IP Library Granted Patent US 11,559,345
Granted Patent B2
US 11,559,345 · App. 16/414,991 · Granted Jan 24, 2023

Vapor ablation systems and methods

Inventors: Roger Noel Hastings (Naples, FL); Steven Carlson (St. Paul, MN); Mark Schrom (Forest Lake, MN); Michael Hoey (Shoreview, MN)
Assignee: Boston Scientific Scimed, Inc.
A61B18/04A61B2017/00017A61B2017/00274A61B2017/00398A61B2018/00029A61B2018/00517A61B2018/00547A61B2018/00577A61B2018/00636A61B2018/00744A61B2018/00982A61B2018/048A61B2090/065A61B2218/002A61B2218/007
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Quick Facts
Patent No.
US 11,559,345
App. No.
16/414,991
Granted
Jan 24, 2023
Kind
B2
Abstract

A vapor delivery system and method is provided that is adapted for treating prostate tissue. The vapor delivery system includes a vapor delivery needle configured to deliver condensable vapor energy to tissue. In one method, the vapor delivery system is advanced transurethrally into the patient to access the prostate tissue. The vapor delivery system includes a generator unit and an inductive heating system to produce a high quality vapor for delivery to tissue. Methods of use are also provided.

Claims (32)

1. A vapor delivery system, comprising:

a generator unit;

a cradle disposed in the generator unit;

a syringe assembly disposed in the cradle so that a barrel of the syringe assembly directly contacts the cradle;

a force sensor disposed in the cradle and configured to contact the cradle and/or the syringe assembly, wherein the force sensor is configured to generate an electrical signal indicative of a force exerted on the force sensor by the cradle and/or the syringe assembly; and

an electronic controller configured to receive the electrical signal, wherein the electronic controller is configured to calibrate the electrical signal to represent a pressure of fluid within the syringe assembly.

2. The vapor delivery system of claim 1 , wherein the electronic controller is further configured to stop delivery of the fluid if the pressure is outside of a predetermined range of fluid pressures.

3. The vapor delivery system of claim 1 , wherein the cradle is arranged such that a distal end of the syringe assembly is held at a higher elevation than a proximal end of the syringe assembly.

4. The vapor delivery system of claim 1 , wherein the cradle further comprises a piston coupled to a linear motor, and wherein the piston interacts with a plunger of the syringe assembly to deliver fluid from the syringe assembly.

5. The vapor delivery system of claim 1 , wherein a contact switch is activated when the syringe assembly is inserted into the cradle.

6. A vapor delivery system, comprising:

a generator unit;

a cradle disposed in the generator unit;

a syringe assembly disposed in the cradle;

a force sensor disposed between the cradle and the generator unit and configured to generate an electrical signal indicative of a force exerted on the force sensor by the cradle; and

an electronic controller configured to receive the electrical signal, wherein the electronic controller is configured to calibrate the electrical signal to represent a pressure of fluid within the syringe assembly.

7. The vapor delivery system of claim 6 , wherein the electronic controller is further configured to stop delivery of the fluid if the pressure is outside of a predetermined range of fluid pressures.

8. The vapor delivery system of claim 6 , wherein at least a portion of the cradle is free to move in a lateral direction perpendicular to a longitudinal axis of the syringe assembly, and wherein the force exerted is a lateral force.

9. The vapor delivery system of claim 6 , wherein the cradle further comprises a piston coupled to a linear motor, wherein the piston is configured to interact with a plunger of the syringe assembly to deliver fluid from the syringe assembly.

10. The vapor delivery system of claim 9 , wherein the interaction of the plunger and the syringe assembly causes the force to be exerted on the force sensor by the cradle.

11. The vapor delivery system of claim 6 , wherein the cradle is arranged such that a distal end of the syringe assembly is located at a higher elevation than a proximal end of the syringe assembly.

12. The vapor delivery system of claim 6 , wherein a barrel of the syringe assembly directly contacts the cradle.

13. A vapor delivery system, comprising:

a generator unit;

a cradle disposed in the generator unit;

a syringe assembly disposed in the cradle;

a force sensor disposed in the cradle and configured to contact the cradle and/or the syringe assembly to generate an electrical signal indicative of a lateral force exerted on the force sensor by the cradle and/or the syringe assembly in a lateral direction, wherein the lateral direction is a direction perpendicular to a longitudinal axis of the syringe assembly; and

an electronic controller configured to receive the electrical signal, wherein the electronic controller is further configured to calibrate the electrical signal to represent a pressure of fluid within the syringe assembly.

14. The vapor delivery system of claim 13 , wherein the electronic controller is further configured to stop delivery of the fluid if the pressure falls outside of a predetermined range of fluid pressures.

15. The vapor delivery system of claim 13 , wherein at least a portion of the cradle is free to move laterally within the generator unit.

16. The vapor delivery system of claim 13 , wherein the cradle further comprises a piston coupled to a linear motor, wherein the piston is configured to interact with a plunger of the syringe assembly to deliver fluid from the syringe assembly.

17. The vapor delivery system of claim 16 , wherein the interaction of the plunger and the syringe assembly causes the lateral force to be exerted on the force sensor by the cradle.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Aug 9, 2019
From: NXTHERA, INC.
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 050012/0107 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2019
From: HASTINGS, ROGER NOEL; CARLSON, STEVEN; SCHROM, MARK; HOEY, MICHAEL
To: NXTHERA, INC.
Reel/Frame 049213/0915 →
Continuity (3)
Continuation 15011005 · Jan 29, 2016
Provisional Application 62109540 · Jan 29, 2015
Related Publication 20190269449A1 · Sep 5, 2019