序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
61 EMBOLIC FRAMING MICROCOILS EP15710996.8 2015-02-27 EP3110343B1 2018-10-31 LE, Be, Thi; GARZA, Armando; VELASCO, Regina, Coeli; AGUILAR, Amiel, Richard; YEE, Berchell, John; MIRIGIAN, Gregory, Edwin
An embolic microcoil can be formed into a complex shape for use in treating aneurysms and other vascular disorders. The microcoil features a distal portion including several loops that together comprise a substantially spherical shape, and an elongated proximal portion that is deployable within the distal portion. The distal portion can create a stable frame with adequate loop coverage across a neck of the aneurysm. The proximal portion can include a series of substantially omega-shaped loops, which can apply a force against the interior of the substantially spherical shaped distal portion, expanding it into apposition with additional portions of the aneurysm wall. Methods of treating vascular disorders and methods of manufacturing certain microcoils are also disclosed.
62 METHOD AND ARTICLES FOR ATTACHING UPHOLSTERY COVERS AND OTHER FLEXIBLE MATERIAL EP15772192 2015-05-26 EP3160302A4 2018-04-18 VELASCO HOWARD
An article of upholstery covering is attached to an article of furniture, by steps that include inserting, into a channel around a frame of the article of furniture, an edge attachment article that is attached by an securement portion thereof along a periphery of the article of upholstery covering; and tensioning the article of upholstery covering to engage a catch portion of the edge attachment article under a lip of the channel.
63 VERFAHREN ZUR HERSTELLUNG VON BÜRSTENDICHTUNGEN MIT SCHRÄGGESTELLTEN BORSTEN UND EINE ENTSPRECHENDE VORRICHTUNG EP16159327.2 2016-03-09 EP3090651A1 2016-11-09 Gindorf, Alexander; Huttner, Roland; Fessler-Knobel, Martin; Weber, Julian; Cernay, Christoph

Die Erfindung betrifft eine Vorrichtung und ein entsprechendes Verfahren zur Herstellung von Bürstendichtungen mit schräggestellten Borsten. Das Verfahren umfasst folgende Schritte: Als Erstes wird ein aus einem Borstenmaterial bestehender Metallischer Faden oder Draht (50) über zwei parallel zueinander verlaufende und beabstandete Drahtkerne (42, 46) zu einer dichten Metallischer Faden oder Drahtpackung (48) gewickelt. Als Nächstes wird die Metallischer Faden oder Drahtpackung (48) an mindestens einen Drahtkern (42, 46) befestigt. Dann wird der Bereich um mindestens einem der beiden Drahtkerne (42, 46) lokal aufgewärmt. Anschließend wird mindestens einer der beiden Drahtkerne (42, 46) verschoben.

64 GEOMETRIC COIL EP13830455 2013-08-19 EP2884945A4 2016-06-15 KEN CHRISTOPHER G M
65 RECTANGULAR WIRE COILING MACHINE EP06721698 2006-03-21 EP1866109A4 2014-07-02 BIBEAU LOUIS-PHILIPPE; CAYA YVES; CAYA ARMAND; LAMPRON SYLVAIN; BRABANT DAVID
66 RECTANGULAR WIRE COIL HEAD SHAPING MACHINE AND METHOD THEREFOR EP06741421 2006-04-21 EP1875587A4 2011-01-05 CAYA YVES; CAYA ARMAND; LAMPRON SYLVAIN; BRABANT DAVID
67 RECTANGULAR WIRE COIL HEAD SHAPING MACHINE AND METHOD THEREFOR EP06741421.9 2006-04-21 EP1875587A1 2008-01-09 CAYA, Yves; CAYA, Armand; LAMPRON, Sylvain; BRABANT, David
A machine to form the heads of coils made of relatively large rectangular wire so that it fits within the slots of the stator of an electric machine is described herein. The machine receives a coil having unformed first and second heads separated by first and second legs and apply controlled deformation thereto to yield properly shaped heads. The machine comprises first and second leg support mechanisms for gripping the first and second legs and four head forming elements for contacting portions of the heads of the wire coil while the first and second legs are gripped by the leg support. The head forming elements are mounted to the first and second leg support mechanisms for relative movement therebetween. Actuators, coupled to a controller so as to be controlled therefrom are provided for moving the head forming elements and the first and second heads between spaced apart relationships and forming relationships.
68 Stent EP03018228.1 1994-03-11 EP1378210B1 2006-11-22 Pinchasik, Gregory
69 Method and system for obtaining a bundle of wires containing a given number of wires and, more particularly, a bundle of crimped wires EP05102781.1 2005-04-08 EP1588787A1 2005-10-26 Romagnoli, Marino; Nadalini, Raffaele

