translatable between a first position and a second position, can be disposed proximate the stationary thermal member, the aperture, and the heat producing device when in the first position. When in the first position, a first portion of the moveable thermal member can overlap at least a portion of the stationary thermal member. When in the second position, the moveable thermal member can be disposed distal to the aperture and the at least one heat producing device.
Abstract:
The present invention provides biomarkers for detecting kidney disease, selected from the oligonucleotide sequence, complementary sequence or derivatives, amino acid sequence or derivatives, fragment, variants, antibody of annexin A2 or S100A6 or combinations thereof. Moreover, the present invention also provides an assay kit and a method for kidney disease detecting, practically for the kidney disease resulting from acute tubular necrosis.
Abstract:
An enclosure is provided. A housing (120) can have one or more walls (130). At least one of the one or more walls (130) can include a thermally conductive, carbonaceous member (100). The thermally conductive, carbonaceous member (100) can be partially or completely encapsulated within one or more electrically non-conductive materials.
Abstract:
An enclosure is provided. A housing (120) can have one or more walls (130). At least one of the one or more walls (130) can include a thermally conductive, carbonaceous member (100). The thermally conductive, carbonaceous member (100) can be partially or completely encapsulated within one or more electrically non-conductive materials.
Abstract:
An exemplary thermal protection system includes a body having a first surface, at least one stationary thermal member disposed at least partially proximate the first surface and at least one heat producing device. An aperture, defined by at least one exterior edge can penetrate both the body and the stationary thermal member. At least a portion of the heat producing device can be disposed proximate the aperture. A moveable thermal member translatable between a first position and a second position, can be disposed proximate the stationary thermal member, the aperture, and the heat producing device when in the first position. When in the first position, a first portion of the moveable thermal member can overlap at least a portion of the stationary thermal member. When in the second position, the moveable thermal member can be disposed distal to the aperture and the at least one heat producing device.
Abstract:
An operation mode is determined based on user behavior data, an environmental data of the electronic device is determined and a system operating data of the electronic device is determined. A system control parameter can be adjusted based on the environmental data and the system operating data to regulate the heat generating element and/or the cooling element to achieve the operating mode.
Abstract:
An operation mode is determined based on user behavior data, an environmental data of the electronic device is determined and a system operating data of the electronic device is determined. A system control parameter can be adjusted based on the environmental data and the system operating data to regulate the heat generating element and/or the cooling element to achieve the operating mode.
Abstract:
The present invention provides biomarkers for detecting kidney disease, selected from the oligonucleotide sequence, complementary sequence or derivatives, amino acid sequence or derivatives, fragment, variants, antibody of annexin A2 or S100A6 or combinations thereof. Moreover, the present invention also provides an assay kit and a method for kidney disease detecting, practically for the kidney disease resulting from acute tubular necrosis.
Abstract:
The present invention provides biomarkers for detecting kidney disease, selected from the oligonucleotide sequence, complementary sequence or derivatives, amino acid sequence or derivatives, fragment, variants, antibody of annexin A2 or S100A6 or combinations thereof. Moreover, the present invention also provides an assay kit and a method for kidney disease detecting, practically for the kidney disease resulting from acute tubular necrosis.