A61M60/562

INDWELLING HYPER-DIMENSIONAL CARDIAC PHYSIOLOGIC DATA LOGGING AND TRANSMISSION SYSTEM AND METHOD OF DOING BUSINESS
20210290934 · 2021-09-23 · ·

A system to optimize the operation of counter pulsatile cardiac assist devices includes a collection of intracorporeal and extracorporeal physiologic sensors that generate data. A control system in electrical communication with the collection of intracorporeal and extracorporeal physiologic sensors generates control signals for the counter pulsatile cardiac assist device based on a counter pulsating aortic pumping element based on the data. A low power transmitter is in electrical communication with the collection of sensors and the control system and sends the generated data and the control signals to an external computer for aggregation and analysis. The analysis is based on a set of inputs from an implanted counter pulsatile cardiac assist devices.

Chamber for artificial circulatory assistance and membrane

A novel artificial circulatory assistance chamber for various uses associated with cardiovascular procedures, having a rigid capsule with a base and a dome, with blood inlet connectors and blood outlet connectors, and respective one-way valves. The rigid capsule contains an impermeable membrane that divides the capsule into a blood compartment and an outer compressible compartment that is filled with a volume of gas/liquid.

Method for determining operational parameters of a blood pump

Methods and apparatuses for determining operational parameters of a blood pump comprising a rotor which transports the blood are provided. The change in the behaviour of at least one first and one second operational parameter, independently from each other, of the pump, is determined. A determination of the flow through the pump and/or the difference in pressure across the pump and/or the viscosity of the blood takes into account the determined change in behaviour of the at least two operational parameters. A modelling for a dynamic model of the known quantities may be carried out and an estimation method using a Kalman filter may be used.

Method for managing a cardiac pump
11097093 · 2021-08-24 · ·

In a method for managing a cardiac pump intended to assist the heart of a patient, the cardiac pump sends pressurized blood at a flow rate proportional to the speed of rotation Vrpm of the pump through the aortic valve of the heart. The steps, during a same ventricular systole, include: detecting mitral valve closure, rotational speed Vrpm of the pump being strictly less than a maximum value Vrpm max, increasing Vrpm of the pump such that, at time t2, after the time t corresponding to the closing of the mitral valve, the speed of rotation of the pump is equal, or substantially equal, to the maximum value Vrpm max of the speed of rotation, and keeping the speed of rotation Vrpm of the pump at this maximum value Vrpm max for at least a portion of the time period T during which the aortic valve is open.

Communication methods and architecture for heart treatment systems

The present invention generally relates to heart treatment systems. In some aspects, methods and systems are provided for facilitating communication between implanted devices. For example, an implantable cardiac rhythm management device may be configured to communicate with an implantable blood pump. The implantable cardiac rhythm management device may deliver heart stimulation rate information in addition to information associated with any detected abnormalities in heart function. In response, the pump may be configured to adjust pumping by the pump to better accommodate a patient's particular needs.

Systems and Methods for Treating or Preventing Right and/or Left Cardiac Overload and Ventricular Disfunction

Devices, systems and methods for controlling or preventing left and/or right ventricular overload with and without concurrent extracorporeal life support.

Linear cardiac assist pulsatile pump
11839708 · 2023-12-12 · ·

Described herein are pumps that linearly reciprocate to assist with circulating blood within the body of a patient. Red blood cell damage may be avoided or minimized by such linear pump movement. The linearly reciprocating movement may also generate a pulsatile pumping cycle that mimics the natural pumping cycle of the heart. The pumps may be configured to reside at various body locations. For example, the pumps may be situated within the right ventricle, the left ventricle, the ascending aorta, the descending aorta, the thoracic aorta, or the abdominal aorta. In some instances, the pump may reside outside the patient.

Linear cardiac assist pulsatile pump
11839708 · 2023-12-12 · ·

Described herein are pumps that linearly reciprocate to assist with circulating blood within the body of a patient. Red blood cell damage may be avoided or minimized by such linear pump movement. The linearly reciprocating movement may also generate a pulsatile pumping cycle that mimics the natural pumping cycle of the heart. The pumps may be configured to reside at various body locations. For example, the pumps may be situated within the right ventricle, the left ventricle, the ascending aorta, the descending aorta, the thoracic aorta, or the abdominal aorta. In some instances, the pump may reside outside the patient.

ARRANGEMENT WITH A BLOOD PUMP AND A GAS EXCHANGER FOR EXTRACORPOREAL MEMBRANE OXYGENATION
20230398278 · 2023-12-14 ·

The invention relates to an arrangement having a blood pump and a gas exchanger for extracorporeal membrane oxygenation. According to the invention, the blood pump is designed as a pulsatile blood pump and is arranged with the gas exchanger in the same housing. The pulsatile blood pump and the gas exchanger are preferably connected to the same gas source so that the blood pump can be pneumatically driven. The novel ECMO system has a simple design, is flexible, and in particular can be used directly on the patient.

ARRANGEMENT WITH A BLOOD PUMP AND A GAS EXCHANGER FOR EXTRACORPOREAL MEMBRANE OXYGENATION
20230398278 · 2023-12-14 ·

The invention relates to an arrangement having a blood pump and a gas exchanger for extracorporeal membrane oxygenation. According to the invention, the blood pump is designed as a pulsatile blood pump and is arranged with the gas exchanger in the same housing. The pulsatile blood pump and the gas exchanger are preferably connected to the same gas source so that the blood pump can be pneumatically driven. The novel ECMO system has a simple design, is flexible, and in particular can be used directly on the patient.