A61M2205/3666

PORTABLE GAS EXCHANGE DEVICE

The invention relates to a portable gas exchange device for gas exchange of at least one gas from a liquid to a fluid. The gas exchange device comprises a first gas exchange section, for passage of a fluid, and a second gas exchange section for passage of a liquid enriched with a first gas, wherein the fluid has a lower concentration of the first gas than the liquid. A pumping system for transporting a first fluid with a lower concentration of a first gas in the first gas exchange section, in particular in a first fluid circuit, is also configured in the gas exchange device. In a mixing chamber configured in the gas exchange device, the first gas exchange section and the second gas exchange section adjoin one another via a wall designed such that at least the first gas can pass through. A housing serves as the common receptacle at least of the pumping system and the mixing chamber.

FILTER DEVICE AND OXYGEN ENRICHING APPARATUS
20180056221 · 2018-03-01 ·

In a filter device, a disc-shaped filter is disposed on a main flow channel through which a gas flows, and the filter is rotated by a motor. A branch flow channel branches off at the downstream of the filter in the main flow channel, and branched gas is passed through the filter in an opposite direction. Rotation of the filter moves dust collected in a dust gathering region where the filter and the main flow channel overlap with each other to a cleaning region where the filter and the branch flow channel overlap with each other so that the dust is disengaged from the filter. Thus, the filter of the filter device can be automatically cleaned.

NEGATIVE PRESSURE WOUND THERAPY SYSTEM
20240407954 · 2024-12-12 ·

Apparatuses, systems, and methods for providing negative pressure therapy are described. The system includes a dressing configured to be positioned adjacent to a tissue site, and a therapy unit. The therapy unit includes a pump module and a forced air module. The pump module includes a piezoelectric pump sealed between a pump casing, and a lid. The forced air module includes a forced air device configured to generate a fluid flow and a pathway enclosure configured to form a fluid path across the lid. The system further includes a canister with a pathway connection and an airflow pathway extending through the canister. The airflow pathway is lined with an evaporative membrane configured to allow evaporated fluids in the canister to escape to ambient air. The forced air module directs the fluid flow into the canister through the pathway connection and over the evaporative membrane to maximize fluid evaporation.

EXTERNAL DRIVE UNIT FOR AN IMPLANTABLE HEART ASSIST PUMP

An external drive unit for an implantable heart assist pump is provided. The drive unit comprises a motor housing, a transcutaneous drive shaft and a motor for driving the heart assist pump. The motor is connectable to the heart assist pump via the drive shaft, and the motor is arranged inside the motor housing. The drive unit further comprises a catheter surrounding the drive shaft and a purge line for injecting a purge medium into a lumen of the catheter or into a space between the catheter and the drive shaft. The purge line is in thermal contact with an outer surface of the motor housing and/or with an outer surface of a proximal section of the catheter. Due to the thermal contact heat is transferred from the outer surface of the catheter in the proximal section and/or from the outer surface of the motor housing to the purge medium.

REDUCED ROTATIONAL MASS MOTOR ASSEMBLY FOR CATHETER PUMP

A catheter pump is disclosed. The catheter pump can include an impeller and a catheter body having a lumen in which waste fluid flows proximally therethrough during operation of the catheter pump. The catheter pump can also include a drive shaft disposed inside the catheter body. A motor assembly can include a chamber. The motor assembly can include a rotor disposed in the at least a portion of the chamber, the rotor mechanically coupled with a proximal portion of the drive shaft such that rotation of the rotor causes the drive shaft to rotate, the rotor including a longitudinal rotor lumen therethrough. The motor assembly can also comprise a stator assembly disposed about the rotor. During operation of the catheter pump, the waste fluid flows from the lumen into the chamber such that at least a portion of the waste fluid flows proximally through the longitudinal rotor lumen.

MOTOR ASSEMBLY WITH HEAT EXCHANGER FOR CATHETER PUMP
20170239405 · 2017-08-24 ·

A catheter pump is disclosed. The catheter pump can include an impeller and a catheter body having a lumen therethrough. The catheter pump can also include a drive shaft disposed inside the catheter body. A motor assembly can include a chamber. The motor assembly can include a rotor disposed in the at least a portion of the chamber, the rotor mechanically coupled with a proximal portion of the drive shaft such that rotation of the rotor causes the drive shaft to rotate. The motor assembly can also comprise a stator assembly disposed about the rotor. The motor assembly can also include a heat exchanger disposed about the stator assembly, the heat exchanger may be configured to direct heat radially outward away from the stator assembly, the rotor, and the chamber.

CONTINUOUS POSITIVE AIRWAY PRESSURE DEVICES AND METHODS OF USE
20250041551 · 2025-02-06 ·

Disclosed herein is a CPAP device. In some embodiments, the CPAP device may be a bCPAP device. In some embodiments, the device may have one or more features that may assist in heating efficiency. In some embodiments, an air mixture is sent to a humidifier via an inlet conduit prior to introduction to a patient. In some embodiments, a water chamber of the humidifier may be recessed within a compartment. In some embodiments, waste heat from one or more components of the device may be used to pre-heat the air mixture in the inlet conduit.

Motor assembly with heat exchanger for catheter pump
09675739 · 2017-06-13 · ·

A catheter pump is disclosed. The catheter pump can include an impeller and a catheter body having a lumen therethrough. The catheter pump can also include a drive shaft disposed inside the catheter body. A motor assembly can include a chamber. The motor assembly can include a rotor disposed in the at least a portion of the chamber, the rotor mechanically coupled with a proximal portion of the drive shaft such that rotation of the rotor causes the drive shaft to rotate. The motor assembly can also comprise a stator assembly disposed about the rotor. The motor assembly can also include a heat exchanger disposed about the stator assembly, the heat exchanger may be configured to direct heat radially outward away from the stator assembly, the rotor, and the chamber.

External drive unit for an implantable heart assist pump

The application relates to an external drive unit (7) for an implantable heart assist pump. The proposed drive unit (7) comprises a motor (35) for driving the heart assist pump, wherein the motor (35) is connectable to the heart assist pump via a transcutaneous drive shaft (3). The drive unit (7) further comprises a heat spreader (19) comprising a contact surface configured to contact and/or directly contact and/or lie flat against a skin of a patient. The contact surface is connected or connectable with the motor (35) in a thermally-conductive manner to transfer heat generated by the motor (35) to tissue of the patient.

External drive unit for an implantable heart assist pump

An external drive unit for an implantable heart assist pump is provided. The drive unit comprises a motor housing, a transcutaneous drive shaft and a motor for driving the heart assist pump. The motor is connectable to the heart assist pump via the drive shaft, and the motor is arranged inside the motor housing. The drive unit further comprises a catheter surrounding the drive shaft and a purge line for injecting a purge medium into a lumen of the catheter or into a space between the catheter and the drive shaft. The purge line is in thermal contact with an outer surface of the motor housing and/or with an outer surface of a proximal section of the catheter. Due to the thermal contact heat is transferred from the outer surface of the catheter in the proximal section and/or from the outer surface of the motor housing to the purge medium.