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公开(公告)号:US20200246585A1
公开(公告)日:2020-08-06
申请号:US16846158
申请日:2020-04-10
Applicant: Pacesetter, Inc.
Inventor: Tracee Eidenschink , Thomas B. Eby , Matt Glimsdale , Brian J. Perszyk
Abstract: Disclosed herein is a delivery catheter for implanting a leadless biostimulator. The delivery catheter includes a shaft and a tubular body having a lumen and an atraumatic end. The atraumatic end includes at least one of a braided, woven or mesh construction configured to facilitate the atraumatic end changing diameter. When a distal portion of the shaft is coupled to a proximal region of the leadless biostimulator, at least one of distally displacing the tubular body relative to the shaft or proximally displacing the shaft relative to the tubular body causes the leadless biostimulator to be received in the volume of the atraumatic end and the atraumatic end to encompass the leadless biostimulator. Conversely, at least one of proximally displacing the tubular body relative to the shaft or distally displacing the shaft relative to the tubular body causes the leadless biostimulator to exit the volume of the atraumatic end.
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公开(公告)号:US11779731B2
公开(公告)日:2023-10-10
申请号:US16846158
申请日:2020-04-10
Applicant: Pacesetter, Inc.
Inventor: Tracee Eidenschink , Thomas B. Eby , Matt Glimsdale , Brian J. Perszyk
CPC classification number: A61M25/008 , A61M25/001 , A61N1/056 , A61N1/059 , A61N1/3756 , A61M25/0009 , A61M2025/0024 , A61M2025/0081 , A61M2025/0681 , A61M2205/0266 , A61M2207/00
Abstract: Disclosed herein is a delivery catheter for implanting a leadless biostimulator. The delivery catheter includes a shaft and a tubular body having a lumen and an atraumatic end. The atraumatic end includes at least one of a braided, woven or mesh construction configured to facilitate the atraumatic end changing diameter. When a distal portion of the shaft is coupled to a proximal region of the leadless biostimulator, at least one of distally displacing the tubular body relative to the shaft or proximally displacing the shaft relative to the tubular body causes the leadless biostimulator to be received in the volume of the atraumatic end and the atraumatic end to encompass the leadless biostimulator. Conversely, at least one of proximally displacing the tubular body relative to the shaft or distally displacing the shaft relative to the tubular body causes the leadless biostimulator to exit the volume of the atraumatic end.
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公开(公告)号:US20160096001A1
公开(公告)日:2016-04-07
申请号:US14508556
申请日:2014-10-07
Applicant: PACESETTER, INC.
Inventor: Tracee Eidenschink , Thomas B. Eby , Matt Glimsdale , Brian J. Perszyk
CPC classification number: A61M25/008 , A61M25/0009 , A61M25/001 , A61M2025/0024 , A61M2025/0081 , A61M2025/0681 , A61M2205/0266 , A61M2207/00 , A61N1/056 , A61N1/059 , A61N1/3756
Abstract: Disclosed herein is a delivery catheter for implanting a leadless biostimulator. The delivery catheter includes a shaft and a tubular body having a lumen and an atraumatic end. The atraumatic end includes at least one of a braided, woven or mesh construction configured to facilitate the atraumatic end changing diameter. When a distal portion of the shaft is coupled to a proximal region of the leadless biostimulator, at least one of distally displacing the tubular body relative to the shaft or proximally displacing the shaft relative to the tubular body causes the leadless biostimulator to be received in the volume of the atraumatic end and the atraumatic end to encompass the leadless biostimulator. Conversely, at least one of proximally displacing the tubular body relative to the shaft or distally displacing the shaft relative to the tubular body causes the leadless biostimulator to exit the volume of the atraumatic end.
Abstract translation: 本文公开了一种用于植入无引导生物刺激器的输送导管。 输送导管包括轴和具有内腔和无创伤端的管状体。 无创伤端包括构造成促进无创末端改变直径的编织,编织或网状结构中的至少一个。 当轴的远端部分联接到无引导生物刺激器的近侧区域时,使管状体相对于轴向远侧移位或者相对于管状体向近端移位的至少一个使得无引导生物刺激器被接收在 无创伤末端的体积和无创伤端,以包含无引导生物刺激器。 相反地,管状体相对于轴向近侧位移或者使轴相对于管状体向远端移动中的至少一个导致无引导生物刺激器离开无创伤端的体积。
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公开(公告)号:US20240001078A1
公开(公告)日:2024-01-04
申请号:US18369779
申请日:2023-09-18
Applicant: Pacesetter, Inc.
Inventor: Tracee Eidenschink , Thomas B. Eby , Matt Glimsdale , Brian J. Perszyk
CPC classification number: A61M25/008 , A61N1/056 , A61N1/3756 , A61M25/001 , A61N1/059 , A61M2025/0081 , A61M2205/0266 , A61M2207/00 , A61M2025/0024 , A61M25/0009 , A61M2025/0681
Abstract: Disclosed herein is a delivery catheter for implanting a leadless biostimulator. The delivery catheter includes a shaft and a tubular body having a lumen and an atraumatic end. The atraumatic end includes at least one of a braided, woven or mesh construction configured to facilitate the atraumatic end changing diameter. When a distal portion of the shaft is coupled to a proximal region of the leadless biostimulator, at least one of distally displacing the tubular body relative to the shaft or proximally displacing the shaft relative to the tubular body causes the leadless biostimulator to be received in the volume of the atraumatic end and the atraumatic end to encompass the leadless biostimulator. Conversely, at least one of proximally displacing the tubular body relative to the shaft or distally displacing the shaft relative to the tubular body causes the leadless biostimulator to exit the volume of the atraumatic end.
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公开(公告)号:US10653859B2
公开(公告)日:2020-05-19
申请号:US14508556
申请日:2014-10-07
Applicant: PACESETTER, INC.
Inventor: Tracee Eidenschink , Thomas B. Eby , Matt Glimsdale , Brian J. Perszyk
Abstract: Disclosed herein is a delivery catheter for implanting a leadless biostimulator. The delivery catheter includes a shaft and a tubular body having a lumen and an atraumatic end. The atraumatic end includes at least one of a braided, woven or mesh construction configured to facilitate the atraumatic end changing diameter. When a distal portion of the shaft is coupled to a proximal region of the leadless biostimulator, at least one of distally displacing the tubular body relative to the shaft or proximally displacing the shaft relative to the tubular body causes the leadless biostimulator to be received in the volume of the atraumatic end and the atraumatic end to encompass the leadless biostimulator. Conversely, at least one of proximally displacing the tubular body relative to the shaft or distally displacing the shaft relative to the tubular body causes the leadless biostimulator to exit the volume of the atraumatic end.
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