Patents Assigned to MiniMed
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Patent number: 6641533Abstract: A medical device module for use in a system with a remote programmer and/or a personal data assistant (PDA) with at least one medical device includes a housing, at least one medical device and a processor. The housing is adapted to couple with the PDA. The at least one medical device interface is coupled to the housing for interfacing with the at least one medical device. The processor is coupled to the at least one medical device interface to process data from the at least one medical device. The processor is also capable of interfacing with the PDA.Type: GrantFiled: August 23, 2001Date of Patent: November 4, 2003Assignee: Medtronic MiniMed, Inc.Inventors: James D. Causey, III, Richard E. Purvis, James L. Henke
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Publication number: 20030201239Abstract: A septum used for sealing an opening formed in a neck of a container, the septum includes a top septum member that fits over the outside of the opening in the container and a bottom radial septum member structurally connected below the top septum to seal inside the neck of the container.Type: ApplicationFiled: April 25, 2002Publication date: October 30, 2003Applicant: MEDTRONIC MINIMED, INC.Inventors: Philip J. Hudak, Lawrence C. Kiliszewski
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Publication number: 20030199837Abstract: A biosensor including an external surface, and an accessory material in close proximity to the external surface. The accessory material includes a coating containing a hydrophilic material and/or a fiber modified to deliver a therapeutic agent. The biosensor modifies a biological response to the biosensor upon contact with a tissue, such as upon implantation into the skin of a subject, thereby reducing biofouling, inflammation and other undesirable tissue responses that interfere with biosensor performance. The biosensor can be any biocompatible sensor, suitable for short- or long-term use. Preferably, the biosensor is an enzymatic or electrochemical sensor, such as a glucose sensor. Also provided are a method of producing a biosensor and a method of delivering a biologically active substance to a subject.Type: ApplicationFiled: April 22, 2002Publication date: October 23, 2003Applicant: Medtronic MiniMed, Inc.Inventor: David J. Vachon
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Publication number: 20030199823Abstract: An insertion device and insertion set. The insertion device for inserting at least a portion of at least one piercing member of an insertion set through the skin of a patient includes a device housing, a carrier body and a driver. The carrier body is slidably received within the device housing for movement between an advanced position and a retracted position. The carrier body also includes a receiving structure to support the insertion set in a position with the at least one piercing member oriented for insertion through the skin of the patient at a predetermined or variable angle relative to the skin of the patient upon movement of the carrier body from the retracted position to the advanced position.Type: ApplicationFiled: April 18, 2003Publication date: October 23, 2003Applicant: MINIMED INC.Inventors: Randa M. Bobroff, Lawrence Kiliszewski, Hans Lickliter, Frederick C. Houghton, Jason H. Safabash, Susan M. McConnell, April A. Marano
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Publication number: 20030195462Abstract: An infusion system for infusing a liquid into a body includes an external infusion device and a remote commander. The external infusion device includes a housing, a receiver, a processor and an indication device. The receiver is coupled to the housing and for receiving remotely generated commands. The processor is coupled to the housing and the receiver to receive remotely generated commands and to control the external infusion device in accordance with the commands. The indication device indicates when a command has been received and indicates when the command is being utilized to control the external infusion device so that the external infusion device is capable of being concealed from view when being remotely commanded. The remote commander includes a commander housing, a keypad for transmitting commands, and a transmitter for transmitting commands to the receiver of the external infusion device.Type: ApplicationFiled: March 27, 2003Publication date: October 16, 2003Applicant: MEDTRONIC MINIMED, INC.Inventors: Alfred E. Mann, James D. Causey, Alan Haubach, Luis J. Malave, John Livingston, Cliff Hague, Chad Srisathapat, Jay Yonemoto, Deborah Ruppert, Dennis P. Bishop, Adrian Gut, Bob Murtfeldt
