DEVICE TO ASSIST THE PERFORMANCE OF A HEART
20230374990 · 2023-11-23
Inventors
Cpc classification
F04D13/027
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61M60/405
HUMAN NECESSITIES
A61M60/237
HUMAN NECESSITIES
A61M60/422
HUMAN NECESSITIES
A61M60/17
HUMAN NECESSITIES
A61M60/419
HUMAN NECESSITIES
A61M60/13
HUMAN NECESSITIES
A61M60/414
HUMAN NECESSITIES
A61M60/148
HUMAN NECESSITIES
A61M60/523
HUMAN NECESSITIES
International classification
F04D13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61M60/405
HUMAN NECESSITIES
A61M60/422
HUMAN NECESSITIES
A61M60/523
HUMAN NECESSITIES
A61M60/148
HUMAN NECESSITIES
A61M60/13
HUMAN NECESSITIES
A61M60/861
HUMAN NECESSITIES
A61M60/17
HUMAN NECESSITIES
A61M60/237
HUMAN NECESSITIES
Abstract
A device to assist the performance of a heart with at least one pump that is formed as a rotary pump and driven via a magneto coupling.
Claims
1. A system for assisting the blood circulation of a heart, comprising: a heart assist pump device deliverable to the heart and comprising: an inflow tube defining a blood inflow path and having a suction end insertable into a ventricle of the heart; a magnetically driven rotor axially aligned with the inflow tube and being spaced apart from the suction end when the suction end of the inflow tube is inserted into the ventricle, the magnetically driven rotor being rotatable within a surrounding rotor housing to act upon blood flowing from the inflow tube toward the rotor, the magnetically driven rotor being rotatable about a central axis and being rigidly coupled to and axially adjacent to a first magnetic device that is located within the surrounding rotor housing; a second magnetic device axially aligned with the inflow tube and positioned to magnetically drive rotation of the magnetically driven rotor via a magneto coupling with the first magnetic device while being spaced apart and sealed from both the magnetically driven rotor and the first magnetic device by at least one sealing wall, the second magnetic device being positioned axially spaced apart from the magnetically driven rotor; a blood outflow port positioned radially adjacent the magnetically driven rotor such that blood driven by the magnetically driven rotor is configured to exit the surrounding rotor housing in a direction transverse to the central axis of the magnetically driven rotor, wherein when the magnetically driven rotor is rotated, the magnetically driven rotor remains adjacent to and spaced apart from the surrounding rotor housing by the blood flowing from the inflow tube and to the blood outflow port; and an external control unit configured to regulate operation of the second magnetic device, wherein the external control unit is connectable to the heart assist pump device for controlling the second magnetic device to thereby magnetically drive the rotation of the magnetically driven rotor via the magneto coupling with the first magnetic device.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0009] The invention is explained in further detail below by use of an examplary embodiment which is illustrated diagrammatically in the drawings, in which
DETAILED DESCRIPTION
[0010] In
[0011] The volumetric measurement in the cardiac chamber allows differences to be reliably detected between the diastolic and systolic volume and allows corresponding correction signals to be made available for the output of the synchronised fluid pump 7.
[0012] Furthermore, in the control circuit 5, corresponding fixed values can be provided, such as for example a defined cardiac output, which is referred to on deviation of the measured cardiac output to control the pump.
[0013] A retroperfusion can take place via a conventional balloon catheter which is occluded in a correspondingly synchronized manner, so that the directed return is in fact guaranteed during the diastole. Hereby the corresponding measurement values for the heart rate or for the correct moment of the diastole can be obtained from ECG data.
[0014] In
[0015] In