Hemocath Ltd.

Canada

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IPC Class
A61B 5/0215 - Measuring pressure in heart or blood vessels by means inserted into the body 9
A61B 5/00 - Measuring for diagnostic purposes Identification of persons 8
A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition 6
A61F 2/24 - Heart valves 5
A61M 25/10 - Balloon catheters 5
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Found results for  patents

1.

Multi-sensor catheter for right heart and pulmonary artery catheterization

      
Application Number 17765057
Grant Number 12402797
Status In Force
Filing Date 2020-09-29
First Publication Date 2022-10-27
Grant Date 2025-09-02
Owner HemoCath Ltd. (USA)
Inventor
  • Glover, Christopher
  • Caron, Eric
  • Regan, Des
  • Abel, Sylvain

Abstract

A system comprising a multi-sensor catheter for monitoring a cardiac hemodynamic condition, e.g. heart failure. The multi-sensor catheter comprises multi-lumen catheter tubing, first and second optical pressure sensors, and respective optical fibers and connectors. For right heart and pulmonary artery catheterization, a flow-directed multi-sensor catheter comprises a guidewire lumen, inflatable balloon tip, and sensor locations are configured for placement of a sensor in each of the right atrium and pulmonary artery, for measurement of central venous pressure in the right atrium and a pulmonary artery pressure. An optical fiber for oximetry may be included. The outside diameter is small enough for insertion through a vein of the arm. For monitoring of a cardiac shunt, sensors are configured for measuring pressures upstream and downstream of the cardiac shunt, e.g. in left and right atria, or left atrium and coronary sinus.

IPC Classes  ?

  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0215 - Measuring pressure in heart or blood vessels by means inserted into the body
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61M 25/00 - CathetersHollow probes
  • A61M 25/01 - Introducing, guiding, advancing, emplacing or holding catheters
  • A61M 25/10 - Balloon catheters

2.

MULTI-SENSOR CATHETER FOR RIGHT HEART AND PULMONARY ARTERY CATHETERIZATION

      
Application Number CA2020051294
Publication Number 2021/062527
Status In Force
Filing Date 2020-09-29
Publication Date 2021-04-08
Owner HEMOCATH LTD. (Canada)
Inventor
  • Glover, Christopher
  • Caron, Eric
  • Regan, Des
  • Abel, Sylvain

Abstract

A system comprising a multi -sensor catheter for monitoring a cardiac hemodynamic condition, e.g. heart failure. The multi-sensor catheter comprises multi-lumen catheter tubing, first and second optical pressure sensors, and respective optical fibers and connectors. For right heart and pulmonary artery catheterization, a flow-directed multi-sensor catheter comprises a guidewire lumen, inflatable balloon tip, and sensor locations are configured for placement of a sensor in each of the right atrium and pulmonary artery, for measurement of central venous pressure in the right atrium and a pulmonary artery pressure. An optical fiber for oximetry may be included. The outside diameter is small enough for insertion through a vein of the arm. For monitoring of a cardiac shunt, sensors are configured for measuring pressures upstream and downstream of the cardiac shunt, e.g. in left and right atria, or left atrium and coronary sinus.

IPC Classes  ?

3.

Dual sensor system for continuous blood pressure monitoring during transcatheter heart valve therapies

      
Application Number 16764119
Grant Number 11406271
Status In Force
Filing Date 2018-11-13
First Publication Date 2020-12-17
Grant Date 2022-08-09
Owner HemoCath Ltd. (Canada)
Inventor
  • Glawdel, Tom
  • Glover, Christopher
  • Caron, Eric
  • Abel, Sylvain

Abstract

Dual sensor system for continuous blood pressure monitoring during transcatheter heart valve therapies (TVT), such as transcatheter aortic valve replacement (TAVR) or transcatheter mitral valve replacement (TMVR), comprises a controller, a support guidewire for TVT containing a first Fabry-Pérot (FP) optical pressure sensor near its distal end, and a pigtail catheter for delivery of contrast medium containing a second FP optical pressure sensor near its distal end. For example, for TAVR, the support guidewire is positioned to place the first optical pressure sensor within the left ventricle (LV) for monitoring LV pressure, the pigtail catheter is positioned in the aorta to place the second optical pressure sensor in the ascending aorta for direct measurement of pressure in the aorta, downstream of the aortic valve, enabling continuous monitoring of blood pressure at both sensor locations during TAVR. The controller may be configured to interface with standard patient monitoring systems.

