Nova Patents
EP1537835A2

Removable embolus blood clot filter

Abstract

A blood clot filter which is collapsible toward a central longitudinal axis into a collapsed configuration for insertion into a blood vessel, and which is radially expandable outwardly from the longitudinal axis to an expanded configuration for contact with the inner wall of the blood vessel at two longitudinal spaced locations. A first plurality of spaced, elongate arms, in the expanded configuration of the filter, curve outwardly away from the longitudinal axis toward the leading end of the filter to form a first filter basket, and to center a hub at the trailing end of the filter within the vessel. A second plurality of spaced elongate legs angle outwardly away from the longitudinal axis toward the leading edge of the filter in the expanded configuration thereof to form a second filter basket opening toward the leading end. To prevent longitudinal movement of the filter, the ends of these legs include hooks, at least a portion of which is of a reduced cross-sectional area relative to the cross-sectional area of the adjacent leg to permit the hooks to bend and straighten in response to withdrawal force.

EP1537835A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 23 September 2019, 7 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

11 claims: 10 independent, 1 dependent

  1. 1
    A removable blood clot filter having leading and trailing ends and a filter central longitudinal axis and which is collapsible in a collapsed configuration toward said filter longitudinal axis for insertion into a blood vessel and is radially expandable outwardly from said filter longitudinal axis to an expanded configuration to contact and penetrate an inner wall of said blood vessel to provide a filter migration resistance force sufficient to prevent filter migration in response to blood pressure within said blood vessel, characterized by that a plurality of elongate, spaced appendages having first and second ends, the first ends of said plurality of elongate spaced appendages being formed to extend outwardly toward said filter leading end away from said filter longitudinal axis in the expanded configuration of said filter, each of a plurality of said elongate spaced appendages having an appendage longitudinal axis and a pointed hook formed at the second end thereof which extends laterally outward relative to said appendage longitudinal axis in a direction away from said filter longitudinal axis to engage and penetrate the vessel inner wall in the expanded configuration of said filter, each said hook being designed to bend toward a more straight configuration when a load is applied and spring back to their original shape once the load has been removed, the load to deform the hook is correlated to the load applied to each hook when the device is fully occluded and the blood pressure is allowed to reach 50 mmHg.
  2. 3
    The removable blood clot filter of any one of claims 1 to 2 characterized by that said elongate appendages include a plurality of spaced elongate substantially straight legs and a plurality of spaced, elongate arms, both said elongate legs and arms having first ends mounted adjacent to said longitudinal axis, said arms in the expanded configuration of said filter each extending in a substantially straight line angularly outward away from the longitudinal axis to an elbow spaced between said first and second ends of said arm and then angularly away from said elbow in a substantially straight line to the second end of said arm.
  3. 4
    The removable blood clot filter of any one of claims 1 to 3 characterized by that said elongate legs extend toward the leading end of said filter to form a first filter basket and each said elongate arm angles outwardly from the longitudinal axis of said filter toward the leading end of said filter and then angles away from said elbow toward the leading end of said filter to form a second filter basket.
  4. 5
    The removable blood clot filter of any one of claims 1 to 4, characterized by that said hooks are formed to impart a filter migration resistance force to said filter of substantially 50 mmHg.
  5. 6
    The removable blood clot filter of any one of claims 1 to 5 characterized by that said hook curves laterally relative to said appendage longitudinal axis and outwardly from said filter longitudinal axis to a pointed end.
  6. 7
    The removable blood clot filter of any one of claims 1 to 6 characterized by that at least a portion of said hook is formed with a cross sectional area of reduced size relative to the cross sectional area of said appendage to provide the maximum migration force above which the hook will bend toward a straightened configuration.
  7. 8
    The removable blood clot filter of any one of claims 1 to 7 characterized by that said elongate appendages and hooks are formed of thermal shape memory material having a temperature transformation level below which said material is relatively pliable and compressible and above which said material is self-expandable to a substantially rigid, predetermined configuration, and wherein withdrawal force applied to the trailing end of said filter results in stress being concentrated in the reduced cross sectional area of said hooks.
  8. 9
    The removable blood clot filter of any one of claims 1 to 8 characterized by that the entire cross sectional area along the length of each said hook is of reduced size relative to the cross sectional area of the appendage bearing the hook.
  9. 10
    The removable blood clot filter of any one of claims 1 to 9 characterized by that each said hook is formed integrally with the second end of an elongate leg, said hook being formed with a joinder section adjacent to said elongate leg, said joinder section having a cross sectional area which is reduced in size relative to the cross sectional area of said elongate leg.
  10. 11
    The removable blood clot filter of any of claims 1 to 10 characterized by that said elongate, legs and hooks are formed of thermal shape memory material having a temperature transformation level below which said material is relatively pliable and compressible and above which said material is self-expandable to a substantially rigid, predetermined configuration, and wherein withdrawal force applied to the trailing end of said filter results in stress being concentrated in the reduced cross sectional area of said hooks.