EP0337035B1

Soluble covering for cardiac pacing electrode.

Abstract

This record has no abstract on file.

EP0337035B1, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Expired 15 December 2008, 17.8 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

12 claims: 3 independent, 9 dependent

  1. 1
    An apparatus for facilitating intravascular insertion of a body implantable device, comprising:a device (16) implantable in a living body by intravascular insertion, a fixation element (28) at a distal end of said device (16), and a biocompatible, non-pyrogenic covering (30,40,50,70,80) substantially surrounding said fixation element (28), said covering (30,40,50,70,80) having a melting point of at least 60°C., being stable in an ambient environment, soluble in body fluids, tending to maintain its structural integrity in an environment of bodily fluids at approximately body temperature, and having a thickness selected to allow at least a predetermined time for the intravascular insertion of said distal end at least proximate to a selected location inside the living body, before said covering (30,40,50,70,80) dissolves sufficiently to expose said fixation element (28) to permit penetration of the fixation element (28) into body tissue at said selected location, said covering (30,40,50,70,80) consisting substantially of at least one of the following constituents: mannitol;dextrose;sorbose;sucrose;sodium chloride;sodium carbonate;and potassium chloride.
  2. 2
    The apparatus of Claim 1 wherein:said device (16) comprises a cardiac pacing electrode (20).
  3. 3
    The apparatus of Claim 2 wherein the device (16) further comprises:a flexible electrical conductor (18);a flexible, biocompatible dielectric sheath (24) surrounding said conductor (18) along substantially the entire length thereof;and a coupling means (22) for electrically and mechanically joining said electrode (20) to a distal end of said conductor (18), whereby the conductor (18) and electrode (20) transmit electrical signals between said selected location and a proximal end of said conductor (18);and wherein the fixation element (28) penetrates into endocardial tissue at a selected location to secure said electrode (20) at said location.
  4. 4
    The apparatus of Claim 2 or 3 wherein:said covering comprises a preformed capsule (70,80) with a bore (76,88) in said capsule (70,80) for accommodating said fixation element (28), and means joining said capsule (70,80) with respect to said electrode (20) with said fixation element (28) inside of said bore (76,88).
  5. 5
    The apparatus of Claim 4 wherein:said joining means comprises an adhesive (72).
  6. 6
    The apparatus of Claim 4 wherein:said fixation element is a helix (84), and said bore (88) has a helical shape corresponding to the shape of said helix (84).
  7. 7
    The apparatus of Claim 2, 3, 4, 5 or 6 wherein:said electrode includes an electrically conductive and porous electrode portion (26,46,56,65,86) proximally of said fixation element.
  8. 8
    The apparatus of Claim 7 wherein:said covering (30,40,50,70,80) overlies part of said porous electrode portion (26,46,56,65,86) and leaves the remainder of said portion exposed.
  9. 9
    The apparatus of any one of claims 1, 2, 3, 7 or 8 wherein:said covering (30,40,50) is formed by dip coating a material comprising said covering in liquid melt form onto said fixation element (28) for solidifying in surrounding relation to said element (28).
  10. 10
    A process for coating a fixation element of a body implantable electrode, including the steps of:(a) selecting a biocompatible, nonpyrogenic material soluble in bodily fluids and having a melting point substantially above normal body temperature, and heating said material to a temperature slightly above its melting point;(b) dipping a fixation element (28) of a body implantable electrode (20) into a solution of said material maintained at said temperature;(c) removing said fixation element (28), along with an initial portion of said material adhering to said fixation element (28), from said solution and permitting them to cool a sufficient time to allow said first portion to at least partially solidify;(d) dipping said fixation element (28) and material portion, after said cooling, into said solution for a time sufficient to permit a subsequent portion of said material to adhere to said initial portion;and (e) removing said fixation element (28), initial portion and subsequent portion from said solution, and permitting them to cool to an ambient temperature.
  11. 11
    The process of Claim 10 including the further steps of:repeating steps (d) and (e) until the combined thickness of said initial portion and all subsequent portions is at least a predetermined value.
  12. 12
    The process of Claim 10 or 11 including the further steps of:providing means (92) defining a cavity (102,104,106) having a selected size and shape, and heating a wall forming said cavity (102,104,106) to a preselected temperature at least as high as the melting point of said material;and    with the combined thickness of said material portions being at least said predetermined value to form a tip larger than said cavity (102,104,106), momentarily inserting said tip into said cavity (102,104,106) to melt excess material;and    draining said excess material from said cavity.