Patents by Inventor James S. Slepicka

James S. Slepicka has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 8803044
    Abstract: A dialysis fluid heating system includes a plurality of conductive tubes; first and second end caps located at first and second ends of the tubes, respectively, the first end cap including a dialysis fluid inlet and a dialysis fluid outlet, the end caps and the tubes configured such that dialysis fluid can flow from the fluid inlet of the first end cap, through at least one first tube to the second end cap, and through at least one second tube back to the first end cap; a conductive wire wound around an outside of the conductive tubes; and electronics configured to supply power to the conductive wire, the wire forming a primary coil of a transformer, the tubes forming a secondary coil of the transformer.
    Type: Grant
    Filed: July 5, 2007
    Date of Patent: August 12, 2014
    Assignees: Baxter International Inc., Baxter Healthcare S.A.
    Inventors: Richard E. Kienman, Dan Roush, John E. Steck, James S. Slepicka, Atif M. Yardimci, Gideon Hecht, Jennifer S. Lindsay, George F. Bobart, Donald D. Busby, William Chan, Yuanpang S. Ding, Amy L. Twining, Douglas W. Reitz, Andrey Kopychev, Mehmet B. Ozer, Brian C. Lauman
  • Patent number: 8672876
    Abstract: A fluid delivery system having a closed-loop control process for delivering a medical fluid to a patient. A fluid infusion system includes a pump for delivering a fluid to a patient via an administration tube. A flow sensor associated with the administration tube provides an indication of the actual flow rate of fluid in the administration tube. Such a flow sensor may comprise a positive displacement flow sensor constructed using micro-fabrication and/or micro-molding techniques. A reader reads the actual flow rate signal and provides an indication to a controller for controlling the pump. The flow rate information can also be used for providing status information, such as the existence of a blockage in the fluid delivery system.
    Type: Grant
    Filed: March 21, 2008
    Date of Patent: March 18, 2014
    Assignee: Baxter International Inc.
    Inventors: James D. Jacobson, Tuan Bui, Stephen R. Garchow, Atif Yardimci, James S. Slepicka
  • Patent number: 8654318
    Abstract: A medical fluid delivery system includes a medical fluid delivery machine including a light source configured to generate a light beam; a polarizer configured to receive the light beam and to allow a portion of the light beam within the medical fluid to be transmitted through the polarizer, a photodetector to provide a measurement of an intensity of the light beam transmitted through a medical fluid and the polarizer; a medical fluid cassette operating with the medical fluid machine to pump the medical fluid, the medical fluid cassette loaded onto the medical fluid delivery machine such that the light source resides on a first side of the cassette and the photodetector resides on a second side of the cassette; and a computer configured to use the measurement of the intensity to determine whether the medical fluid can be delivered to a patient.
    Type: Grant
    Filed: January 9, 2012
    Date of Patent: February 18, 2014
    Assignees: Baxter International Inc., Baxter Healthcare S.A.
    Inventor: James S. Slepicka
  • Publication number: 20120296279
    Abstract: A method for detecting movement or disconnection of a needle at an access site of a patient comprising: sensing for a presence of blood at the access site while a medical procedure is performed on the patient; separately sensing for a movement of (i) the needle or (ii) tubing connected to the needle; and sending a signal indicating movement or disconnection of the needle if one of (a) the presence of blood is sensed or (b) movement is sensed under (i) or (ii).
    Type: Application
    Filed: May 25, 2012
    Publication date: November 22, 2012
    Applicants: BAXTER HEALTHCARE S.A., BAXTER INTERNATIONAL INC.
    Inventors: Matthew R. Muller, Luke Beehner, William W. Chan, James S. Slepicka, Atif Yardimci
  • Patent number: 8287724
    Abstract: A dialysis system instrument includes a dialysis instrument, a disposable pumping and valving cassette apparatus operable with pumping and valving actuators of the dialysis instrument, the disposable cassette including an electronic cell and electronics associated with the electronic cell, the electronics configured to determine an electrical property of a solution flowing through the electronic cell of the disposable apparatus.
    Type: Grant
    Filed: July 5, 2007
    Date of Patent: October 16, 2012
    Assignees: Baxter International Inc., Baxter Healthcare S.A.
