WO2004052182A2

Method and system for monitoring and treating hemodynamic parameters

Abstract

A multiplexed medical carrier provides for sensing one or more patient parameters and/or delivering energy via separately identifiable effectors. The carrier includes a body and at least two electrical conductors coupled with at least two effectors. Effectors may be any combination of sensors, actuators or both. Sensors may measure such parameters as pressure, oxygen content, volume, conductivity, fluid flow rate, or any other chemical or physical parameters. Actuators may be used, for example, to pace a heart, stimulate muscle or neural tissue, broadcast ultrasonic energy, emit light, heat or other forms of radiation, or deliver any form of energy or substance. A method for collecting medical data from a patient includes interrogating a network of multiplexed sensors residing on parallel conductors in the patient, including addressing a first addressable sensor in the network to obtain data and addressing a second addressable sensor in the network to obtain data.

WO2004052182A2, drawing sheet 1
Sheet 1 of 9

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

95 claims: 22 independent, 73 dependent

  1. 1
    WHAT IS CLAIMED IS:1. A multiplexed medical carrier comprising: a body having a surface and at least two lumens;and at least two electrical conductors, each conductor disposed in a separate lumen along at least a portion of the body, wherein the body is adapted to mount and electrically couple to the electrical conductors at least two separately identifiable effectors at a plurality of distributed locations within the body or on the surface.
  2. 15
    A carrier as in any of claims 4-14, wherein the effectors are mounted on an external surface of the body.
  3. 16
    A carrier as in any of claims 4-14, wherein the effectors are mounted on an internal surface of the body.
  4. 17
    A carrier as in any of claims 4-14, wherein the effectors contact the conductors through one or more holes in the body.
  5. 20
    A carrier as in either of claims 18 and 19, wherein the conductive material is selected from the group consisting of a gel, a fluid, a paste and a slurry.
  6. 21
    A carrier as in either of claims 18 and 19, wherein a bipolar alternating current is used to deliver power and signals across the conductive material.
  7. 29
    A carrier as in any of claims 4-14, wherein the body comprises an elongated body adapted to be introduced to and through a blood vessel.
  8. 32
    A carrier as in any of claims 4-14, wherein the body comprises a flat surface adapted to be positioned on a body tissue.
  9. 34
    An improved medical carrier of the type including a plurality of actuators, wherein the improvement comprises separately identifiable actuators that are multiplexed by at least one common conductor.
  10. 37
    An improved medical carrier as in any of claims 34-36, wherein the carrier comprises an intravascular or intracardiac catheter.
  11. 38
    An improved medical carrier as in any of claims 34-36, wherein the carrier comprises an implantable carrier.
  12. 40
    An improved medical carrier of the type including a plurality of systems, wherein the improvement comprises separately identifiable systems that are multiplexed by at least one common conductor, and wherein each system comprises:at least one sensor;at least one actuator;and an electronic circuit.
  13. 44
    A system comprising:a multiplexed medical carrier having a plurality of separately identifiable effectors distributed over a surface thereof, wherein the effectors are multiplexed by at least one common connector;and a multiplexing controller adapted to connect to the effectors via the common conductor.
  14. 48
    A method for configuring a medical carrier, the method comprising:providing a body having a surface and at least one electrical conductor;selectively mounting at least one separately identifiable effector on the surface;and electrically coupling the at least one effector to the at least one electrical conductor through a surface penetration.
  15. 58
    A method as in either of claims 56 and 57, wherein the actuator performs a function selected from the group consisting of providing an electrical current or voltage, setting an electrical potential, heating a substance or area, inducing a pressure change, releasing or capturing a material, emitting light, emitting sonic or ultrasound energy and emitting radiation.
  16. 66
    An improved method for configuring a medical carrier of the type including a plurality of actuators, wherein the improvement comprises providing separately identifiable actuators that are multiplexed by at least one common conductor.
  17. 67
    An improved method for configuring a medical carrier of the type including a plurality of systems, wherein the improvement comprises providing separately identifiable systems that are multiplexed by at least one common conductor.
  18. 69
    A method for collecting medical data from a patient, the method compnsmg:interrogating a network of multiplexed sensors residing on parallel conductors in the patient, wherein interrogating comprises: (a) addressing a first addressable sensor in the network to obtain data;and (b) addressing a second addressable sensor in the network to obtain data.
  19. 72
    A method as in any of claims 69-71 , wherein the data obtained includes at least one of pressure data, volume data, dimension data, temperature data, oxygen or carbon dioxide concentration data, hematocrit data, electrical conductivity data, electrical potential data, pH data, chemical data, blood flow rate data, thermal conductivity data, optical property data, cross-sectional area data, viscosity data and radiation data.
  20. 81
    A method for collecting medical data from a patient, the method comprising:activating a network of multiplexed sensors residing on parallel conductors in the patient such that each activated sensor transmits sensed data;receiving the transmitted data;and separating the received data into multiple data streams, each data stream comprising data from one sensor.
  21. 83
    A method for delivering energy or one or more substances to a patient, the method comprising addressing at least a first addressable actuator in a network of actuators to cause the first actuator to deliver energy or a substance.
  22. 87
    A method as in any of claims 83-86, wherein the actuators perform a function selected from the group consisting of providing an electrical current or voltage, setting an electrical potential, heating a substance or area, inducing a pressure change, releasing or capturing a material, emitting light, emitting sonic or ultrasound energy and emitting radiation.
Independent claims22