Abstract:
An electronic device including a first body, a second body, and a first rotational structure is provided. The first body includes a first inclined surface, and the second body includes a second inclined surface. The first rotational structure is connected to the first body and the second body. When the first inclined surface is rotated relative to the second inclined surface through the first rotational structure, a first angle is formed between the first body and the second body, and the first inclined surface is completely corresponding to the second inclined surface. Thereby, a high expandability and plentiful variations in the appearance of the electronic device can be achieved.
Abstract:
Use of urine biomarkers for diagnosing nephropathy, monitoring nephropathy progress, and assessing efficacy of a nephropathy treatment. These urine biomarkers include leukocyte-associated Ig-like receptor-2, alpha-1 acid glycoprotein, their fragments, and combinations thereof.
Abstract:
A backlight module includes a light guide plate and a flexible illuminating bar. The light guide plate has a light emitting top surface and a plurality of light incident side surfaces. Each of the light incident side surfaces is connected to the light emitting top surface. The flexible illuminating bar includes a circuit board module and a plurality of point light sources. The circuit board module includes a plurality of circuit boards and at least one flexible electrical connection member. The circuit boards are disposed at the light incident side surfaces, respectively. The flexible electrical connection member electrically connects two of the circuit boards and is bendingly disposed between corresponding two of the circuit boards. The point light sources are electrically disposed on the circuit boards and suitable for emitting light towards the light incident side surfaces. In addition, another backlight module is also provided.
Abstract:
The present invention discloses a bladder cancer biomarker and a test method using the same. The biomarker contains at least one of the mentioned 69 compounds, such as apolipoprotein A1 (APOA1), apolipoprotein A2 (APOA2), peroxiredoxin 2 (PRDX2), heparin cofactor 2 precursor (HCII), and serum amyloid A-4 protein (SAA4), which exist in the urine specimen of a testee. The expression intensity of the biomarker can facilitate diagnosis of bladder cancer and evaluation of aggressiveness and malignancy of bladder cancer. Thereby, the physician can arrange an optimized treatment to achieve the best therapeutic effect.
Abstract:
An electronic device includes a body and a stand. The body has a fastening structure. The stand is used to support the body and dispose the body at a plane. The stand has a curved surface, and a locating portion is disposed at the curved surface. The body and the plane are contacted with the curved surface at the same time. The body is located at a first position of the locating portion by the fastening structure. When a force is applied to the body, the locating portion is rotated to drive the stand to rotate. Thus, the fastening structure is located at a second position of the locating portion, and an angle between the body and the plane is adjusted.
Abstract:
An electronic device with a hidden I/O interface module is disclosed. The electronic device includes a container and a surface with an opening, container and the opening communicate with each other. The container includes a first position and a second position. The electronic device also includes an I/O connection unit, a pivot module and a cover. The I/O connection unit is disposed at the container, electrically connected to the electronic device and includes a connecting surface. The pivot module is connected to the I/O connection unit. The cover is connected to the pivot module. When the cover is shut, it covers the container and makes the I/O connection unit located at the first position. When the cover is open, it drives the pivot module to drive the I/O connection unit to move to the second position to make the connecting surface of the I/O connection unit aligned with the surface.
Abstract:
An antenna assembly is used in a wireless communication device, the wireless communication device includes a main body and a circuit board received within the main body. The antenna assembly includes a first antenna unit located in the main body, a feed point and a second antenna unit. The feed point is electrically connected to the circuit board and the first antenna unit. One part of the second antenna unit is exposed from the main body, the other part of the second antenna unit is located within the main body and produces resonance with the first antenna unit to receive and transmit radio signals. The antenna assembly can occupy small space in the wireless communication device and reduce coupled interference of other electronic components on the antenna assembly.
Abstract:
An overlay mark is described, including N (N≧2) groups of first x-directional linear patterns each defined from a different one of N pre-layers, N groups of second x-directional linear patterns of a current layer, N groups of first y-directional linear patterns each defined from a different one of the N pre-layers, and N groups of second y-directional linear patterns of the current layer. Each group of second x-directional linear patterns is disposed together with one group of first x-directional linear patterns, wherein the second linear patterns and the x-directional linear patterns are arranged alternately. Each group of second y-directional linear patterns is disposed together with one group of first y-directional linear patterns, wherein the second linear patterns and the first linear patterns are arranged alternately.
Abstract:
An overlay mark is described, including N (N≧2) groups of first x-directional linear patterns each defined from a different one of N pre-layers, N groups of second x-directional linear patterns of a current layer, N groups of first y-directional linear patterns each defined from a different one of the N pre-layers, and N groups of second y-directional linear patterns of the current layer. Each group of second x-directional linear patterns is disposed together with one group of first x-directional linear patterns, wherein the second linear patterns and the x-directional linear patterns are arranged alternately. Each group of second y-directional linear patterns is disposed together with one group of first y-directional linear patterns, wherein the second linear patterns and the first linear patterns are arranged alternately.