会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明专利
    • Insertion tool system for electrode array
    • 电极阵列插入工具系统
    • JP2008100097A
    • 2008-05-01
    • JP2007312746
    • 2007-12-03
    • Cochlear Ltdコックリアー,リミテッド
    • GIBSON PETERPARKER JOHNTREABA CLAUDIU
    • A61F11/00A61N1/05
    • A61N1/0541A61B17/3468A61B2017/00787
    • PROBLEM TO BE SOLVED: To provide an insertion device by which a removable means can be taken out from an electrode array in a simple mechanism when inserting an electrode array into a cochlea of a subject.
      SOLUTION: The insertion device (10) includes a handle (11), an elongate positioning member (12) mounted to the handle (11), an actuator member (17) movable relative to the elongate positioning member (12), and at least one anchor member (16) connected to the actuator member (17) and engageable with the removable means. On insertion of the electrode array (15) into a subject's cochlea, the actuator member (17) can be moved relative to the elongate positioning member (12) to withdraw the removable means from the carrier member.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种插入装置,当将电极阵列插入到对象的耳蜗中时,可以以简单的机构从电极阵列中取出可移除装置。 插入装置(10)包括手柄(11),安装到手柄(11)的细长定位构件(12),可相对于细长定位构件(12)移动的致动器构件(17) 以及连接到致动器构件(17)并可与可移除装置接合的至少一个锚定构件(16)。 在将电极阵列(15)插入到被检者的耳蜗中时,致动器构件(17)可以相对于细长定位构件(12)移动,以从承载构件中抽出可移除装置。 版权所有(C)2008,JPO&INPIT
    • 2. 发明专利
    • Implantable medical device
    • 可植入医疗器械
    • JP2012143576A
    • 2012-08-02
    • JP2012051723
    • 2012-03-08
    • Cochlear Ltdコクレア リミテッドCochlear Limited
    • DARLEY IANILIC SLOBODANMCCUSKER DESMONDPARKER JOHN
    • A61F11/00A61F2/18
    • A61N1/36032A61N1/36036A61N1/375A61N1/3758
    • PROBLEM TO BE SOLVED: To provide an implantable device having an impact face likely to receive a force applied to the device.SOLUTION: The implantable device 200 includes a hermetically-sealed container 202 including: a chassis 204 having at least one functional component secured thereto; a first shell hermetically connected to the chassis 204 to form a hermetic enclosure in which the at least one of functional components are disposed; and at least one of feedthrough 210 disposed in one or both of the chassis 204 and the first shell, configured to permit at least one input/output line to infiltrate the hermetic enclosure; and a second shell connected to the container 202 so that it is spaced from but adjacent to the container 202 so as to define the impact face of the device 200 and form a non-hermetic enclosure with the container 202.
    • 要解决的问题:提供具有可能接收施加到该装置的力的冲击面的可植入装置。 解决方案:可植入装置200包括密封容器202,其包括:具有固定到其上的至少一个功能部件的底盘204; 第一外壳,气密地连接到底盘204,以形成其中设置有至少一个功能部件的密封外壳; 以及布置在所述底盘204和所述第一壳体中的一个或两个中的至少一个穿通件210,其配置成允许至少一个输入/输出线渗透所述密封外壳; 以及连接到容器202的第二壳体,使得其与容器202间隔开但邻近容器202,以便限定装置200的冲击面并形成具有容器202的非密封外壳。版权所有( C)2012,JPO&INPIT
    • 3. 发明专利
    • Thin-film fabrication technology for implantation electrode
    • 用于植入电极的薄膜制造技术
    • JP2009254892A
    • 2009-11-05
    • JP2009185471
    • 2009-08-10
    • Cochlear Ltdコクリヤ リミテッド
    • PARKER JOHNTREABA CLAUDIU
    • A61N1/05A61F11/00B81C1/00
    • PROBLEM TO BE SOLVED: To form an electrode assembly using photolithographic technology.
      SOLUTION: A long and thin implantation electrode assembly (50) includes a set of electrode pads (12 and 14) placed in a predetermined pattern, and a plurality of electric wires (34 and 36) extending in a longitudinal direction each wire being connected to at least one pad. The electrode assembly can be formed using photolithographic technology by: firstly depositing the pads (12 and 14) on a sacrifice layer (10), secondly attaching the electric wires (34 and 36) to the pads (12 and 14), thirdly implanting the pads and electric wires in a carrier (46), and finally removing the sacrifice layer (10).
