IP Library › Granted Patent US 11,850,073
Granted Patent B2
US 11,850,073 · App. 16/361,194 · Granted Dec 26, 2023

Medical device with pressure sensor

Inventors: Cory P. Wright (Woodbury, MN); Nathaniel Stark (Plymouth, MN); Wenguang Li (Los Gatos, CA); Gaylin Mildred Yee (Newark, CA); Neil Pollock (Hertfordshire, GB); Mikhail E. Bashtanov (Cambridge, GB); Fahad Hussain (Hertfordshire, GB); Mette Funding La Cour (Cambridge, GB)
Assignee: BOSTON SCIENTIFIC SCIMED, INC.
A61B5/6851A61B5/02154A61B5/02156A61B5/6885A61L29/106A61L29/14A61B2090/3614A61B2562/0233A61B2562/0247A61M2025/0002A61M2025/09083
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Quick Facts
Patent No.
US 11,850,073
App. No.
16/361,194
Granted
Dec 26, 2023
Kind
B2
Abstract

Pressure sensing guidewires and methods for making and using pressure sensing guidewires are disclosed. An example pressure sensing guidewire may include a tubular member having a proximal region and a housing region. An optical pressure sensor may be disposed within the housing region. The optical pressure sensor may include a sensor body and a deflectable membrane coupled to the sensor body. The deflectable membrane may include a polymer. An optical fiber may be coupled to the sensor body and may extend proximally therefrom. A pressure equalization channel is formed in the optical fiber, the sensor body, or both.

Claims (38)

1. A pressure sensing guidewire, comprising:

a tubular member having a proximal region and a housing region;

an optical pressure sensor disposed within the housing region;

wherein the optical pressure sensor includes a sensor body having a cavity formed therein and a deflectable membrane coupled to the sensor body and extending across the cavity;

wherein the deflectable membrane includes a polymer;

an optical fiber coupled to the sensor body and extending proximally therefrom; and

wherein a pressure equalization channel is formed in the optical fiber and extending into the cavity, the sensor body, or both, and

wherein the pressure equalization channel is in fluid communication with the deflectable membrane.

2. The pressure sensing guidewire of claim 1 , wherein the proximal region of the tubular member has a first inner diameter, wherein the housing region of the tubular member has a second inner diameter, and wherein the first inner diameter is different from the second inner diameter.

3. The pressure sensing guidewire of claim 2 , wherein the first inner diameter is smaller than the second inner diameter.

4. The pressure sensing guidewire of claim 3 , wherein the tubular member has a substantially constant outer diameter.

5. The pressure sensing guidewire of claim 1 , wherein the pressure equalization channel extends through the optical fiber.

6. The pressure sensing guidewire of claim 5 , wherein the optical fiber has a longitudinal axis and wherein the pressure equalization channel is radially offset from the longitudinal axis.

7. The pressure sensing guidewire of claim 1 , wherein the deflectable membrane includes a proximal coating.

8. The pressure sensing guidewire of claim 7 , wherein the proximal coating includes a metal.

9. The pressure sensing guidewire of claim 1 , wherein the deflectable membrane includes a distal coating.

10. The pressure sensing guidewire of claim 9 , wherein the distal coating includes a metal.

11. The pressure sensing guidewire of claim 1 , wherein the deflectable membrane is encased in a fluid-impermeable coating.

12. A pressure sensing medical device, comprising:

a tubular member having a proximal region and a housing region;

an optical fiber extending at least partially through the tubular member, the optical fiber having a distal end region;

a pressure sensor formed at the distal end region of the optical fiber, the pressure sensor having a cavity formed therein and including a deflectable membrane extending across the cavity;

wherein the deflectable membrane includes a polymer; and

a open pressure equalization channel extending through the optical fiber and into the cavity so that the pressure equalization channel is in fluid communication with the deflectable membrane.

13. The pressure sensing medical device of claim 12 , wherein the proximal region of the tubular member has a first inner diameter, wherein the housing region of the tubular member has a second inner diameter, and wherein the first inner diameter is different from the second inner diameter.

14. The pressure sensing medical device of claim 13 , wherein the first inner diameter is smaller than the second inner diameter.

15. The pressure sensing medical device of claim 14 , wherein the tubular member has a substantially constant outer diameter.

16. The pressure sensing medical device of claim 12 , wherein the deflectable membrane includes a first coating disposed along a first side of the deflectable membrane, a second coating disposed along a second side of the deflectable membrane, or both.

17. The pressure sensing medical device of claim 16 , wherein the first coating includes a metal.

18. The pressure sensing medical device of claim 16 , wherein the first coating includes a fluid-impermeable material.

19. The pressure sensing medical device of claim 12 , wherein the pressure sensor includes a sensor head coupled to the optical fiber.

20. A pressure sensing guidewire, comprising:

a tubular member having a proximal region, a distal region, and a sensor housing region;

wherein the distal region has a plurality of slots formed therein;

an optical fiber extending at least partially through the tubular member, the optical fiber having a distal end region;

a pressure sensor coupled to the distal end region of the optical fiber, the pressure sensor including a sensor head defining a cavity and a deflectable membrane coupled to the sensor head and extending across the cavity;

wherein the deflectable membrane includes a polymer; and

one or more pressure equalization channels extending through the optical fiber and into the cavity so that the one or more pressure equalization channels are in fluid communication with the cavity and with the deflectable membrane.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2019
From: WRIGHT, CORY P.; STARK, NATHANIEL; LI, WENGUANG; YEE, GAYLIN MILDRED; POLLOCK, NEIL; BASHTANOV, MIKHAIL E.; HUSSAIN, FAHAD; LA COUR, METTE FUNDING
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 049117/0507 →
Continuity (2)
Provisional Application 62647169 · Mar 23, 2018
Related Publication 20190290207A1 · Sep 26, 2019
Cited By (31)
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