BLOOD PUMP WITH RESTART LOCKOUT
20220126085 · 2022-04-28
Inventors
Cpc classification
A61M60/237
HUMAN NECESSITIES
A61M60/422
HUMAN NECESSITIES
A61M60/531
HUMAN NECESSITIES
A61M60/178
HUMAN NECESSITIES
International classification
A61M60/422
HUMAN NECESSITIES
Abstract
A control circuit includes a pump shutdown module responsive to one or more inputs indicating at least from the group consisting of an operational error at the implantable blood pump and an adverse physiological state of a user of the implantable blood pump. The pump shutdown module ceases operation of the implantable blood pump in response to the one or more inputs. A pump restart module configured to resume operation of the implantable blood pump in response to a first pump restart input and a second pump restart input is included. A pump restart lockout module configured to initiate a pump lockout mode in response to a lockout input is included. The pump lockout mode prevents resumption of operation of the implantable blood pump in response to the first pump restart input and allows resumption of operation of the implantable blood pump in response to the second pump restart input.
Claims
1. (canceled)
2. A system comprising: a blood pump configured to pump blood of a patient; and a control circuit configured to: control the blood pump to cease operation, after controlling the blood pump to cease operation, control the blood pump to resume operation in response to receiving a first pump restart input or a second pump restart input different from the first pump restart input; and initiate a pump lockout mode, in which the control circuit: prevents resumption of operation of the blood pump in response to the first pump restart input; and allows resumption of operation of the blood pump in response to the second pump restart input.
3. The system of claim 2, wherein the control circuit is configured to control the blood pump to cease operation in response to detecting at least one of an operational error at the blood pump, an operational error at electronics associated with the blood pump, or an adverse physiological state of the patient.
4. The system of claim 2, wherein the control circuit is configured to control the blood pump to cease operation in response to detecting a low flow condition, a low power condition, a suction condition, a high pressure condition, or an overheating condition.
5. The system of claim 2, wherein the control circuit is configured to initiate the pump lockout mode in response to determining an amount of time since the operation of the blood pump was ceased is greater than or equal to a predetermined amount of time.
6. The system of claim 2, further comprising an interface, wherein the control circuit is configured to receive data indicative of at least one of the first pump restart input or the second pump restart input via the interface.
7. The system of claim 2, further comprising a user interface, wherein the first pump restart input is an automatic input and the second pump restart input is a manual input received by the control circuit from a user via the user interface.
8. The system of claim 7, wherein the second pump restart input is inaccessible to the patient.
9. The system of claim 2, wherein the control circuit is configured to control the blood pump to resume operation in response to receiving the first pump restart input or the second pump restart input by at least determining at least one of a clearance of high pressure condition, a clearance of suction condition, a clearance of low flow condition, or a clearance of overheating condition.
10. The system of claim 2, wherein the second pump restart input includes an instruction to clear the pump lockout mode.
11. The system of claim 10, wherein the first and second pump restart inputs differ in that the second pump restart input includes an instruction to clear the pump lockout mode.
12. The system of claim 2, wherein the control circuit is configured to cause an alert to be provided to the patient or a clinician in response to initiation of the pump lockout mode.
13. A system, comprising: an implantable blood pump; and a control circuit configured to: stop operation of the implantable blood pump in response to detecting a stop condition, after stopping operation of the implantable blood pump, receive a first pump restart input indicating clearance of the stop condition, determine whether a pump lockout mode of the blood pump is activated, in response to determining the pump lockout mode of the blood pump is not activated, restart operation of the blood pump in response to the first pump restart input, in response to determining the pump lockout mode of the blood pump is activated, prevent resumption of operation of the blood pump in response to the first pump restart input, receive a second pump restart input while the pump lockout mode of the blood pump is activated, and control the implantable blood pump to resume operation in response to receiving the second pump restart input.
14. The system of claim 13, wherein the control circuit is further configured to restart operation of the blood pump in response to the second pump restart input when the pump lockout mode of the blood pump is not activated.
15. The system of claim 13, wherein the stop condition comprises at least one of an operational error at the blood pump, an operational error at electronics associated with the blood pump, or an adverse physiological state of the patient.
16. The system of claim 13, wherein the control circuit is configured to initiate the pump lockout mode in response to determining an amount of time since the operation of the blood pump was stopped is greater than or equal to a predetermined amount of time.
17. The system of claim 13, further comprising an interface, wherein the control circuit is configured to receive data indicative of at least one of the first pump restart input or the second pump restart input via the interface.