    Inventors: James S. Slepicka, Mark Perry, William Chan, Richard Kienman, Angel M. Lasso, Donald Busby, Rodolfo G. Roger, Michael E. Hogard
  • Patent number: 8231566
    Abstract: A fluid delivery system having a closed-loop control process for delivering a medical fluid to a patient. A fluid infusion system includes a pump for delivering a fluid to a patient via an administration tube. A flow sensor associated with the administration tube provides an indication of the actual flow rate of fluid in the administration tube. Such a flow sensor may comprise a positive displacement flow sensor constructed using micro-fabrication and/or micro-molding techniques. A reader reads the actual flow rate signal and provides an indication to a controller for controlling the pump. The flow rate information can also be used for providing status information, such as the existence of a blockage in the fluid delivery system.
    Type: Grant
    Filed: March 21, 2008
    Date of Patent: July 31, 2012
    Assignee: Baxter International, Inc.
    Inventors: James D. Jacobson, Tuan Bui, Stephen R. Garchow, Atif Yardimci, James S. Slepicka
  • Patent number: 8226597
    Abstract: A fluid delivery system having a closed-loop control process for delivering a medical fluid to a patient. A fluid infusion system includes a pump for delivering a fluid to a patient via an administration tube. A flow sensor associated with the administration tube provides an indication of the actual flow rate of fluid in the administration tube. Such a flow sensor may comprise a positive displacement flow sensor constructed using micro-fabrication and/or micro-molding techniques. A reader reads the actual flow rate signal and provides an indication to a controller for controlling the pump. The flow rate information can also be used for providing status information, such as the existence of a blockage in the fluid delivery system.
    Type: Grant
    Filed: March 21, 2008
    Date of Patent: July 24, 2012
    Assignee: Baxter International, Inc.
    Inventors: James D. Jacobson, Tuan Bui, Stephen R. Garchow, Atif Yardimci, James S. Slepicka
  • Patent number: 8187184
    Abstract: An optical access disconnect system is useful for detecting the presence of blood. The optical access disconnect system includes one or more optical sensors placed near an access site of a patient, the optical sensors suitable for detecting the presence of blood, especially by detecting a difference in light reflected or absorbed by blood. The optical access disconnect system may also be used as an interlock to assure compliance. A detector may be placed adjacent the access site to detect the access needle, or an object or mark on the access needle or fluid line. A therapy machine, such as a dialysis machine, may be programmed not to start or continue operation unless the needle or fluid line is detected. The detector may be one of the optical sensors, calibrated or adjusted to detect a mark on the needle or access line, or may be another type of detector.
    Type: Grant
    Filed: September 21, 2007
    Date of Patent: May 29, 2012
    Assignees: Baxter International, Inc., Baxter Healthcare S.A.
    Inventors: Matthew R. Muller, Luke Beehner, William W. Chan, James S. Slepicka, Atif Yardimci
  • Publication number: 20120105850
    Abstract: A medical fluid delivery system includes a medical fluid delivery machine including a light source configured to generate a light beam; a polarizer configured to receive the light beam and to allow a portion of the light beam within the medical fluid to be transmitted through the polarizer, a photodetector to provide a measurement of an intensity of the light beam transmitted through a medical fluid and the polarizer; a medical fluid cassette operating with the medical fluid machine to pump the medical fluid, the medical fluid cassette loaded onto the medical fluid delivery machine such that the light source resides on a first side of the cassette and the photodetector resides on a second side of the cassette; and a computer configured to use the measurement of the intensity to determine whether the medical fluid can be delivered to a patient.
    Type: Application
    Filed: January 9, 2012
    Publication date: May 3, 2012
    Applicants: Baxter Healthcare S.A., Baxter International Inc.
    Inventor: James S. Slepicka
  • Patent number: 8094307
    Abstract: Test equipment determines the contents of medical fluids to be delivered to a patient by a medication delivery system by measuring optical properties of the fluids. One system provides a non-invasive test that uses optical rotation caused by optically active pharmaceutical substances to determine the presence or absence of the pharmaceutical substances within a medical fluid. Another system provides a non-invasive test that uses refractive index properties to determine the concentration of a pharmaceutical substance within the fluid. A method for use is also disclosed.
