Abstract:
The present invention relates to a hanging device for a curtain hanger for supporting and installing a curtain drapery pin which is connected to an upper portion of a curtain. More specifically, a lateral hanger hole (21) and a front-back hanger hole (22) are formed into a cross shape through a lower ring (5) of a main body (10) of the hanging device such that the curtain drapery pin (5) to be connected to the upper portion of the curtain may be inserted in a left-right direction or in a front-back direction. A wavy curtain or a flat curtain may be selectively installed by inserting the curtain drapery pin (5) through the holes (21, 22). In particular, the flat curtain may be installed by inserting the curtain drapery pin (5) in the left-right direction, thereby modifying the curve of the curtain so that the curtain may easily have natural and uniform waves, thereby achieving superior aesthetics.
Abstract:
Provided is a high-efficiency optical in-vitro diagnostic apparatus, including: an image input unit inputting a color image of a target to be detected; an image controller forming the image at a density of a target to be detected by analyzing pixel intensity of an image input from the image input unit; and a display unit displaying result values of the transformed target density. The exemplary embodiment of the present invention can analyze the color images of the targets to be detected for each pixel and select and measure the color channel implementing the high-density pixel to obtain the image in the specific wavelength band capable of increasing the measured sensitivity using the color information of the color image, thereby increasing the measurement efficiency.
Abstract:
Provided is a detection system using a magnetic resistance sensor. The detection system includes a magnetic resistance sensor for detecting a magnetic element of a specimen containing a magnetic particle. An external magnetic-field application device applies external magnetic fields to the magnetic resistance sensor in first and second directions, and has a space for entrance or exit of a specimen holding unit. A horizontal drive module receives the specimen holding unit to horizontally move the specimen holding unit under the magnetic resistance sensor. A vertical drive module receives the magnetic resistance sensor to vertically move the magnetic resistance sensor to the specimen holding unit.
Abstract:
Provided is a magnetic nanopartilce tube available for a quality verification device of a medical instrument of a magnetic field measuring manner wherein the magnetic nanopartilce tube may include a capillary tube in which a tubular passage is formed and a magnetic curing filler containing magnetic nanopartilces to be filled into the capillary tube.
Abstract:
Provided is a detection system using a magnetic resistance sensor. The detection system includes a magnetic resistance sensor for detecting a magnetic element of a specimen containing a magnetic particle. An external magnetic-field application device applies external magnetic fields to the magnetic resistance sensor in first and second directions, and has a space for entrance or exit of a specimen holding unit. A horizontal drive module receives the specimen holding unit to horizontally move the specimen holding unit under the magnetic resistance sensor. A vertical drive module receives the magnetic resistance sensor to vertically move the magnetic resistance sensor to the specimen holding unit.
Abstract:
The present disclosure relates, in some embodiments, to compositions, organisms, systems, and methods for expressing a gene product in a plant using a expression control sequence (ECS) operable in monocots and/or dicots. For example, (i) an isolated nucleic acid may comprise an ECS (e.g., a sugarcane bacilli form virus promoter) and, optionally, an exogenous nucleic acid (ExNA) operably linked to the ECS; (ii) an expression vector may comprise an ECS; an ExNA; and, optionally, a 3' termination sequence, wherein the ECS has promoter activity sufficient to express the ExNA in at least one monocot and at least one dicot; (iii) a microorganism, plant cell, or plant may comprise an isolated nucleic acid; (iv) a method for constitutively expressing an ExNA in a plant (e.g., a monocot and/or a dicot) may comprise, contacting an expression vector with the cytosol of a cell of the plant, wherein the expression vector comprises the ExNA and an ECS operable to drive expression of the ExNA; and/or (v) a method of directing constitutive expression of a nucleic acid in a plant (e.g., a monocot and/or a dicot) may comprise transforming the plant with an expression nucleic acid comprising an ECS, an ExNA, and a 3' termination sequence.
Abstract:
This invention relates to a laryngoscope with a measurement system for measuring the size of a lesion. The laryngoscope comprises: a light source for lightening a lesion; a camera for photographing the lesion; a reflection plate including first and second slopes which are parallel to each other and having a refractive index higher than that in the air; and a laser diode which generates a laser beam. The laser beam generated from the laser diode is refracted to an inner side of the reflection plate as soon as the laser beam is reflected from the first slope. The refracted laser beam is then re-refracted from the first slope to the outside of the reflection plate after being reflected from the second slope. Therefore, two parallel laser beams are projected onto the lesion. A size calculator that calculates the size of the lesion, which is photographed by the camera, is prepared at an inner or outer portion of the laryngoscope, wherein the real size (x) of the lesion is calculated based on the formula, x = RS×d1/d2. RS is the length of the two parallel laser beams, d1 is the measured length of the lesion in the photographed image and d2 is the measured distance between the two parallel laser beams, in the photographed image, projected onto the lesion.