IPC Classes  ?

  • A61B 5/0215 - Measuring pressure in heart or blood vessels by means inserted into the body
  • A61B 90/00 - Instruments, implements or accessories specially adapted for surgery or diagnosis and not covered by any of the groups , e.g. for luxation treatment or for protecting wound edges
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61F 2/24 - Heart valves

4.

System and apparatus comprising a multi-sensor catheter for right heart and pulmonary artery catheterization

      
Application Number 16587659
Grant Number 11197619
Status In Force
Filing Date 2019-09-30
First Publication Date 2020-02-13
Grant Date 2021-12-14
Owner HEMOCATH LTD. (Canada)
Inventor
  • Glover, Christopher
  • Caron, Eric
  • Abel, Sylvain

Abstract

A system and apparatus comprising a multi-sensor catheter for right heart and pulmonary artery catheterization is disclosed. The multi-sensor catheter comprises multi-lumen catheter tubing into which at least three optical pressure sensors, and their respective optical fibers, are inserted. The three optical pressure sensors are arranged within a distal end portion of the catheter, spaced apart lengthwise within the distal end portion for measuring pressure concurrently at each sensor location. The sensor locations are configured for placement of at least one sensor in each of the right atrium, the right ventricle and the pulmonary artery, for concurrent measurement of pressure at each sensor location. The sensor arrangement may further comprise an optical thermo-dilution sensor, and another lumen is provided for fluid injection for thermo-dilution measurements. The catheter may comprise an inflatable balloon tip and a guidewire lumen, and preferably has an outside diameter of 6 French or less.

IPC Classes  ?

  • A61B 5/0215 - Measuring pressure in heart or blood vessels by means inserted into the body
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/028 - Measuring blood flow using tracers, e.g. dye dilution by thermo-dilution
  • A61F 2/24 - Heart valves
  • A61M 25/10 - Balloon catheters
  • A61B 5/0295 - Measuring blood flow using plethysmography, i.e. measuring the variations in the volume of a body part as modified by the circulation of blood therethrough, e.g. impedance plethysmography
  • A61B 5/026 - Measuring blood flow
  • G01P 5/10 - Measuring speed of fluids, e.g. of air streamMeasuring speed of bodies relative to fluids, e.g. of ship, of aircraft by measuring thermal variables
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • G01K 11/32 - Measuring temperature based on physical or chemical changes not covered by group , , , or using changes in transmittance, scattering or luminescence in optical fibres
  • G01K 13/02 - Thermometers specially adapted for specific purposes for measuring temperature of moving fluids or granular materials capable of flow
  • A61B 5/01 - Measuring temperature of body parts
  • G01L 11/02 - Measuring steady or quasi-steady pressure of a fluid or a fluent solid material by means not provided for in group or by optical means
  • G16H 20/40 - ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance relating to mechanical, radiation or invasive therapies, e.g. surgery, laser therapy, dialysis or acupuncture
  • A61B 90/00 - Instruments, implements or accessories specially adapted for surgery or diagnosis and not covered by any of the groups , e.g. for luxation treatment or for protecting wound edges
  • A61B 90/30 - Devices for illuminating a surgical field, the devices having an interrelation with other surgical devices or with a surgical procedure
  • G16H 40/63 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation
  • A61B 5/024 - Measuring pulse rate or heart rate

5.