-A method for obtaining a bundle of wires containing a desired number of wires comprises: a)-winding the wire (F) in a configuration having the form of a first spiral (E1); b)-winding the wire (F) in a configuration having the form of an additional spiral (E2) arranged alongside the preceding spiral (E1); c)-performing the operation b) one or more times until a helical bundle (En) is obtained. -The final bundle (6) of wires is obtained by extension of the helical bundle (En) of individual spirals (E1, E2, E3, etc.) formed in succession. -A system for implementing the said method comprises a drum (201) having, formed on its casing, a multiple-turn helical groove (202) provided with retaining means (203a, 203b) intended to retain the wire (F) or the bunch of wires (F50) in the vicinity of at least one end (202a, 202b) of said helical groove (202).

70 Stent EP03018229.9 1994-03-11 EP1378211A1 2004-01-07 Pinchasik, Gregory

A stent (220) made of a shape memory alloy, such as nitinol, comprises a coiled wire having at least one section wound in one sense and at least one section wound in the opposite sense. The stent (220) is deployed by being tightly wound on a catheter (24) and immobilized thereon at its respective end points (42) as well as at at least one intermediate point, such as points (140) where the winding changes direction. The immobilization may be by means of threads (28) engaged by wires (132, 133) through bores (232, 233) in the catheter interior. These threads (28) can be selectively released by successive removal of the wires (132, 133) so that the intermediate points (142) of the stent, for example, may be released before the end points (42) thereof. The threads (28) can alternatively be released by melting upon heating, or by breaking e.g. by using electrically conducive wires and applying current thereto.

71 Stent EP01122046.4 1994-03-11 EP1163890A3 2002-03-06 Pinchasik, Gregory

A stent (20) is made from a wire by winding the wire on a mandrel (22), heating to form a coiled spring, and reversing the winding direction of the coiled spring to form the reversed coiled spring stent (20). The stent so formed may be reheated over a special mandrel so as to partly relax the outer portion of some or all of the stent coils. The stent may be made up of two or more sections, with adjoining sections wound in opposite senses. Such a stent may be deployed by winding the stent onto a catheter, immobilizing the two ends of the wire and one or more intermediate points, bringing the stent to the location where it is to be deployed, and releasing first the intermediate point or points and then the end points. The release of the wire may be accomplished by heating the thread immobilizing the wire so that the thread breaks and releases the wire.

72 STENT EP94911573 1994-03-11 EP0703761A4 1998-04-29 PINCHASIK GREGORY
This invention is a stent (20) and a method of making it from a wire, which method includes winding the wire on a mandrel (22), heating to form a coiled spring, and reversing the winding direction of the coiled spring to form the reversed coiled spring stent (20). The stent (20) so formed may be reheated over a special mandrel so as to partly relax the outer portion of some or all of the stent coils. The stent (20) may be made up of two or more sections, with adjoining section wound in opposite senses. Such a stent may be deployed by winding the stent onto a catheter, immobilizing the two ends of the wire and one or more intermediate points, bringing the stent to the location where it is to be deployed, and releasing first the intermediate point or points and then the end points. The release of the wire may be accomplished by heating the thread immobilizing the wire so that the thread breaks and releases the wire.
73 Computer controlled coiling machine EP89119157.9 1989-10-16 EP0369173B1 1994-08-03 Philpot, Russell; Hallihan, Timothy J.
74 WINDEEINRICHTUNG FÜR FEDERWINDEMASCHINEN MIT AUSWECHSELBAREN, VOREINSTELLBAREN ELEMENTEN EP88901031.0 1988-01-09 EP0344178A1 1989-12-06 Baisch, Gerhard
Le dispositif décrit requiert des logements de broches d'enroulement (13/14) et des fixations de broches d'enroulement (9/10) qui renferment toutes les vis de réglage nécessaires au réglage initial ainsi qu'aux réglages ultérieurs. Si tel est le cas, un préréglage peut être effectué dans un dispositif de réglage approprié, et des réglages fins peuvent également être effectués ultérieurement dans la machine elle-même. Sans cette possibilité de réglages fins, le système ne pourrait pas marcher car les différentes duretés des fils métalliques usuels du ressort le rendraient impraticable. Les broches d'enroulement (16) doivent être capables de tourner avec leurs logements (13/14) et de coulisser dans le sens longitudinal, et ces unités doivent à leur tour pouvoir, au moyen de la fixation de broches d'enroulement (9/10), pivoter et faire varier leur hauteur par rapport au coulisseau de réglage. Le dispositif de pré-réglage mesure les variations angulaires sur un axe de mesure (41) et les affiche sur un dispositif de mesurage d'angle (45). Un comparateur à cadran (55) est prévu pour les réglages dans le sens axial. Le réglage effectué dans le dispositif de réglage peut être transféré à la machine sans altérations. Cette reproductibilité simplifie et accélère non seulement le réglage de base mais permet également un processus de remplacement par diverses fixations.
75 Verfahren und Vorrichtung zur Herstellung einer Schraubenfeder EP87112672.8 1987-08-31 EP0263300A1 1988-04-13 Wienand, Josef, Dipl.-Ing.; Beihammer, Horst, Dipl.-Ing.; Nitschke, Werner; Kühnert, Berthold; Broscheit, Klaus

