Polymer Introducer for Use with an RF Ablation Probe and Associated RF Ablation Probe Assembly
A medical introducer is provided for use in locating an energy delivery probe, such as an RF ablation probe, at a target location in tissue. The introducer includes a proximal hub and an elongate cannula having a distal end and a proximal end, the proximal end connected to the hub. The cannula is formed entirely of an electrically insulating polymer material and includes a tapered distal tip. An RF ablation probe system is also provided that includes an RF ablation probe assembly, a stylet, and the introducer.
1 . A medical introducer for use in locating an energy delivery probe at a target location in tissue, comprising:
a proximal hub;
an elongate cannula having a distal end and a proximal end, the proximal end connected to the hub;
the cannula formed entirely of an electrically insulating polymer material; and
the cannula comprising a tapered distal tip.
2 . The medical introducer of claim 1 , wherein the hub is overmolded onto the proximal end of the cannula.
3 . The medical introducer of claim 1 , wherein the hub is bonded onto the proximal end of the cannula.
4 . The medical introducer of claim 1 , wherein the polymer material comprises a flexibility that allows the cannula to bend without kinking during insertion of the introducer into the tissue.
5 . The medical introducer of claim 1 , wherein the polymer material is one of nylon, fluorinated ethylene propylene (FEP), polytetrafluoroethylene (PTFE), high-density polyethylene (HDPE), polyamide, or polyether ether ketone (PEEK)
6 . The medical introducer of claim 1 , wherein the hub further comprises a fluid introduction port in fluid communication with the proximal end of the cannula.
7 . The medical introducer of claim 1 , further comprising a radiopaque element fixed to the distal end of the cannula, the radiopaque element defining the tapered distal tip of the cannula.
8 . The medical introducer of claim 7 , further comprising a plurality of radiopaque bands applied over the polymer material and spaced apart along the cannula.
9 . An RF ablation probe system for use in locating a radio frequency (RF) probe at a target location in tissue, comprising:
an introducer, the introducer comprising
a proximal hub;
an elongate cannula having a distal end, a proximal end, and an inside diameter, the proximal end connected to the hub; and
the cannula formed entirely of an electrically insulating polymer material;
a stylet insertable through the hub and into the cannula, the stylet comprising a tissue-piercing distal end that extends from the distal end of the cannula when the stylet is inserted into the introducer, the stylet comprising an outside diameter such that a concentric clearance between the stylet and the inside diameter of the cannula is less than 0.0010 inches; and
an RF probe assembly comprising an elongate shaft insertable through the hub and into the cannula, the elongate shaft comprising an active distal tip that extends from the distal end of the cannula when the elongate shaft is inserted into the introducer, the elongate shaft comprising an outside diameter such that a clearance between the elongate shaft and the inside diameter of the cannula is greater than 0.0010 inches.
10 . The RF ablation probe system of claim 9 , wherein the cannula comprises a tapered distal tip;
11 . The RF ablation probe system of claim 9 , wherein the concentric clearance between the stylet and the inside diameter of the cannula is less than 0.0007+/−0.0002 inches.
12 . The RF ablation probe system of claim 9 , wherein the concentric clearance between the RF probe and the inside diameter of the cannula is 0.0020+/−0.0010 inches.
13 . The RF ablation probe system of claim 9 , wherein the hub is overmolded or bonded onto the proximal end of the cannula.
14 . The RF ablation probe system of claim 9 , wherein the polymer material comprises a flexibility that allows the cannula to bend without kinking during insertion of the introducer into the tissue.
15 . The RF ablation probe system of claim 9 , wherein the polymer material is one of nylon, fluorinated ethylene propylene (FEP), polytetrafluoroethylene (PTFE), high-density polyethylene (HDPE), polyamide, or polyether ether ketone (PEEK).
16 . The RF ablation probe system of claim 9 , wherein the hub further comprises a fluid introduction port in fluid communication with the proximal end of the cannula.
17 . The RF ablation probe system of claim 9 , further comprising a radiopaque element fixed to the distal end of the cannula, the radiopaque element defining the tapered distal tip.