System and apparatus comprising a multi-sensor catheter for right heart and pulmonary artery catheterization

      
Application Number 16587815
Grant Number 11272847
Status In Force
Filing Date 2019-09-30
First Publication Date 2020-01-23
Grant Date 2022-03-15
Owner HemoCath Ltd. (Canada)
Inventor
  • Glover, Christopher
  • Caron, Eric
  • Abel, Sylvain

Abstract

A system comprising a multi-sensor catheter for monitoring of a cardiac hemodynamic condition, e.g. heart failure, is disclosed. The multi-sensor catheter comprises multi-lumen catheter tubing comprising first and second optical pressure sensors, and their respective optical fibers and connectors. For right heart and pulmonary artery catheterization, a flow-directed multi-sensor catheter comprises a guidewire lumen, an inflatable balloon tip, and sensor locations are configured for placement of a sensor in each of the right atrium and pulmonary artery, for measurement of central venous pressure in the right atrium and a pulmonary artery pressure. An optical fiber for oximetry may be included. The outside diameter is small enough for insertion through a vein of the arm. For monitoring of a left atrial shunt, sensors of a multi-sensor catheter are configured for measuring pressures upstream and downstream of the shunt, e.g. in the left and right atria, or left atrium and coronary sinus.

IPC Classes  ?

  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/1455 - Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value using optical sensors, e.g. spectral photometrical oximeters
  • A61M 25/00 - CathetersHollow probes
  • A61M 25/10 - Balloon catheters
  • A61M 25/01 - Introducing, guiding, advancing, emplacing or holding catheters
  • A61B 5/0215 - Measuring pressure in heart or blood vessels by means inserted into the body

6.

System and apparatus comprising a multi-sensor catheter for right heart and pulmonary artery catheterization

      
Application Number 15293380
Grant Number 10463259
Status In Force
Filing Date 2016-10-14
First Publication Date 2017-10-05
Grant Date 2019-11-05
Owner HEMOCATH LTD. (Canada)
Inventor
  • Glover, Christopher
  • Caron, Eric
  • Abel, Sylvain

Abstract

A system and apparatus comprising a multi-sensor catheter for right heart and pulmonary artery catheterization is disclosed. The multi-sensor catheter comprises multi-lumen catheter tubing into which at least three optical pressure sensors, and their respective optical fibers, are inserted. The three optical pressure sensors are arranged within a distal end portion of the catheter, spaced apart lengthwise within the distal end portion for measuring pressure concurrently at each sensor location. The sensor locations are configured for placement of at least one sensor in each of the right atrium, the right ventricle and the pulmonary artery, for concurrent measurement of pressure at each sensor location. The sensor arrangement may further comprise an optical thermo-dilution sensor, and another lumen is provided for fluid injection for thermo-dilution measurements. The catheter may comprise an inflatable balloon tip and a guidewire lumen, and preferably has an outside diameter of 6 French or less.

IPC Classes  ?

  • A61B 5/0215 - Measuring pressure in heart or blood vessels by means inserted into the body
  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/028 - Measuring blood flow using tracers, e.g. dye dilution by thermo-dilution
  • A61F 2/24 - Heart valves
  • A61M 25/10 - Balloon catheters
  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 5/026 - Measuring blood flow
  • A61B 5/0295 - Measuring blood flow using plethysmography, i.e. measuring the variations in the volume of a body part as modified by the circulation of blood therethrough, e.g. impedance plethysmography
  • G01P 5/10 - Measuring speed of fluids, e.g. of air streamMeasuring speed of bodies relative to fluids, e.g. of ship, of aircraft by measuring thermal variables
  • G01K 11/32 - Measuring temperature based on physical or chemical changes not covered by group , , , or using changes in transmittance, scattering or luminescence in optical fibres
  • G01K 13/02 - Thermometers specially adapted for specific purposes for measuring temperature of moving fluids or granular materials capable of flow
  • G01L 11/02 - Measuring steady or quasi-steady pressure of a fluid or a fluent solid material by means not provided for in group or by optical means
  • A61B 90/00 - Instruments, implements or accessories specially adapted for surgery or diagnosis and not covered by any of the groups , e.g. for luxation treatment or for protecting wound edges
  • A61B 90/30 - Devices for illuminating a surgical field, the devices having an interrelation with other surgical devices or with a surgical procedure
  • G16H 40/63 - ICT specially adapted for the management or administration of healthcare resources or facilitiesICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation
  • A61B 5/024 - Measuring pulse rate or heart rate
  • G06F 19/00 - Digital computing or data processing equipment or methods, specially adapted for specific applications (specially adapted for specific functions G06F 17/00;data processing systems or methods specially adapted for administrative, commercial, financial, managerial, supervisory or forecasting purposes G06Q;healthcare informatics G16H)

