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Fluid circuits for temperature control in a thermal therapy system

  • US 9,770,607 B2
  • Filed: 09/16/2016
  • Issued: 09/26/2017
  • Est. Priority Date: 03/09/2010
  • Status: Active Grant
First Claim
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1. A fluid control system for use in a thermal therapy system, the fluid control system comprising:

  • a treatment chamber including a magnetic shielding wall with a penetration panel;

    a primary fluid circuit located in said treatment chamber and configured to circulate a sterile fluid, said primary fluid circuit including (a) a peristaltic pump that drives said sterile fluid through said primary fluid circuit and (b) an insertable portion of a thermal therapy applicator configured to be insertable into a patient to provide a thermal therapy to said patient;

    a secondary fluid circuit to circulate a secondary fluid, said secondary fluid circuit comprising a first portion located in the treatment chamber and a second portion located outside said treatment chamber, said first and second portions coupled by fluid couplings in said penetration panel, the second portion comprising;

    a chiller configured to receive an output control signal and change a quantity of heat energy in said secondary fluid in response to said output control signal; and

    a second pump that drives said secondary fluid through said secondary fluid circuit;

    a heat exchanger disposed in said treatment chamber, said heat exchanger connected to said primary fluid circuit and said first portion of said secondary fluid circuit such that the sterile fluid is in thermal communication with the secondary fluid;

    a temperature sensor disposed in or on said insertable portion of said thermal therapy applicator to sense a sensed temperature of (a) said sterile fluid or (b) a patient'"'"'s tissue proximal to a position of said temperature sensor and to provide a corresponding temperature sensor output signal indicative of said sensed temperature; and

    a temperature control circuit configured to receive said temperature sensor output signal, compare said sensed temperature with a set point temperature, and generate said output control signal to control said chiller based on said comparison of said sensed temperature with said set point temperature.

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