18. A method comprising: controlling, by a control circuit, a blood pump to cease operation; after controlling the blood pump to cease operation, controlling, by the control circuit, the blood pump to resume operation in response to receiving a first pump restart input or a second pump restart input different from the first pump restart input; and initiating, by the control circuit, a pump lockout mode, wherein in the pump lockout mode: the control circuit prevents resumption of operation of the blood pump in response to the first pump restart input, and the control circuit allows resumption of operation of the blood pump in response to the second pump restart input.
19. The method of claim 18, wherein controlling the blood pump to cease operation comprises controlling the blood pump to cease operation cease operation in response to detecting at least one of an operational error at the blood pump, an operational error at electronics associated with the blood pump, or an adverse physiological state of the patient.
20. The method of claim 18, wherein initiating the pump lockout mode comprises initiating the pump lockout mode in response to determining an amount of time since the operation of the blood pump was ceased is greater than or equal to a predetermined amount of time.
21. The method of claim 18, wherein controlling the blood pump to resume operation in response to receiving the first pump restart input or the second pump restart input comprises controlling the blood pump to resume operation in response to detecting at least one of a clearance of high pressure condition, a clearance of suction condition, a clearance of low flow condition, or a clearance of overheating condition.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0027] A more complete understanding of the present invention, and the attendant advantages and features thereof, will be more readily understood by reference to the following detailed description when considered in conjunction with the accompanying drawings wherein:
[0028]
[0029]
[0030]
[0031]
[0032]
DETAILED DESCRIPTION
[0033] The present disclosure provides control devices, systems and methods that facilitate restarting operation of a blood pump in some, wanted circumstances, while preventing restarting the pump in other, unwanted circumstances. The devices, systems and methods of the present disclosure desirably are also capable of determining when it is desirable to allow or prevent restarting of the pump.
[0034] Now referring to the drawings in which like reference designators refer to like elements, there is shown in
[0035] A motor rotor or pump impeller 122 is disposed within the pumping chamber 103. In operation, blood entering the cannula 107 from a heart ventricle passes into the pumping chamber 103 where it is engaged by the rotating impeller 122. Blood entering the pumping chamber from the cannula 107 is redirected from axial flow exiting the cannula to a radial flow within which the impeller 122 is submerged. The housing 105 may contain an electrical feed through connector 130 for a power and control cable to supply power to the motor 122. The cable feed 150 carrying a plurality of cables is connected to the pump through the connector 130. The cables in the feed 150 may carry electrical power and control instructions to the pump 101.
[0036] Referring now to
[0037] Data 230 may be retrieved, stored or modified by processor 210 in accordance with the instructions 240. The data may also be formatted in any computer-readable format such as, but not limited to, binary values, ASCII or Unicode. Moreover, the data may comprise any information sufficient to identify the relevant information, such as numbers, descriptive text, proprietary codes, pointers, references to data stored in other memories (including other network locations) or information that is used by a function to calculate the relevant data. Although FIG. 2 functionally illustrates the processor and memory as being within the same block, it will be understood that the processor and memory may actually comprise multiple processors and memories that may or may not be stored within the same physical housing. The memory may include one or more media on which information can be stored. In one configuration, the medium holding the instructions retains the instructions in non-transitory form. Some or all of the instructions and data may be stored in a location physically remote from, yet still accessible by, the processor. Similarly, the processor may comprise a collection of processors which may or may not operate in parallel. The control circuit 201 described above may be operated using the methods described herein. It should be understood that some operations may be performed separately from other operations. Moreover, operations may be added or omitted.
[0038] Continuing to refer to
[0039] Another such module may be a pump shutdown module 244 for ceasing operation of the motor of the pump in response to one or more inputs. The one or more inputs may be indicative of an undesirable condition, such as an operational error at the pump or at electronics (or a battery) associated with the pump 101, or an adverse physiological state of the patient (e.g., low flow condition, suction condition, high pressure condition, overheating of internal electronics, or other conditions as described in commonly owned and copending U.S. application Ser. Nos. 13/951,302, 14/294,448, and 14/950,213, the disclosures of which are hereby incorporated by reference herein in its entirety).
[0040] The instructions 240 may further include a pump restart module 246 for resuming or restarting operation of the pump 101 and its motor 122, after operation has been ceased, in response to a restart input. In some examples, the restart input may be automatically generated by the control circuit 201. For instance, if the undesirable condition that prompted ceasing operation was an overheating of the control circuit 201 or a power supply, the control circuit 201 may automatically resume operating the pump 101 and its motor 122 after the temperature of an overheated component drops to a tolerable temperature. For further instance, if the undesirable condition was a power shortage or depletion, the control circuit 201 may automatically resume operation of the pump 101 and its motor 122 when it is provided sufficient power to operate (e.g., is plugged in to a power source). In other examples the restart input may be manually provided by a patient using the pump 101, or by a doctor or clinician of the patient.