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Publication number: 20030191431Abstract: An infusion system for infusing a liquid into a body includes an external infusion device and a remote commander. The external infusion device includes a housing, a receiver, a processor and an indication device. The receiver is coupled to the housing and for receiving remotely generated commands. The processor is coupled to the housing and the receiver to receive remotely generated commands and to control the external infusion device in accordance with the commands. The indication device indicates when a command has been received and indicates when the command is being utilized to control the external infusion device so that the external infusion device is capable of being concealed from view when being remotely commanded. The remote commander includes a commander housing, a keypad for transmitting commands, and a transmitter for transmitting commands to the receiver of the external infusion device.Type: ApplicationFiled: March 27, 2003Publication date: October 9, 2003Applicant: MEDTRONIC MINIMED, INC.Inventors: Alfred E. Mann, James D. Causey, Alan Haubach, Luis J. Malave, John Livingston, Cliff Hague, Chad Srisathapat, Jay Yonemoto, Deborah Ruppert, Dennis P. Bishop, Adrian Gut, Bob Murtfeldt
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Publication number: 20030187525Abstract: An infusion system for infusing a liquid into a body includes an external infusion device and a remote commander. The external infusion device includes a housing, a receiver, a processor and an indication device. The receiver is coupled to the housing and for receiving remotely generated commands. The processor is coupled to the housing and the receiver to receive remotely generated commands and to control the external infusion device in accordance with the commands. The indication device indicates when a command has been received and indicates when the command is being utilized to control the external infusion device so that the external infusion device is capable of being concealed from view when being remotely commanded. The remote commander includes a commander housing, a keypad for transmitting commands, and a transmitter for transmitting commands to the receiver of the external infusion device.Type: ApplicationFiled: March 27, 2003Publication date: October 2, 2003Applicant: MEDTRONIC MINIMED, INC.Inventors: Alfred E. Mann, James D. Causey, Alan Haubach, Luis J. Malave, John Livingston, Cliff Hague, Chad Srisathapat, Jay Yonemoto, Deborah Ruppert, Dennis P. Bishop, Adrian Gut, Bob Murtfeldt
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Publication number: 20030181851Abstract: An infusion system for infusing a liquid into a body includes an external infusion device and a remote commander. The external infusion device includes a housing, a receiver, a processor and an indication device. The receiver is coupled to the housing and for receiving remotely generated commands. The processor is coupled to the housing and the receiver to receive remotely generated commands and to control the external infusion device in accordance with the commands. The indication device indicates when a command has been received and indicates when the command is being utilized to control the external infusion device so that the external infusion device is capable of being concealed from view when being remotely commanded. The remote commander includes a commander housing, a keypad for transmitting commands, and a transmitter for transmitting commands to the receiver of the external infusion device.Type: ApplicationFiled: March 27, 2003Publication date: September 25, 2003Applicant: MINIMED INC.Inventors: Alfred E. Mann, James D. Causey, Alan Haubach, Luis J. Malave, John Livingston, Cliff Hague, Chad Srisathapat, Jay Yonemoto, Deborah Ruppert, Dennis P. Bishop, Adrian Gut, Bob Murtfeldt
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Publication number: 20030181852Abstract: An infusion system for infusing a liquid into a body includes an external infusion device and a remote commander. The external infusion device includes a housing, a receiver, a processor and an indication device. The receiver is coupled to the housing and for receiving remotely generated commands. The processor is coupled to the housing and the receiver to receive remotely generated commands and to control the external infusion device in accordance with the commands. The indication device indicates when a command has been received and indicates when the command is being utilized to control the external infusion device so that the external infusion device is capable of being concealed from view when being remotely commanded. The remote commander includes a commander housing, a keypad for transmitting commands, and a transmitter for transmitting commands to the receiver of the external infusion device.Type: ApplicationFiled: March 27, 2003Publication date: September 25, 2003Applicant: MEDTRONIC MINIMED, INC.Inventors: Alfred E. Mann, James D. Causey, Alan Haubach, Luis J. Malave, John Livingston, Cliff Hague, Chad Srisathapat, Jay Yonemoto, Deborah Ruppert, Dennis P. Bishop, Adrian Gut, Bob Murtfeldt