7.

System and apparatus comprising a multisensor guidewire for use in interventional cardiology

      
Application Number 15326134
Grant Number 10722175
Status In Force
Filing Date 2015-07-10
First Publication Date 2017-07-27
Grant Date 2020-07-28
Owner HemoCath Ltd. (Canada)
Inventor
  • Caron, Eric
  • Bilodeau, Luc

Abstract

A system (1) and apparatus comprising a multisensor guidewire (100/200/300) for use in interventional cardiology, e.g., Transcatheter Valve Therapies (TVT), comprises a plurality of optical sensors (10/20) for direct measurement of cardiovascular parameters, e.g. transvalvular blood pressure gradients and flow. A conventional outer coil wire (35) contains a shaped core wire (31) having a cross-section defining a channel surface (132), e.g. grooves (32), extending along its length, to position optical fibers (11) and optical sensors (10/20) in a channel (33). Advantageously, the core wire has a diameter that provides sufficient stiffness to the guidewire for use as a support guidewire for TVT, e.g. Transcatheter Aortic Valve Implantation (TAVI), while accommodating multiple sensors and fibers within a guidewire of outside diameter ≤0.89 mm. An optical connector (112) couples the guidewire to a control system (150). Optionally, the guidewire includes a contact force sensor (60), a pre-formed tip (400-1/400-2) and a separable micro-connector (140).

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/042 - Electrodes specially adapted therefor for introducing into the body
  • A61B 5/0215 - Measuring pressure in heart or blood vessels by means inserted into the body
  • A61F 2/24 - Heart valves

8.

Apparatus, system and methods for measuring a blood pressure gradient

      
Application Number 14874604
Grant Number 09504392
Status In Force
Filing Date 2015-10-05
First Publication Date 2016-01-28
Grant Date 2016-11-29
Owner HEMOCATH LTD. (Canada)
Inventor
  • Caron, Eric
  • Bilodeau, Luc
  • Paquette, Michael

