Abstract:
The present invention provides a surgical implant material for assisted repair of muscle mechanics and a method of preparing the same. The surgical implant material for assisted repair of muscle mechanics comprises a collagen compound within a net-like bacterial cellulose base material. A bacterial cellulose base material is placed into solution of collagen, treated via vortex shaking, dried at room temperature; and then immersed in an aqueous solution of an aldehyde compound under vacuum to react for 10 to 30 minutes, thereby producing the surgical implant material for assisted repair of muscle mechanics. The surgical implant material of the present invention can effectively improve the biocompability, and maintain the flexibility, smoothness and fitness of the base material to reduce the damage to surrounding tissues, thereby reducing the bleeding and inflammatory response. Meanwhile, the processing conditions of the preparation method is more reasonable and convenient to control, and more suitable for industrial scale-up.
Abstract:
A material guiding device is provided, including: a main body, including a first portion and a second portion which are coupled with each other, the first portion and the second portion defining a channel, the channel including an inlet portion and an outlet portion which commuted are with each other and a concave portion which is commuted between the inlet portion and the outlet portion, the inlet portion and the outlet portion extending respectively in a first extending direction and a second extending direction; in the first extending direction the concave portion being outwardly protrusive beyond the outlet portion, the concave portion being connected with the outlet portion and including a projection extending toward the first extending direction.
Abstract:
A method for controlling a gesture-based remote control system (100) is provided to control a controlled electronic appliance by detecting an image of a user's gesture. A movement area in the image of the user's gesture detected. The user's gesture is judged as an adjusted gesture when the movement of the motion region is continual. The controlled electronic appliance is controlled by a key controlling command based on the adjusted gesture and sent by a wireless transmitter.
Abstract:
A drawer interlocking mechanism apparatus is applied where a drawer is installed inside an article. A secured plate of the present apparatus is secured at the lateral portion of the article and a sliding plate is connected the present apparatus at the lateral side of the drawer correspondingly to have the sliding plate move on the secured plate indirectly to produce the opening or closing function of the drawer. The sliding plate of the interlocking structure is installed on a single side or both sides of the drawer and also installed at a plurality of drawers in the same way. By means of a preset pull cord of the interlocking structure, a plurality of drawers are connected in series to lock the other drawers synchronously when one of drawers is opened.
Abstract:
An intelligent surveillance system and method for the same uses an image sensor (10) to fetch an original image and adjust the original image to obtain an adjusted image. An adjusted motion image is detected in the adjusted image. According to the location information of the adjusted motion image, an original motion image portion is fetched in the original image. Finally the original motion image portion is displayed or stored. The present invention uses a single image sensor to fetch and preserve a high-resolution panorama image. A low-resolution panorama image is obtained from the high-resolution panorama image to detect and locate moving objects. Location areas of the moving objects in the high-resolution panorama image are re-located. High-resolution images of the moving objects are obtained without digital magnifying.
Abstract:
A gesture-based remote control system includes a camera module (300), an image recognition module (100), a wireless transmitter (400), and a main-controlling electronic appliance (200). The image recognition module (100) is electrically connected to the camera module (300). The wireless transmitter (400) is electrically connected to the image recognition module (100). The main-controlling electronic appliance (200) is detachably connected to the image recognition module (100). The main-controlling electronic appliance (200) includes a monitor (202). A motion controlling command is obtained by recognizing an image of a user in the camera module (300) with the image recognition module (100). A key controlling command is obtained from the motion controlling command and a key code information by the image recognition module (100). The key controlling command is sent by the image recognition module (100) to the wireless transmitter (400). The key controlling command is sent to a controlled electronic application by the wireless transmitter to control the controlled electronic application.
Abstract:
A non-contact mouse method uses an image sensor (10) to fetch an original image and adjust the original image to obtain an adjusted image. A motion image is detected in the adjusted image. A mouse block (56) is defined in the motion image. At least one moving-speed block in the mouse block is defined. A peak position of the motion image is detected. Finally, an operation associated with the moving-speed block pointed by the peak position is executed.
Abstract:
A non-contact touchpad method uses an image sensor (10) to fetch an original image and adjust the original image to obtain an adjusted image. A motion image is detected in the adjusted image. The motion image is corresponded to a database (36) and divided into a plurality of division sections. At least one function block is defined in the database (36) and including at least one of the division sections. The database (36) defines the corresponding computer input action for the function blocks. The division section is determined to be a motion section or not according to a movement threshold. Finally, the computer input action is executed with reference to input functions associated with the motion section and defined in the database (36).
Abstract:
An intake regulating system of an engine equips with an intake regulating-device connected with a breather hose for drawing the oil vapor and the leaked gases from the crankcase of the engine, thereby to mix with outside air to feed into the engine for re-combustion. The intake regulating-device comprises a housing and a pressure-sensing valve. The housing has an air inlet hole, an air outlet hole, and a slender hole. The air outlet hole and the slender hole both are in communication with the air inlet of engine via an intake manifold for generating a pressure difference thereby to drive the pressure-sensing valve. Preferably, the intake regulating-device provides a pair of regulating knobs for adapting the pressure-sensing valve with various intake volumes of an engine.
Abstract:
A method of operating a touch control electronic device includes the steps of: (a) activating a program; (b) detecting a touch signal forming a curve, which includes a first sensing point and a second sensing point; and (c) calculating a distance variation between the first sensing point and the second sensing point with a reference point so as to change an attribute value of the program, wherein the reference point is set according to the curve.