Abstract:
An image-recognition assisting method includes the steps of using an examination instrument to generate an image having a split-image area formed thereon; setting a region-of-interest (ROI) around the split-image area of the generated image; performing a pixel luminance addition processing on the ROI, so that all pixels in the ROI have increased luminance contrast; and performing a contrast correction on the ROI having increased luminance contrast, so that the luminance contrast between the split-image area and the area surrounding the split-image area in the ROI is further increased. The image-recognition assisting method optimizes the image generated by the conventional ophthalmic examination instrument, such as a fundus camera, to increase the sharpness and the luminance contrast of the image output by the fundus camera, so that an examiner can easily recognize two offset rectangular image parts in the split-image area and align them with each other to focus the examination instrument.
Abstract:
An oral optical diagnosing apparatus and operating method are disclosed. The oral optical diagnosing apparatus includes a positioning module, an optical sensing module, a processing module, and a display module. After the positioning module selects a region to be diagnosed in a mouth, the optical sensing module will perform optical sensing on the region to be diagnosed to obtain optical information related to the region to be diagnosed. The processing module is used to analyze the optical information to generate an optical diagnosed result. The display module is used to display the optical diagnosed result.
Abstract:
An optical blood glucose detecting apparatus and an operating method thereof are disclosed. The optical blood glucose detecting apparatus includes a detecting module, an assisting and strengthening module, and a data processing module. The detecting module provides an incident optical signal passing through a detected portion of skin surface into a skin interstitial fluid, captures a blood glucose optical reflection message of the skin interstitial fluid, and it interferes the blood glucose optical reflection message and the incident optical signal to generate a detected data. The assisting and strengthening module provides a physical or chemical effect on a tissue region under the detected portion to strengthen the blood glucose optical reflection message. The data processing module processes the detected data to determine a blood glucose concentration.
Abstract:
A disc drive includes a housing, a workbench, and a panel. The housing includes an opening, a protection plane, a baffler plane formed on a side of disc ejection and extended from one edge of the protection plane, a support plane extended from the baffler plane, and a flange extended from the support plane. The workbench is installed inside the housing for performing corresponding functions. The panel includes a first fillister corresponding to the support plane and a second fillister corresponding to the flange on the side of disc ejection for covering the opening of the housing. A length of the support plane is approximately equal to a width of the protection plane, and neither the baffler plane nor the support plane include a hole
Abstract:
A non-invasive detecting apparatus and an operating method thereof are disclosed. The non-invasive detecting apparatus includes an elastic base, a detecting module, and a data processing module. The detecting module is disposed on the elastic base. The detecting module includes at least one detecting unit used to detect a tissue under a detected region of a detected object to obtain a detection information. The data processing module analyzes and processes the detection information to generate a detection result.
Abstract:
A skin optical diagnosing apparatus and operating method thereof are disclosed. The skin optical diagnosing apparatus includes a positioning module, an optical sensing module, a processing module, and a display module. The skin optical diagnosing apparatus uses the positioning module to select a target region on a sample, and then the optical sensing module performs an optical sensing on the target region to obtain an optical information data related to the target region. The processing module is used for processing the optical information data to generate an optical diagnosed result. The display module is used for displaying the optical diagnosed result.
Abstract:
An electric device includes a housing having an opening, a printed circuit board installed in the housing, a switch formed on the printed circuit board for enabling functions of the electric device, a faceplate for coving the opening of the housing, a keypad formed on a position of the faceplate corresponding to the switch for triggering the switch, and a fixing mechanism comprising a first fixing element extending from a side of the faceplate facing the printed circuit board, and a second fixing element extending from the printed circuit board for being combined with the first fixing element.
Abstract:
An optical disk device. The optical disk device comprises a housing, a tray, and a cover. The housing comprises an opening and a first side. The tray is movably disposed in the housing, parallel to the first side and ejectable from the opening. The cover comprises an upper surface. When the tray is closed, the cover blocks the opening and the upper surface of the cover is substantially as high as the first side of the housing.
Abstract:
An image-recognition assisting method includes the steps of using an examination instrument to generate an image having a split-image area formed thereon; setting a region-of-interest (ROI) around the split-image area of the generated image; performing a pixel luminance addition processing on the ROI, so that all pixels in the ROI have increased luminance contrast; and performing a contrast correction on the ROI having increased luminance contrast, so that the luminance contrast between the split-image area and the area surrounding the split-image area in the ROI is further increased. The image-recognition assisting method optimizes the image generated by the conventional ophthalmic examination instrument, such as a fundus camera, to increase the sharpness and the luminance contrast of the image output by the fundus camera, so that an examiner can easily recognize two offset rectangular image parts in the split-image area and align them with each other to focus the examination instrument.
Abstract:
A portable fundus observation apparatus includes a body, at least one optical detecting module, and a data processing unit. The body includes a fixing part for fixing the body onto the ocular region of a subject. The optical detecting module includes a light source, an optical lens module, and an image capturing unit. The optical detecting module is separably fixed onto the body. The data processing unit electrically couples with the optical detecting module and processes the fundus image captured by the image capturing unit.