IP Library › Granted Patent US 10,335,042
Granted Patent B2
US 10,335,042 · App. 14/801,269 · Granted Jul 2, 2019

Methods, devices and systems for sensing, measuring and/or characterizing vessel and/or lesion compliance and/or elastance changes during vascular procedures

Inventors: Victor L. Schoenle (Greenfield, MN); Thomas B. Hoegh (Edina, MN); Bruce J. Persson (Shoreview, MN); Kayla Eichers (Minneapolis, MN); Matthew Tilstra (Rogers, MN); Richard C. Mattison (Zimmerman, MN); Joseph P. Higgins (Minnetonka, MN); Michael J. Grace (Brooklyn Park, MN); Matthew Saterbak (Robbinsdale, MN); Matthew D. Cambronne (St. Anthony, MN); Robert E. Kohler (Lake Elmo, MN)
Assignee: Cardiovascular Systems, Inc.
A61B5/02007A61B5/0066A61B5/02152A61B5/1076A61B5/6853A61B8/12G16H50/20A61B5/062A61B2017/00022A61B2034/2051A61B2090/065G06F19/3481
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Quick Facts
Patent No.
US 10,335,042
App. No.
14/801,269
Filed
Jul 16, 2015
Granted
Jul 2, 2019
Kind
B2
Art Unit
3791
USPC
600/481
Abstract

The present system is directed in various embodiments to methods, devices and systems for sensing, measuring and evaluating compliance in a bodily conduit. In other embodiments, the methods, devices and systems sense, measure, determine, display and/or interpret compliance in a bodily conduit and/or a lesion within the bodily conduit. In all embodiments, the sensing, measuring, determining, displaying and/or interpreting may occur before, during and/or after a procedure performed within the bodily conduit. An exemplary conduit comprises a blood vessel and an exemplary procedure comprises a vascular procedure such as atherectomy, angioplasty, stent placement and/or biovascular scaffolding.

Claims (29)

1. A method for assessing characteristics of a blood vessel in a patient during a rotational medical procedure performed within the blood vessel, comprising:

providing a rotational medical system comprising a rotational drive shaft and a prime mover adapted to rotate the rotational drive shaft;

providing at least one magnet, wherein the at least one magnet is located within the blood vessel and adapted to rotate when the rotational drive shaft rotates;

providing at least one magnetic field sensor;

generating a magnetic field by rotating the rotational drive shaft and the at least one magnet;

sensing with the at least one magnetic field sensor, the location of the at least one magnet as it rotates and obtaining a first set of test data;

determining, with the sensed location of the at least one magnet, at least one of the following characteristics of the blood vessel within the group consisting of: the diameter of the blood vessel, the cross-sectional shape of the blood vessel, the cross-sectional shape of an occlusion within the blood vessel, the compliance of the blood vessel, the elastance of the blood vessel, whether the blood vessel is at least partially calcified, the relative amount of calcification, the frequency with which the at least one magnet impacts the wall of the blood vessel.

2. The method of claim 1 , further comprising obtaining a second set of test data, and comparing the second set of test data to the first set of test data.

3. The method of claim 2 , further comprising obtaining at least one set of reference data and comparing the second set of test data to the at least one set of reference data.

4. The method of claim 2 , further comprising monitoring the progress of the rotational medical procedure in real time.

5. The method of claim 2 , further comprising using the obtained sets of test data to assess the completeness of the rotational medical procedure.

6. The method of claim 2 , wherein the rotational drive shaft comprises at least one abrasive element, wherein the at least one magnet is located on, in or near the at least one abrasive element.

7. The method of claim 1 , further comprising obtaining at least one set of reference data and comparing the first set of test data to the at least one set of reference data.

8. The method of claim 1 , wherein the rotational medical procedure comprises rotational atherectomy and the rotational medical system comprises a rotational atherectomy system.

9. A method for assessing characteristics of a blood vessel in a patient during a rotational medical procedure performed within the blood vessel, comprising:

providing a rotational medical system comprising a rotational drive shaft and a prime mover adapted to rotate the rotational drive shaft;

providing at least one field emitter, wherein the at least one field emitter is located within the blood vessel and adapted to rotate when the rotational drive shaft rotates;

providing at least one field emitter sensor located external to the patient;

generating an emitted field by rotating the rotational drive shaft and the at least one magnet;

sensing with the at least one field sensor, the location of the at least one field emitter as it rotates and obtaining a first set of test data;

determining, with the sensed location of the at least one field emitter, at least one of the following characteristics of the blood vessel within the group consisting of: the diameter of the blood vessel, the cross-sectional shape of the blood vessel, the cross-sectional shape of an occlusion within the blood vessel, the compliance of the blood vessel, the elastance of the blood vessel, whether the blood vessel is at least partially calcified, the relative amount of calcification, the frequency with which the at least one field emitter impacts the wall of the blood vessel.

10. The method of claim 9 , wherein the at least one field emitter comprises a radiofrequency (RF) emitter and the at least one field sensor comprises an RF sensor.

11. The method of claim 10 , further comprising obtaining a second set of test data, and comparing the second set of test data to the first set of test data.

12. The method of claim 11 , further comprising obtaining at least one set of reference data and comparing the second set of test data to the at least one set of reference data.

13. The method of claim 11 , further comprising monitoring the progress of the rotational medical procedure in real time.

14. The method of claim 9 , further comprising obtaining at least one set of reference data and comparing the first set of test data to the at least one set of reference data.

15. The method of claim 14 , further comprising using the obtained sets of test data to assess the completeness of the rotational medical procedure.

16. The method of claim 15 , wherein the rotational medical procedure comprises rotational atherectomy and the rotational medical system comprises a rotational atherectomy system.

17. The method of claim 16 , wherein the rotational drive shaft comprises at least one abrasive element, wherein the at least one RF field emitter is located on, in or near the at least one abrasive element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2015
From: SCHOENLE, VICTOR L.; HOEGH, THOMAS B.; PERSSON, BRUCE J.; EICHERS, KAYLA; TILSTRA, MATTHEW; MATTISON, RICHARD C.; HIGGINS, JOSEPH P.; GRACE, MICHAEL J.; SATERBAK, MATTHEW; CAMBRONNE, MATTHEW D.; KOHLER, ROBERT E.
To: CARDIOVASCULAR SYSTEMS, INC.
Reel/Frame 036678/0900 →
Continuity (8)
Continuation In Part 14315774 · Jun 26, 2014
Provisional Application 62026288 · Jul 18, 2014
Provisional Application 62040598 · Aug 22, 2014
Provisional Application 62061883 · Oct 9, 2014
Provisional Application 62119635 · Feb 23, 2015
Provisional Application 61871529 · Aug 29, 2013
Provisional Application 61840693 · Jun 28, 2013
Related Publication 20160183807A1 · Jun 30, 2016
Cited By (29)
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