[0041] The instructions 240 may further include a pump lockout module 248 for initiating a mode of operation (hereinafter referred to as a lockout mode) in which the pump 101 and its motor 122 cannot be restarted based on one or more restart inputs. The lockout mode may be initiated under conditions in which it may be undesirable to abruptly restart the motor 122, for instance where the pump 101 has been stopped for a duration of time that may increase the risk of thrombosis (clotting) at the pump 101. The lockout mode may be initiated based on a lockout input, which may indicate the amount of time since operation of the pump 101 has ceased exceeding a preset value or predetermined amount of time.
[0042] The lockout mode may eventually be cleared by a different input, referred to as a lockout clearance input, at which point the operation of the pump may be resumed using the pump restart module 246. The lockout clearance input may a restart input, since the result of clearing the lockout mode may be the resumption of operation of the pump 101. Given the aforementioned risks involved with clearing a lockout mode after its initiation, in one configuration, the lockout clearance input may be accessible only to a doctor, clinician, or other person capable of examining and monitoring the patient for health risks when the pump is restarted.
[0043] The control circuit 201 may further include an interface 250 for communicatively connecting the control circuit 201 to one or more other input devices. Inputs, such as data indicating an undesirable condition, or the manual inputs described herein (e.g., restart inputs, lockout clearance inputs, etc.) may be provided to the control circuit 201 via the interface 250. The interface 250 may also provide for outputting of signals, such that the control circuit 201 may alert a patient or clinician when an undesirable condition arises, and/or when the pump 101 ceases operation or initiates lockout mode. The interface 250 may be an analog interface (e.g., audio interface) or a digital interface, such as Bluetooth. TCP/IP, wi-fi, and others. Where the control circuit 201 is implemented in an implantable structure adapted to be disposed within the body of the patient, the interface 250 may include known elements for communicating signals through the skin of the patient.
[0044] Referring now to
[0045] In the example of
[0046] If one or more criteria are met, for example, the pump 101 remaining in the shutdown state 320 for a threshold amount of time without transitioning to one of the first or second restart states 340, 350, then a pump restart lockout module 248 of the control circuit 201 may further transition the pump 101 to lockout state 330. The lockout state 330 may differ from the shutdown state 320 in that the control circuit 201 is prevented from transitioning to the first restart state 340 from the lockout state, that is, the control circuit 201 is prevented from responding to one of the first pump restart input and then prompting a transition to the first restart state.
[0047] As explained above, it may be beneficial to enable the control circuit 201, patient or clinician to easily and readily initiate the first restart state 340 from shutdown state 320, while at other times preventing initiation of the first restart state 340 from lockout state 330. Access to initiating the second restart state may be limited to those situations in which the patient has been examined and monitored when the pump 101 is restarted, or at least that an informed decision has been made to restart the pump 101 in view of the risks therewith.
[0048] Referring now to
[0049] Referring now to
[0050] In some cases, the second pump restart input may be an instruction to clear the lockout mode, which is interpreted by the control circuit 201 as an instruction to also restart the pump 101. In particular, where the first pump restart input is provided automatically, the instruction to clear the lockout mode may automatically result in the control circuit 201 responding to the pre-existing first pump restart input, which until clearance of the lockout mode was continuously overridden. In other cases, such as where the first pump restart input is manually entered, the second pump restart input may be a combination of an instruction to clear the lockout mode, followed by manual entry the first pump restart input. Ultimately, it should be understood that the first pump restart input and the second pump restart input do not necessarily constitute different ways of entering instructions to restart the pump, or different codes for restarting the pump. Rather, the difference between the first pump restart input and the second pump restart may be the presence of an instruction to clear the lockout mode and thus the second pump restart input is the same input as the first pump restart input with the addition of the instruction to clear the lockout mode.
[0051] In the above examples, the second pump restart input has been described as an input which the control circuit 201 cannot automatically execute, or which the patient cannot directly access, but rather must indirectly accessed by seeking assistance from a medical professional. However, it is also possible that the second pump restart input is technically accessible to the patient or clinician, but that the patient and clinician are simply trusted not to restart the pump 101 on without the patient first being examined when the pump 101 is in the lockout mode. In such a case, the lockout mode may simply prevent restarting of the pump 101 using a standard restart procedure (e.g., based on the above-described first pump restart input).
[0052] Although the invention herein has been described with reference to particular embodiments, it is to be understood that these embodiments are merely illustrative of the principles and applications of the present invention. It is therefore to be understood that numerous modifications may be made to the illustrative embodiments and that other arrangements may be devised without departing from the spirit and scope of the present invention as defined by the appended claims.