    Type: Grant
    Filed: July 5, 2007
    Date of Patent: January 10, 2012
    Assignees: Baxter International Inc., Baxter Healthcare S.A.
    Inventor: James S. Slepicka
  • Patent number: 7879025
    Abstract: A fluid delivery system having a closed-loop control process for delivering a medical fluid to a patient. A fluid infusion system includes a pump for delivering a fluid to a patient via an administration tube. A flow sensor associated with the administration tube provides an indication of the actual flow rate of fluid in the administration tube. Such a flow sensor may comprise a positive displacement flow sensor constructed using micro-fabrication and/or micro-molding techniques. A reader reads the actual flow rate signal and provides an indication to a controller for controlling the pump. The flow rate information can also be used for providing status information, such as the existence of a blockage in the fluid delivery system.
    Type: Grant
    Filed: January 17, 2006
    Date of Patent: February 1, 2011
    Assignee: Baxter International Inc.
    Inventors: James D. Jacobson, Tuan Bui, Stephen R. Garchow, Atif Yardimci, James S. Slepicka
  • Publication number: 20090082649
    Abstract: An optical access disconnect system is useful for detecting the presence of blood. The optical access disconnect system includes one or more optical sensors placed near an access site of a patient, the optical sensors suitable for detecting the presence of blood, especially by detecting a difference in light reflected or absorbed by blood. The optical access disconnect system may also be used as an interlock to assure compliance. A detector may be placed adjacent the access site to detect the access needle, or an object or mark on the access needle or fluid line. A therapy machine, such as a dialysis machine, may be programmed not to start or continue operation unless the needle or fluid line is detected. The detector may be one of the optical sensors, calibrated or adjusted to detect a mark on the needle or access line, or may be another type of detector.
    Type: Application
    Filed: September 21, 2007
    Publication date: March 26, 2009
    Applicants: Baxter International Inc., Baxter Healthcare S.A.
    Inventors: Matthew R. Muller, Luke Beehner, William W. Chan, James S. Slepicka, Atif Yardimci
  • Publication number: 20090009764
    Abstract: Test equipment determines the contents of medical fluids to be delivered to a patient by a medication delivery system by measuring optical properties of the fluids. One system provides a non-invasive test that uses optical rotation caused by optically active pharmaceutical substances to determine the presence or absence of the pharmaceutical substances within a medical fluid. Another system provides a non-invasive test that uses refractive index properties to determine the concentration of a pharmaceutical substance within the fluid. A method for use is also disclosed.
    Type: Application
    Filed: July 5, 2007
    Publication date: January 8, 2009
    Applicants: BAXTER INTERNATIONAL INC., BAXTER HEALTHCARE S.A.
    Inventor: James S. Slepicka
  • Publication number: 20090012452
    Abstract: A dialysis system instrument includes a dialysis instrument, a disposable pumping and valving cassette apparatus operable with pumping and valving actuators of the dialysis instrument, the disposable cassette including an electronic cell and electronics associated with the electronic cell, the electronics configured to determine an electrical property of a solution flowing through the electronic cell of the disposable apparatus.
    Type: Application
    Filed: July 5, 2007
    Publication date: January 8, 2009
    Applicants: BAXTER INTERNATIONAL INC., BAXTER HEALTHCARE S.A.
    Inventors: James S. Slepicka, Mark Perry, William Chan, Richard Kienman, Angel M. Lasso, Donald Busby, Rodolfo G. Roger, Michael E. Hogard
  • Publication number: 20090007642
    Abstract: A dialysate testing method in one embodiment includes placing electrical contacts in a dialysate flow path, measuring an electrical property of the dialysate as it flows through the flow path and past the contacts, and determining whether the dialysate has been mixed properly from the detected electrical property. A dialysate testing method in another embodiment includes flowing dialysate past a pair of electrical contacts, calculating a conductivity of the dialysate using an algorithm that takes into account a geometry of the contacts, and using the calculated conductivity to determine if the dialysate has been removed properly.
    Type: Application
    Filed: July 5, 2007
    Publication date: January 8, 2009
    Applicants: BAXTER INTERNATIONAL INC., BAXTER HEALTHCARE S.A.
