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    • 6. 发明申请
    • EMBOLECTOMY DEVICE
    • WO2010023671A2
    • 2010-03-04
    • PCT/IL2009/000834
    • 2009-08-30
    • RAPID MEDICAL LTD.ECKHOUSE, RonenSUDIN, YuriECKHOUSE, Shimon
    • ECKHOUSE, RonenSUDIN, YuriECKHOUSE, Shimon
    • A61B17/221
    • A61B17/221A61B17/2202A61B2017/22035A61B2017/2217
    • It is one object of the present invention to provide a device for extracting a clot from a blood vessel in a non fragmented manner, comprising: 1. an endless wire coupled to a spring-like helical member having a plurality of loops; said loops are positioned at an angle A relatively to the main longitudinal axis of said blood vessel; and, are adapted to radially encircle at least a portion of the outer circumference of said clot; and, 2. a tubular mesh-like net for both enveloping said helical member and enclosing said clot therein; wherein at least a portion of said clot is contemporaneously confined within said loops and said mesh-like net, such that radial compression forces and longitudinal shearing forces are exerted on said clot and the tendency of said clot to fragment is mitigated.
    • 本发明的一个目的是提供一种以非破碎方式从血管提取凝块的装置,包括:1.连接到具有多个环的弹簧状螺旋构件的环形线; 所述环相对于所述血管的主纵向轴线定位成角度A; 并且适于径向地环绕所述凝块的外周的至少一部分; 2.一种用于包封所述螺旋构件并在其中封闭所述凝块的管状网状网; 其中所述凝块的至少一部分同时被限制在所述环和所述网状网内,使得径向压缩力和纵向剪切力施加在所述凝块上,并且减轻所述凝块片段的倾向。
    • 7. 发明申请
    • INTRALUMINAL DEVICE WITH WIRE BRAIDING CONFIGURATION
    • WO2020021333A2
    • 2020-01-30
    • PCT/IB2019/000858
    • 2019-07-23
    • RAPID MEDICAL LTD.
    • FRIEDMAN, AharonGEDULTER, Matan
    • A61M25/01
    • Intraluminal devices and methods of fabricating intraluminal devices may be provided. In one implementation, an intraluminal device may be formed of a plurality of wires and may include a distal coil, a proximal coil, and an expandable mesh segment positioned between the distal and proximal coils. The distal coil, proximal coil, and expandable mesh segment may be formed as a single, unitary structure, with at least one wire of the plurality of wires extending continuously from the proximal coil to the distal coil. In another implementation, an intraluminal device may include a distal coil forming a distal tip of the device. The distal coil may be configured to be soft and atraumatic. In another implementation, an intraluminal device may include two pairs of wires meeting at a wire crossing. At the wire crossing, one wire of each pair of wires may pass between the wires of the other pair of wires. In another implementation, an intraluminal device may be formed of a plurality of wires and may include a distal coil, a proximal coil, and an expandable mesh segment positioned between the distal and proximal coils. The proximal coil may include more wires of the plurality of wires than the distal coil and the expandable mesh segment.
    • 8. 发明申请
    • GUIDE WIRE ACTIVATION MECHANISM AND PROXIMAL ACTUATION MECHANISM
    • WO2019116102A2
    • 2019-06-20
    • PCT/IB2018/001571
    • 2018-12-12
    • RAPID MEDICAL LTD.
    • FRIEDMAN, AharonGEDULTER, MatanMILLER, Moshe
    • A61M25/00
    • An intraluminal guide wire may include an elongated shaft extending between a distal end thereof and a proximal end thereof. The intraluminal guide wire may include a user actuation segment positioned proximal to the proximal end of the elongated shaft, the user actuation segment configured for movement relative to the elongated shaft. The intraluminal guide wire may include a core wire affixed to the user actuation segment and the distal end of the elongated shaft. The intraluminal guide wire may also include an inner member having a proximal end thereof positioned at least partially within and fixed relative to the user actuation segment and a distal end thereof positioned at least partially within the elongated shaft, the core wire passing through the inner member. In some embodiments, the intraluminal guide wire may be configured such that a distal segment of the inner member within the elongated shaft is configured to exhibit a friction-based restraint on movement within the elongated shaft, the friction-based restraint on movement being a frictional force between an outer surface of the inner member and an inner surface of the elongated shaft.An intraluminal guide wire may include an elongated shaft extending between a distal end thereof and a proximal end thereof. The intraluminal guide wire may include a user actuation segment positioned proximal to the proximal end of the elongated shaft, the user actuation segment configured for movement relative to the elongated shaft. The intraluminal guide wire may include a core wire affixed to the user actuation segment and the distal end of the elongated shaft. The intraluminal guide wire may also include an inner member having a proximal end thereof positioned at least partially within and fixed relative to the user actuation segment and a distal end thereof positioned at least partially within the elongated shaft, the core wire passing through the inner member. In some embodiments, the intraluminal guide wire may be configured such that a distal segment of the inner member within the elongated shaft is configured to exhibit a friction-based restraint on movement within the elongated shaft, the friction-based restraint on movement being a frictional force between an outer surface of the inner member and an inner surface of the elongated shaft.