MECHANICAL CIRCULATORY SUPPORT
Mechanical circulatory supports configured to operate in series with the native heart are disclosed. In an embodiment, a centrifugal pump is used. In an embodiment, inlet and outlet ports are connected into the aorta and blood flow is diverted through a lumen and a centrifugal pump between the inlet and outlet ports.
1 . A mechanical circulatory support, comprising:
a body portion defining an internal lumen;
an inlet port in fluid communication with the lumen;
an outlet port in fluid communication with the lumen; and
a pump for driving fluid flow from the inlet port towards the outlet port, wherein:
the inlet port is arranged to provide a connection, or is in a state of connection, into the aorta of a human body.
2 . The supporting according to claim 1 , wherein the inlet port is arranged to provide the connection, or is in the state of connection, into the descending aorta of the human body.
3 . The support according to claim 2 , wherein:
the outlet port is arranged to provide a connection, or is in a state of connection, into the vascular system at a position other than the descending aorta.
4 . The support according to claim 3 , wherein:
the position other than the descending aorta comprises a position in the ascending aorta.
5 . The support according to claim 2 , wherein:
the outlet port is arranged to provide a connection, or is in a state of connection, into the descending aorta, downstream of the inlet port.
6 . The support according to claim 1 , wherein the inlet port is arranged to provide the connection, or be in the state of connection, at a position below the diaphragm.
7 . The support according to claim 1 , wherein the outlet port is arranged to provide the connection, or be in the state of connection, at a position upstream of the renal arteries or the splanchnic arteries.
8 . The support according to claim 1 , wherein:
the inlet and outlet ports are arranged to provide connections, or be in states of connection, at respective upstream and downstream positions in a section of vasculature such that, when connected, blood flows between the upstream and downstream positions partly through the aorta and partly through the internal lumen of the support.
9 . The support according to claim 1 , wherein:
the inlet and outlet ports are arranged to provide connections, or be in states of connection, at respective upstream and downstream positions in a section of vasculature such that, when connected, blood is diverted so as to flow entirely through the internal lumen of the support between the upstream and downstream positions.
10 - 11 . (canceled)
12 . The support according to claim 1 , comprising:
a plurality of the outlet ports, each outlet port being arranged to provide a connection, or be in a state of connection, into the vascular system at a different position; and
one or more flow characteristic setting members for controlling the distribution of flow between the pump and each of the outlet ports.
13 . The support according to claim 12 , wherein the one or more flow characteristic setting members are each configured to control one or more of the following: flow resistance, flow compliance, flow inductance.
14 . A mechanical circulatory support, comprising:
a pump configured to be installed, or in a state of installation, in a human body and configured to operate in series with the native heart; and
a device for electrically driving the pump that is configured to be mounted to the body.
15 . The support according to claim 14 , wherein the pump is configured to be installed, or is in a state of installation, within the descending aorta.
16 . (canceled)
17 . The support according to claim 1 , further comprising a controller for controlling operation of the pump, wherein the controller is configured to be installed under the skin.
18 - 19 . (canceled)
20 . The support according to claim 1 , configured to provide a pumping output equivalent to or greater than that required by the body, so that no additional pumping from the native heart is required.
21 . The support according to claim 1 , configured to provide a pumping output less than the total required by the body, so as to supplement pumping provided by the native heart.
22 . The support according to claim 1 , further comprising:
a power receiving member configured to receive power for driving the pump transcutaneously, wherein the power receiving member is configured also to receive power for driving the pump percutaneously.
23 . (canceled)
24 . The support according to claim 1 , further comprising:
a power receiving member configured to receive power for driving the pump percutaneously.
25 . The support according to claim 1 , wherein the pump is configured to provide a continuous flow.
26 . The support according to claim 1 , wherein the pump is configured to provide a pulsatile flow.
27 . The support according to claim 1 , wherein the pump is at least one of the following: a centrifugal pump, a mixed flow pump, a helical pump, and an axial pump.
28 - 31 . (canceled)