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:使用光刻技术形成电极组件。 解决方案:长且薄的注入电极组件(50)包括以预定图案放置的一组电极焊盘(12和14),以及沿纵向延伸的多根电线(34和36) 连接到至少一个垫。 电极组件可以使用光刻技术形成,首先将焊盘(12和14)沉积在牺牲层(10)上,其次将电线(34和36)附接到焊盘(12和14),第三次将 衬垫和电线,并且最后移除牺牲层(10)。 版权所有(C)2010,JPO&INPIT
    • 6. 发明申请
    • TANGENTIAL FORCE RESISTANT COUPLING FOR A PROSTHETIC DEVICE
    • 用于前置装置的抗扭力联接
    • WO2009121109A9
    • 2009-11-05
    • PCT/AU2009000363
    • 2009-03-27
    • COCHLEAR LTDPARKER JOHN
    • PARKER JOHN
    • A61F11/00
    • H04R25/00A61M5/14276A61M2205/05A61M2210/0662H04R25/606H04R25/70H04R2460/13Y10T29/49572
    • A fixation system tor a bone conduction device is disclosed. An abutment is coupled to a bone anchor such that vibrations applied to the abutment pass into the bone anchor. The abutment defines a conduction path to the bone anchor such that vibrations applied to the abutment are transferred to the bone anchor. The abutment comprises a plurality of sbearing elements disposed adjacent the bone anchor, wherein the shearing elements from part of the conduction path. The fixation system also comprises a virbratoty coupler extending from the bone conduction device, comprising a second conduction surface and a magnet, wherein the magnet attracts to the abutment so as to couple the second conduction surface to the abutment, thereby enabling vibrations to pass through the conduction path. The shearing elements are configured to slide laterally in response to tangential forces incident upon the abutment.
    • 公开了一种骨传导装置的固定系统。 邻接件联接到骨锚,使得施加到邻接处的振动进入骨锚。 邻接件限定到骨锚的传导路径,使得施加到邻接处的振动被转移到骨锚。 所述基台包括邻近所述骨锚固件设置的多个支撑元件,其中所述剪切元件来自所述传导路径的一部分。 所述固定系统还包括从所述骨传导装置延伸的包含第二传导表面和磁体的病毒性连接器,其中所述磁体吸引到所述邻接部,从而将所述第二传导表面耦合到所述邻接部,从而使得振动能够通过 传导路径。 剪切元件构造成响应于入射到邻接处的切向力而横向滑动。
    • 9. 发明申请
    • MECHANICAL FIXATION SYSTEM FOR A PROSTHETIC DEVICE
    • 一种前置装置的机械固定系统
    • WO2009121097A9
    • 2009-11-05
    • PCT/AU2009000350
    • 2009-03-26
    • COCHLEAR LTDPARKER JOHN
    • PARKER JOHN
    • H04R25/00H04R9/00
    • H04R25/00A61M5/14276A61M2205/05A61M2210/0662H04R25/606H04R25/70H04R2460/13Y10T29/49572
    • A fixation system for a bone conduction device is disclosed. An abutment is coupled to a bone anchor such that vibrations applied to the abutment pass into the bone anchor. The abutment defines a conduction path to the bone anchor such that vibrations applied to the abutment are transferred to the bone anchor. The abutment comprises a plurality of interlocking stacked plates disposed adjacent the bone anchor, wherein the plates form part of the conduction path. The fixation system also comprises a vibratory coupler extending from the bone conduction device, comprising a second conduction surface and a magnet, wherein the magnet attracts to the abutment so as to couple the second conduction surface to the abutment, thereby enabling vibrations to pass through the conduction path. The plates are configured to slide laterally in response to tangential forces incident upon the abutment.
    • 公开了一种用于骨传导装置的固定系统。 邻接件联接到骨锚,使得施加到邻接处的振动进入骨锚。 邻接件限定到骨锚的传导路径,使得施加到邻接处的振动被转移到骨锚。 邻接部包括邻近骨锚固设置的多个互锁叠层板,其中板形成导电路径的一部分。 固定系统还包括从骨传导装置延伸的振动联接器,包括第二传导表面和磁体,其中磁体吸引到邻接部,以将第二传导表面耦合到邻接部,从而使振动能够通过 传导路径。 板被构造成响应于入射到邻接处的切向力而横向滑动。
    • 10. 发明申请
    • COUPLING SYSTEM FOR A PROSTHETIC DEVICE
    • 假体装置的耦合系统
    • WO2009121108A1
    • 2009-10-08
    • PCT/AU2009000362
    • 2009-03-27
    • COCHLEAR LTDPARKER JOHN
    • PARKER JOHN
    • A61F11/00
    • H04R25/00A61M5/14276A61M2205/05A61M2210/0662H04R25/606H04R25/70H04R2460/13Y10T29/49572
    • A fixation system for a bone conduction device is disclosed. An abutment is coupled to a bone anchor such that vibrations applied to the abutment pass into the bone anchor. The abutment comprises a first conduction surface, a bearing surface, and a magnetic material at or near the first conduction surface. A coupler extends from a bone conduction device and comprises a second conduction surface, a leveraging extension, and a magnet. The second conduction surface is shaped complimentray to the first conduction surface. The magnet attracts to the magnetic material such that the second conduction surface seats on the first conduction surface, thereby enabling vibrations to pass from the bone conduction device to a recipient's skull.
    • 公开了一种用于骨传导装置的固定系统。 基台联接到骨锚,使得施加到基台的振动进入骨锚。 基台包括第一传导表面,支承表面以及在第一传导表面处或附近的磁性材料。 耦合器从骨传导装置延伸并且包括第二传导表面,杠杆延伸部和磁体。 第二导电表面与第一导电表面形成互补。 磁体吸引磁性材料,使得第二传导表面位于第一传导表面上,由此使振动能够从骨传导装置传递到接受者的头骨。