IP Library › Granted Patent US 11,648,391
Granted Patent B2
US 11,648,391 · App. 16/859,492 · Granted May 16, 2023

Blood pump

Inventors: Ehud Schwammenthal (Ra'anana, IL); Yosi Tuval (Even Yehuda, IL); Daniel Glozman (Kfar Yona, IL)
Assignee: Magenta Medical Ltd.
A61M60/833A61B17/12136A61B17/12168A61M60/135A61M60/205A61M60/216A61M60/422A61M60/857A61B2017/12127A61M2205/505A61M2205/52A61M2205/80A61M2230/005A61M2230/20A61M2230/30
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Quick Facts
Patent No.
US 11,648,391
App. No.
16/859,492
Granted
May 16, 2023
Kind
B2
Abstract

Apparatus and methods are described including a blood pump that includes a catheter, a first impeller disposed on the catheter, and a second impeller disposed on the catheter, proximally to the first impeller. A control unit drives the first and second impellers to pump blood of a subject, by driving the first and second impellers to rotate. The blood pumps is configured such that (a) the first and second impellers are shaped differently from each other when the first and second impellers are in non-radially-constrained configurations, (b) the first and second impellers are sized differently from each other when the first and second impellers are in non-radially-constrained configurations, and/or (c) the first and second impellers are driven by the control unit to rotate under respective rotation conditions that are different from each other. Other applications are also described.

Claims (14)

1. A method comprising:

placing a blood pump inside a body of a subject, the blood pump including:

a motor disposed outside the body of the subject;

a catheter;

a first impeller disposed on the catheter;

a second impeller disposed on the catheter, proximally to the first impeller,

a series of one or more shafts extending from the motor to the first impeller and from the first impeller to the second impeller;

wherein the blood pump has one or more characteristics selected from the group consisting of: (a) the first and second impellers are shaped differently from each other, when the first and second impellers are in non-radially-constrained configurations, and (b) the first and second impellers are sized differently from each other, when the first and second impellers are in non-radially-constrained configurations; and

pumping blood within the subject's body, by driving the first and second impellers to rotate when the first and second impellers are in non-radially-constrained configurations, by the motor imparting rotational motion to the first and second impellers via the one or more shafts.

2. The method according to claim 1 , wherein, when the first and second impellers are in non-radially-constrained configurations, the first and second impellers are of opposing handedness with respect to one another, with one of the impellers being a left-handed impeller, and the other one of the impellers being a right-handed impeller.

3. The method according to claim 1 , wherein driving the first and second impellers to rotate comprises driving the first and second impellers to rotate at the same rotation rate as each other, and wherein, when the first and second impellers are in non-radially-constrained configurations, the first and second impellers are sized differently from one another, such that, when the impellers are rotated at the same rotation rate as each other, flow rates at which blood is pumped by each of the impellers are different from each other.

4. The method according to claim 1 , wherein driving the first and second impellers to rotate comprises driving the first and second impellers to rotate at the same rotation rate as each other, and wherein, when the first and second impellers are in non-radially-constrained configurations, the first and second impellers are shaped differently from one another, such that, when the impellers are rotated at the same rotation rate as each other, flow rates at which blood is pumped by each of the impellers are different from each other.

5. The method according to claim 1 , wherein driving the first and second impellers to rotate comprises driving the first and second impellers to rotate at the same rotation rate as each other, and wherein, when the first and second impellers are in non-radially-constrained configurations, the first and second impellers are oriented differently from one another, such that, when the impellers are rotated at the same rotation rate as each other, flow rates at which blood is pumped by each of the impellers are different from each other.

6. The method according to claim 1 , wherein driving the first and second impellers to rotate comprises driving the first and second impellers to rotate in the same direction as one another.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2020
From: SCHWAMMENTHAL, EHUD; TUVAL, YOSI; GLOZMAN, DANIEL
To: MAGENTA MEDICAL LTD.
Reel/Frame 052504/0284 →
Continuity (7)
Continuation 15888771 · Feb 5, 2018
Continuation 15312034
Continuation In Part PCTIL2014050289 · Mar 13, 2014
Provisional Application 62000192 · May 19, 2014
Provisional Application 61914475 · Dec 11, 2013
Provisional Application 61779803 · Mar 13, 2013
Related Publication 20200254162A1 · Aug 13, 2020
Cited By (20)
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