    Inventors: Donald Busby, Rodolfo G. Roger, Michael E. Hogard, James S. Slepicka, Mark Perry, William Chan, Richard Kienman, Angel M. Lasso
  • Publication number: 20080255502
    Abstract: A fluid delivery system having a closed-loop control process for delivering a medical fluid to a patient. A fluid infusion system includes a pump for delivering a fluid to a patient via an administration tube. A flow sensor associated with the administration tube provides an indication of the actual flow rate of fluid in the administration tube. Such a flow sensor may comprise a positive displacement flow sensor constructed using micro-fabrication and/or micro-molding techniques. A reader reads the actual flow rate signal and provides an indication to a controller for controlling the pump. The flow rate information can also be used for providing status information, such as the existence of a blockage in the fluid delivery system.
    Type: Application
    Filed: March 21, 2008
    Publication date: October 16, 2008
    Inventors: James D. Jacobson, Tuan Bui, Stephen R. Garchow, Atif Yardimci, James S. Slepicka
  • Publication number: 20080243058
    Abstract: A fluid delivery system having a closed-loop control process for delivering a medical fluid to a patient. A fluid infusion system includes a pump for delivering a fluid to a patient via an administration tube. A flow sensor associated with the administration tube provides an indication of the actual flow rate of fluid in the administration tube. Such a flow sensor may comprise a positive displacement flow sensor constructed using micro-fabrication and/or micro-molding techniques. A reader reads the actual flow rate signal and provides an indication to a controller for controlling the pump. The flow rate information can also be used for providing status information, such as the existence of a blockage in the fluid delivery system.
    Type: Application
    Filed: March 21, 2008
    Publication date: October 2, 2008
    Inventors: James D. Jacobson, Tuan Bui, Stephen R. Garchow, Atif Yardimci, James S. Slepicka
  • Publication number: 20080243057
    Abstract: A fluid delivery system having a closed-loop control process for delivering a medical fluid to a patient. A fluid infusion system includes a pump for delivering a fluid to a patient via an administration tube. A flow sensor associated with the administration tube provides an indication of the actual flow rate of fluid in the administration tube. Such a flow sensor may comprise a positive displacement flow sensor constructed using micro-fabrication and/or micro-molding techniques. A reader reads the actual flow rate signal and provides an indication to a controller for controlling the pump. The flow rate information can also be used for providing status information, such as the existence of a blockage in the fluid delivery system.
    Type: Application
    Filed: March 21, 2008
    Publication date: October 2, 2008
    Inventors: James D. Jacobson, Tuan Bui, Stephen R. Garchow, Atif Yardimci, James S. Slepicka
  • Patent number: 6948522
    Abstract: A reconstitution device is disclosed and includes a first container receiver having a first component cannula disposed therein, the first component cannula having a withdrawal port and a first transfer port formed thereon, a second container receiver having a second component cannula disposed thereon, the second component cannula having a vent port and a second transfer port formed thereon, a device body coupling the first container receiver to the second container receiver and having a transfer lumen formed therein, the transfer lumen in fluid communication with the first and second transfer ports, a selectively sealing interface secured to the device body and in fluid communication with the withdrawal port, and a venting member in communication with the vent port through a vent lumen.
    Type: Grant
    Filed: June 6, 2003
    Date of Patent: September 27, 2005
    Assignee: Baxter International Inc.
    Inventors: Jerry W. Newbrough, James S. Slepicka, Arnold C. Bilstad, John Mark DeFoggi, Marianne M. Boschelli, Alice M. Jandrisits, Bihong Wu
  • Publication number: 20040249341
    Abstract: A reconstitution device is disclosed and includes a first container receiver having a first component cannula disposed therein, the first component cannula having a withdrawal port and a first transfer port formed thereon, a second container receiver having a second component cannula disposed thereon, the second component cannula having a vent port and a second transfer port formed thereon, a device body coupling the first container receiver to the second container receiver and having a transfer lumen formed therein, the transfer lumen in fluid communication with the first and second transfer ports, a selectively sealing interface secured to the device body and in fluid communication with the withdrawal port, and a venting member in communication with the vent port through a vent lumen.
    Type: Application
    Filed: June 6, 2003
    Publication date: December 9, 2004
    Inventors: Jerry W. Newbrough, James S. Slepicka, Arnold C. Bilstad, John Mark DeFoggi, Marianne M. Boschelli, Alice M. Jandrisits, Bihong Wu