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133results about How to "Risk of damage" patented technology

Method of conducting a needle biopsy procedure

A vibration assisted needle device is disclosed for use in medical procedures such as needle aspiration biopsies. Reciprocation of the needle, such as a biopsy needle, eases the advance of the needle through tissue, penetration of the site of interest and the collection of sample at a site of interest. The device comprises a housing defining a chamber, a needle support external to the chamber for supporting a needle and a mechanism in the chamber for causing reciprocatory motion of the needle support. The needle support is preferably external to the housing. A syringe support may be connected to the housing for supporting a syringe. The reciprocatory mechanism may comprise means for converting rotational motion into reciprocating motion, such as a bearing or a rotor with a circumferential, angled groove on its surface, coupled to the needle support. The bearing or the rotor may be driven by a rotational motor, preferably located outside of the housing, or by a hydraulically driven turbine within the housing. Alternatively, the reciprocatory mechanism means may comprise a stationary solenoid and a movable solenoid for being coupled to the needle. Preferably, a second stationary solenoid is provided and the moving solenoid is between the two stationary solenoids. Energization of the stationary solenoid or solenoids by an alternating current for example, and energization of the movable solenoid by a direct current, or vice versa, attracts and repulses the movable solenoid, causing reciprocation of the needle. Methods and systems using the vibration assisted needle device are also disclosed.
Owner:FONAR

Transcatheter heart valve with micro-anchors

ActiveUS20130268066A1Risk of damageOption very attractiveStentsBalloon catheterHeart valveNative tissue
Methods and devices for treating defective heart valves are disclosed herein. In one exemplary embodiment, a transcatheter heart valve includes an expandable shape memory stent and a valve member supported by the stent. A plurality of micro-anchors can be disposed along an outer surface of the stent for engaging native tissue. The transcatheter heart valve can be configured to be advanced into a dilated valve annulus via a balloon catheter. The balloon can be inflated to expand the transcatheter heart valve from a collapsed diameter to an over-expanded diameter such that the micro-anchors engage tissue along the surrounding valve annulus. After engaging the tissue, the balloon can be deflated and the shape memory stent can retract or recoil toward its predetermined recoil diameter. As the stent recoils, the surrounding tissue is pulled inward by the stent such that the diameter of the valve annulus is reduced.
Owner:EDWARDS LIFESCIENCES CORP

Electrolyte pattern and method for manufacturing an electrolyte pattern

A method for manufacturing a gel electrolyte pattern is disclosed, the method comprising depositing an electrolyte precursor by inkjet printing onto a gelling agent layer. A gel electrolyte pattern is also disclosed, the gel electrolyte pattern comprising either a mixture of a gelling agent and an electrolyte precursor or the products of a chemical reaction between a gelling agent and an electrolyte precursor.
Owner:SEIKO EPSON CORP

Pre-patterned substrate for organic thin film transistor structures and circuits and related method for making same

Grooves in a desired circuit configuration are formed in the surface of a substrate to pre-pattern the area to receive material forming an organic thin film transistor (OTFT) structure and interconnecting conductive paths. The OTFT material is deposited in the pre-patterned area using printing techniques such as ink jet printing. In one embodiment, the grooves are formed in the surface substrate during the injection molding process of the substrate. Inter-exchangeable device covers carry different substrates to provide different functionalities of an electronic device with which the covers are used.
Owner:RPX CORP

MEMS pressure sensor oil-filled core body and packaging method thereof

The invention relates to the technical field of pressure sensors, and discloses an MEMS pressure sensor oil filling core which comprises an upper cover, a base and a sensitive assembly. A lower end ofthe upper cover is in sealed connection with the base, the base and the upper cover form a sealed cavity, and the sealed cavity is filled with a detection medium; a sensitive assembly is arranged onthe base and located in the sealed cavity. According to the MEMS pressure sensor oil-filled core and the packaging method thereof, a chip composed of a silicon elastic diaphragm, a semiconductor resistor and signal calibration modules is adopted; a signal processing circuit does not need to be arranged outside, and lead wire interconnection is reduced; the structure is simple, the cost is low, theproduct reliability is high, and convenience of production is achieved; the semiconductor resistor and the signal calibration module are located on different planes, the signal calibration modules are located on the periphery of the silicon elastic diaphragm, the risk that lines in the signal calibration module are damaged due to the fact that stress changes of the silicon elastic diaphragm influence the signal calibration module is prevented, and precision can be guaranteed.
Owner:WUHAN FINEMEMS
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