Drive cable for blood pump

US11806117B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11806117-B2
Application numberUS-202117180041-A
CountryUS
Kind codeB2
Filing dateFeb 19, 2021
Priority dateJan 10, 2018
Publication dateNov 7, 2023
Grant dateNov 7, 2023

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Apparatus and methods are described including a blood pump that includes an axial shaft, an impeller disposed on the axial shaft, a frame disposed around the impeller, and a motor disposed outside a subject's body, and configured to drive the impeller to pump blood from a distal end of the impeller to a proximal end of the impeller. A drive cable extends from outside the subject's body to the axial shaft, and is configured to impart rotational motion from the motor to the impeller by rotating. The drive cable is held in a preloaded state with respect to the frame, such that initiation of pumping of blood by rotation of the impeller does not cause the drive cable to axially elongate. Other applications are also described.

First claim

Opening claim text (preview).

The invention claimed is: 1. An apparatus comprising: a blood pump comprising: an axial shaft; an impeller disposed on the axial shaft; a frame disposed around the impeller; a motor configured to be disposed outside a body of the subject, and configured to drive the impeller to pump blood from a distal end of the impeller to a proximal end of the impeller; a drive cable configured to extend from outside the subject's body to the axial shaft, the drive cable being configured to impart rotational motion from the motor to the impeller by rotating, the drive cable being held in a preloaded state with respect to the frame, such that initiation of pumping of blood by rotation of the impeller does not cause the drive cable to axially elongate relative to a length of the drive cable prior to initiation of the rotation of the impeller. 2. The apparatus according to claim 1 , wherein the motor is configured to rotate the impeller in a given direction of rotation, and at least a portion of the drive cable comprises a plurality of wires disposed in a coiled configuration that is such that, in response to the drive cable rotating in the given direction of rotation, the plurality of wires disposed in the coiled configuration at least partially unwind, such that the drive cable shortens axially. 3. The apparatus according to claim 2 , wherein the blood pump further comprises an outer tube disposed around the drive cable, and fluid disposed between the outer tube and the drive cable, and wherein the coiled configuration of the wires is such that, in response to the drive cable rotating in the given direction of rotation, the plurality of wires are configured to pump the fluid toward a proximal end of the drive cable. 4. The apparatus according to claim 2 , wherein: the plurality of wires that are disposed in the coiled configuration are coupled to the axial shaft; and the coiled wires are shaped such that as the coiled wires approach an interface between the drive cable and the axial shaft, a pitch of the wires is increased, such that stress at locations at which the wires of the drive cable are coupled to the axial shaft is reduced, relative to if the pitch of the wires were not increased. 5. The apparatus according to claim 2 , wherein: the plurality of wires that are disposed in the coiled configuration are coupled to the axial shaft; and the axial shaft defines grooves at an interface between the drive cable and the axial shaft, the grooves being configured such that stress generated by the wires at the interface is spread over radii of the grooves. 6. The apparatus according to claim 2 , wherein: the drive cable comprises a first portion configured to be disposed at least partially within a curved portion of vasculature of the subject, and a second portion configured to be disposed at least partially within a straight portion of vasculature of the subject; and the first portion of the drive cable comprises a first number of wires disposed in the coiled configuration, and the second portion of the drive cable comprises a second number of wires disposed in the coiled configuration, the first number being lower than the second number. 7. The apparatus according to claim 6 , wherein: the blood pump further comprises an interface component; the first and second portions of the drive cable are coupled to each other via the interface component; and the interface component defines grooves at an interface between at least one of the drive cable portions and the interface component, the grooves being configured such that stress generated by the wires at the interface is spread over radii of the grooves. 8. The apparatus according to claim 6 , wherein: the blood pump further comprises an interface component; the first and second portions of the drive cable are coupled to each other via the interface component; and the coiled wires of at least one of the portions of the drive cable are shaped such that, as the coiled wires approach the interface component, a pitch of the wires is increased, such that stress at locations at which the wires are coupled to the interface component is reduced relative to if the pitch of the wires were not increased. 9. The apparatus according to claim 6 , wherein: the impeller is configured to be placed in a left ventricle of a subject; the motor is configured to drive the impeller to pump blood from the subject's left ventricle to an aorta of the subject by rotating the impeller; the first portion of the drive cable is configured to be disposed at least partially within an aortic arch of the subject; and the second portion of the drive cable is configured to be disposed at least partially within a descending aorta of the subject. 10. The apparatus according to claim 6 , wherein a length of the first portion of the drive cable is between 20 cm and 40 cm. 11. The apparatus according to claim 6 , wherein a length of the second portion of the drive cable is between 60 cm and 100 cm. 12. The apparatus according to claim 6 , wherein the first portion of the drive cable comprises between 4 and 8 wires disposed in the coiled configuration, and the second portion of the drive cable comprises between 8 and 12 wires disposed in the coiled configuration. 13. The apparatus according to claim 1 , wherein the impeller is configured to pump blood from a first location to a second location, and wherein the impeller is configured to undergo axial back-and-forth motion within the frame, in response to cyclical changes in a pressure difference between the first location and the second location. 14. The apparatus according to claim 12 , wherein the impeller is configured to pump blood from a left ventricle of the subject to an aorta of the subject, and wherein the impeller is configured to undergo the axial back-and-forth motion within the frame, in response to cyclical changes in a pressure difference between the subject's left ventricle and the subject's aorta. 15. A method comprising: providing a blood pump comprising: an axial shaft, an impeller disposed on the axial shaft, a frame disposed around the impeller, and a drive cable extending from outside the subject's body to the axial shaft, the drive cable being held in a preloaded state with respect to the frame; placing the blood pump into a body of a subject; and driving the impeller to pump blood from a distal end of the impeller to a proximal end of the impeller by imparting rotational motion to the impeller via the drive cable, the preloaded state of the drive cable being such that initiation of pumping of blood by rotation of the impeller does not cause the drive cable to axially elongate relative to a length of the drive cable prior to initiation of the rotation of the impeller. 16. The method according to claim 15 , wherein imparting rotational motion to the impeller via the drive cable comprises imparting rotational motion to the impeller via the drive cable in a given direction of rotation, and wherein at least a portion of the drive cable includes a plurality of wires disposed in a coiled configuration that is such that, in response to the drive cable rotating in the given direction of rotation, the plurality of wires disposed in the coiled configuration at least partially unwind, such that the portion of the drive cable shortens axially. 17. The method according to claim 16 , wherein: the blood pump further includes an outer tube disposed around the drive cable, and fluid disposed between the outer tube and the drive cable; and driving the impeller to pump blood from the distal end of

Assignees

Inventors

Classifications

  • Vanes or blades, e.g. static flow guides · CPC title

  • A61B5/0215Primary

    by means inserted into the body · CPC title

  • inside a blood vessel, e.g. using grafting · CPC title

  • in line with a blood vessel using resection or like techniques, e.g. permanent endovascular heart assist devices · CPC title

  • the blood flow through the rotating member having mainly axial components, e.g. axial flow pumps · CPC title

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What does patent US11806117B2 cover?
Apparatus and methods are described including a blood pump that includes an axial shaft, an impeller disposed on the axial shaft, a frame disposed around the impeller, and a motor disposed outside a subject's body, and configured to drive the impeller to pump blood from a distal end of the impeller to a proximal end of the impeller. A drive cable extends from outside the subject's body to the a…
Who is the assignee on this patent?
Magenta Medical Ltd
What technology area does this patent fall under?
Primary CPC classification A61B5/0215. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Nov 07 2023 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).