Bei einem Verfahren zur Herstellung einer Schraubenfeder aus einem Stab bzw. Draht aus Federstahl mit konstantem Kreisquerschnitt durch Erwärmen des Stabes auf Austenitisierungstemperatur, Wickeln des Stabes in der stabilen Austenitphase, Härten der so geformten Feder durch Abschrecken in einem geeigneten Medium und Anlassen der gehärteten Feder wird dem Stab nach dem Erwärmen und vor dem Wickeln in der stabilen Austenitphase durch Verdrehen um seine Längsachse eine plastische Verformung bei Einhaltung seiner äußeren Gestalt aufgezwungen.

76 Federwindemaschine EP83102913.7 1983-03-24 EP0095027B1 1986-05-07 Frei, Max
77 計時器用メインばねをプレスロールによって製造する方法 JP2017104208 2017-05-26 JP6345845B2 2018-06-20 ジョナ・ヴァノ; クリスチャン・シャルボン
78 塞栓骨組マイクロコイル JP2016209566 2016-10-26 JP2017047234A 2017-03-09 ベー シー リー; アルマンド ガルサ; レジーナ コエリー ベラスコ; アミエル リチャード アギラル; バーチェル ジョン イー
【課題】動脈瘤および他の血管疾患の低侵襲性治療において使用するための塞栓デバイスを提供する。
【解決手段】塞栓マイクロコイルは、動脈瘤および他の血管疾患の治療における使用のための複雑な形状に形成されることができる。マイクロコイルは、略球状形状を一緒に構成するいくつかのループ402を含む遠位部分104と、遠位部分内で展開可能である細長い近位部分とを特徴とする。遠位部分は、動脈瘤の頸部を横断する適正なループ被覆を伴う安定した骨組を生成することができる。近位部分は、一連の略オメガ形状のループを含むことができ、これは、略球状形状の遠位部分の内部に対してを加え、動脈瘤壁のさらなる部分と並置状態になるようにそれを拡張させることができる。血管疾患を治療する方法およびあるマイクロコイルを製造する方法も開示される。
【選択図】図4A
79 Thermal compensation spring and fabrication method thereof JP2010140393 2010-06-21 JP5323006B2 2013-10-23 クリスチャン・シャルボン; マルコ・ヴェラルド; ジョゼ・クインティナ
The spring has a section comprising a metallic material e.g. ferro manganese alloy or nickel iron alloy i.e. Invar(RTM: Nickel steel alloy). The section has a face provided with an external layer that comprises another metallic material i.e. stainless steel. Thermoelastic coefficient of the latter metallic material varies in direction opposite to that of the former metallic material, where one of the metallic materials is paramagnetic. The external layer runs over the entire length of the spring. An independent claim is also included for a method for manufacturing a spring for a sprung balance.
80 Instrument and method for custom molding an orthodontic arch wire material and other medical devices JP2011516903 2010-03-26 JP5265769B2 2013-08-14 フリードリッヒ・リーマイヤー; ヴェルナー・ブッチャー; フランク・ヴィッテ; クリストフ・ラディンガー; アンドリュー・コーデル; ロヒット・サチデバ
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