IP Library Granted Patent US 11,930,999
Granted Patent B2
US 11,930,999 · App. 18/062,115 · Granted Mar 19, 2024

Steerable ultrasound attachment for endoscope

Inventors: Stephen Edward Steinberg (Boca Raton, FL); Scott Sutherland Corbett, III (Portland, OR)
Assignee: EndoSound, Inc.
A61B1/00101A61B1/00097A61B1/00098A61B1/0014A61B1/0051A61B1/0057A61B1/01A61B8/4422A61B8/4466A61B10/04A61B1/00103A61B1/00133A61B1/00135A61B1/018A61B1/053A61B1/273A61B8/12A61B8/4411A61B8/445A61B2010/045A61B2017/0034
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Quick Facts
Patent No.
US 11,930,999
App. No.
18/062,115
Granted
Mar 19, 2024
Kind
B2
Abstract

A method of providing and processing an ultrasound capable endoscope assembly that uses an endoscope having a proximal and a distal end, and that has been used previously. The endoscope is cleansed to a level appropriate for re-use within a human body. The method also uses an unused ultrasound assembly, sealed in antiseptic packaging, and which includes a multiple signal pathway connector; an ultrasound transducer head including an ultrasound transducer; and a set of signal pathways, extending from the ultrasound transducer to the multiconductor electrical connector. In the method, the ultrasound assembly is to the endoscope, so that the set of signal pathways extends along the elongate body of the endoscope and the ultrasound transducer head is attached at the distal end. After use, the ultrasound assembly is detached from the endoscope and permanently disposed.

Claims (21)

1. An ultrasound capable endoscope attachment assembly, comprising:

an ultrasound assembly, said ultrasound assembly including:

a multiple signal pathway connector;

an ultrasound transducer head including an ultrasound transducer; and

a set of signal pathways, extending from said ultrasound transducer head to said multiple signal pathway connector; and

an attachable imaging head movement sub-assembly configured to be selectively attached to an endoscope, wherein said imaging head movement sub-assembly is further configured to be selectively attached to said ultrasound assembly, wherein said imaging head movement sub-assembly is further configured to move said ultrasound transducer independent of said endoscope when selectively attached to said ultrasound assembly and said endoscope, and wherein said imaging head movement sub-assembly can be disposed of when selectively detached from said ultrasound assembly and said endoscope after use.

2. The ultrasound capable endoscope attachment assembly of claim 1 , wherein said ultrasound assembly further comprises a flexible neck, to which said ultrasound transducer head is physically attached, and wherein said imaging head movement sub-assembly comprises a tension member extending from said ultrasound transducer head to a proximal end at said proximal end of said endoscope, and wherein applying force to said tension member causes said ultrasound transducer head to change position.

3. The ultrasound capable endoscope attachment assembly of claim 1 , wherein said signal pathways are electrical conductors.

4. The ultrasound capable endoscope attachment assembly of claim 3 , wherein said electrical conductors are coax cables.

5. The ultrasound capable endoscope attachment assembly of claim 3 wherein said electrical conductors are flex circuit traces.

6. The ultrasound capable endoscope attachment assembly of claim 1 , wherein said ultrasound assembly further includes an attachment element, and said ultrasound assembly is attached to said endoscope, at least in part, by attaching said attachment element to a distal end of said endoscope.

7. The ultrasound capable endoscope attachment assembly of claim 6 , wherein said attachment element is a clip sized and shaped to engage to said distal end of said endoscope.

8. The ultrasound capable endoscope attachment assembly of claim 1 , wherein said endoscope further hosts a needle and a mechanism for pushing said needle out of said endoscope, for taking a biopsy.

9. The ultrasound capable endoscope attachment assembly of claim 8 , wherein said ultrasound assembly further comprises a flexible neck, to which said ultrasound transducer head is physically attached, and further wherein said neck defines an aperture that can be aligned for passage of said needle through said neck.

10. The ultrasound capable endoscope attachment assembly of claim 9 , wherein said aperture is an elongate oval, and wherein said needle can pass through said aperture when said neck is bent in any degree selected from a long range of degree of bending.

11. The ultrasound capable endoscope attachment assembly of claim 9 , wherein when said neck is flexed by a tension member and said needle is passed through said aperture, said needle is visible in a field of view of said ultrasound transducer, thereby permitting a user to more accurately guide said needle.

12. The ultrasound capable endoscope attachment assembly of claim 1 , wherein said ultrasound transducer is a capacitive micromachined ultrasonic transducer.

13. The ultrasound capable endoscope attachment assembly of claim 1 , wherein said endoscope is configured to be cleansed and used again when said imaging head movement sub-assembly is selectively detached from said endoscope after use.

14. The ultrasound capable endoscope attachment assembly of claim 1 , wherein said ultrasound assembly is configured to be cleansed and used again when said imaging head movement sub-assembly is selectively detached from said ultrasound assembly after use.

15. The ultrasound capable endoscope attachment assembly of claim 14 , further comprising a sealable package configured to contain said cleansed ultrasound assembly before it is used again.

16. The ultrasound capable endoscope attachment assembly of claim 1 , wherein said endoscope is a duodenoscope.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2023
From: STEINBERG, STEPHEN EDWARD; CORBETT, SCOTT SUTHERLAND, III
To: ENDOSOUND, INC.
Reel/Frame 063037/0160 →
Continuity (4)
Continuation 16523971 · Jul 26, 2019
Continuation In Part PCTUS2019027331 · Apr 12, 2019
Continuation In Part 15951347 · Apr 12, 2018
Related Publication 20230277041A1 · Sep 7, 2023