Abstract

An apparatus, control system and methods are disclosed for directly measuring a blood pressure gradient, i.e. by real-time pressure measurements, with particular application for in situ measurement of transvalvular blood pressure gradients for the aortic valve and other heart valves, using minimally-invasive techniques. The apparatus takes the form of a multi-sensor assembly, enclosed within a micro-catheter or a steerable guidewire, and comprises a plurality of optical pressure sensors arranged along a length of the distal end portion, for measuring pressure simultaneously at each sensor location. For example, four MOMS optical pressure sensors, and optionally, a temperature and/or flow sensor, are incorporated into a distal end portion having a diameter of 0.89 mm or less, and preferably 0.46 mm or less. Beneficially, all sensors are optically coupled, via respective optical fibers, to an optical coupler at the proximal end of the multi-sensor apparatus, without requiring electrical connections.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/0215 - Measuring pressure in heart or blood vessels by means inserted into the body
  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/026 - Measuring blood flow
  • G01F 1/688 - Structural arrangementsMounting of elements, e.g. in relation to fluid flow using a particular type of heating, cooling or sensing element
  • G01P 5/10 - Measuring speed of fluids, e.g. of air streamMeasuring speed of bodies relative to fluids, e.g. of ship, of aircraft by measuring thermal variables
  • G01K 11/32 - Measuring temperature based on physical or chemical changes not covered by group , , , or using changes in transmittance, scattering or luminescence in optical fibres
  • G01K 13/02 - Thermometers specially adapted for specific purposes for measuring temperature of moving fluids or granular materials capable of flow
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 8/08 - Clinical applications
  • G06F 19/00 - Digital computing or data processing equipment or methods, specially adapted for specific applications (specially adapted for specific functions G06F 17/00;data processing systems or methods specially adapted for administrative, commercial, financial, managerial, supervisory or forecasting purposes G06Q;healthcare informatics G16H)
  • A61B 5/0295 - Measuring blood flow using plethysmography, i.e. measuring the variations in the volume of a body part as modified by the circulation of blood therethrough, e.g. impedance plethysmography
  • A61B 5/024 - Measuring pulse rate or heart rate

9.

Apparatus, system and methods for measuring a blood pressure gradient

      
Application Number 14354624
Grant Number 09149230
Status In Force
Filing Date 2012-10-26
First Publication Date 2014-09-04
Grant Date 2015-10-06
Owner HEMOCATH LTD. (Canada)
Inventor
  • Caron, Eric
  • Bilodeau, Luc
  • Paquette, Michel

Abstract

An apparatus (100), control system (150) and methods are provided for directly measuring a pressure gradient, i.e. by real-time pressure measurements, with particular application for in situ measurement of transvalvular blood pressure gradients for the aortic valve and other heart valves, using minimally-invasive techniques. The apparatus takes the form of a multi-sensor assembly, e.g. enclosed within a micro-catheter or a steerable guidewire, and comprises a plurality of optical pressure sensors (10) is arranged along a length of the distal end portion (101), for measuring pressure simultaneously at each sensor location. For example, four MOMS optical pressure sensors (10), and optionally, a flow sensor (20), are incorporated into a distal end portion (101) having a diameter of 0.89 mm or less, and preferably 0.46 mm or less. Beneficially, all sensors are optically coupled, via respective optical fibers (11), to an optical coupler (112) at the proximal end of the multi-sensor apparatus, without requiring electrical connections.

IPC Classes  ?

  • A61B 5/00 - Measuring for diagnostic purposes Identification of persons
  • A61B 5/01 - Measuring temperature of body parts
  • A61B 5/026 - Measuring blood flow
  • A61B 5/0215 - Measuring pressure in heart or blood vessels by means inserted into the body
  • G01F 1/688 - Structural arrangementsMounting of elements, e.g. in relation to fluid flow using a particular type of heating, cooling or sensing element
  • G01P 5/10 - Measuring speed of fluids, e.g. of air streamMeasuring speed of bodies relative to fluids, e.g. of ship, of aircraft by measuring thermal variables
  • G01K 11/32 - Measuring temperature based on physical or chemical changes not covered by group , , , or using changes in transmittance, scattering or luminescence in optical fibres
  • G01K 13/02 - Thermometers specially adapted for specific purposes for measuring temperature of moving fluids or granular materials capable of flow
  • A61B 5/0205 - Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
  • A61B 8/08 - Clinical applications
  • G06F 19/00 - Digital computing or data processing equipment or methods, specially adapted for specific applications (specially adapted for specific functions G06F 17/00;data processing systems or methods specially adapted for administrative, commercial, financial, managerial, supervisory or forecasting purposes G06Q;healthcare informatics G16H)
  • A61B 5/0295 - Measuring blood flow using plethysmography, i.e. measuring the variations in the volume of a body part as modified by the circulation of blood therethrough, e.g. impedance plethysmography
  • A61B 5/024 - Measuring pulse rate or heart rate