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Publication number: 20030176933Abstract: An implantable infusion pump possesses operational functionality that is, at least in part, controlled by software operating in two processor ICs which are configured to perform some different and some duplicate functions. The pump exchanges messages with an external device via telemetry. Each processor controls a different part of the drug infusion mechanism such that both processors must agree on the appropriateness of drug delivery for infusion to occur. Delivery accumulators are incremented and decremented with delivery requests and with deliveries made. When accumulated amounts reach or exceed, quantized deliverable amounts, infusion is made to occur. The accumulators are capable of being incremented by two or more independent types of delivery requests. Operational modes of the infusion device are changed automatically in view of various system errors that are trapped, various system alarm conditions that are detected, and when excess periods of time lapse between pump and external device interactions.Type: ApplicationFiled: April 10, 2003Publication date: September 18, 2003Applicant: Medtronic MiniMed, Inc.Inventors: Ronald J. Lebel, Timothy J. Starkweather, Philip T. Weiss
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Publication number: 20030167039Abstract: A pump for dispensing a fluid from a reservoir provides a drive system seal within the pump. The pump includes a reservoir cavity adapted to receive the reservoir, and a drive system. The pump also includes at least one plunger slider having one end coupled to the drive system and the other end coupled to the reservoir. The plunger slider is adapted to translate from a retracted position to an extended position to dispense the fluid from the reservoir in response to actuation by the drive system. The pump further includes a sealing ring mounted around the plunger slider, and a spring disposed within the sealing ring. The sealing ring with the spring disposed therein is adapted to allow the plunger slider to translate from the retracted position to the extended position, and to prevent entry of fluid from the reservoir cavity into the drive system.Type: ApplicationFiled: February 19, 2003Publication date: September 4, 2003Applicant: MEDTRONIC MINIMED, INC.Inventor: Sheldon B. Moberg
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Publication number: 20030158520Abstract: An insertion device and insertion set. The insertion device for inserting at least a portion of at least one piercing member of an insertion set through the skin of a patient includes a device housing, a carrier body and a driver. The carrier body is slidably received within the device housing for movement between an advanced position and a retracted position. The carrier body also includes a receiving structure to support the insertion set in a position with the at least one piercing member oriented for insertion through the skin of the patient at a predetermined angle relative to the skin of the patient upon movement of the carrier body from the retracted position to the advanced position.Type: ApplicationFiled: February 20, 2003Publication date: August 21, 2003Applicant: Medtronic MiniMed, Inc.Inventors: Jason H. Safabash, Susan M. McConnell, Randy W. Adair, Jeffery V. Funderburk, April A. Marano, Jeffrey F. Field
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Patent number: 6607509Abstract: An insertion device and insertion set. The insertion device for inserting at least a portion of at least one piercing member of an insertion set through the skin of a patient includes a device housing, a carrier body and a driver. The carrier body is slidably received within the device housing for movement between an advanced position and a retracted position. The carrier body also includes a receiving structure to support the insertion set in a position with the at least one piercing member oriented for insertion through the skin of the patient at a predetermined or variable angle relative to the skin of the patient upon movement of the carrier body from the retracted position to the advanced position.Type: GrantFiled: April 20, 2001Date of Patent: August 19, 2003Assignee: Medtronic MiniMed, Inc.Inventors: Randa M. Bobroff, Lawrence Kiliszewski, Hans Lickliter, Frederick C. Houghton, Jason H. Safabash, Susan M. McConnell, April A. Marano
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Patent number: 6595756Abstract: An electronic control systems and process for infusion devices and pump configurations can provide highly efficient use of electrical power. The system may include a capacitor which is controlled to partially, but not fully discharge, to provide a power pulse to a pump coil. In this manner, the capacitor remains partially charged and need not be re-charged from a fully discharged state. In addition, the power applied to the coil in a given discharge pulse signal may be controlled to correspond to the power needs of the pump, by controlling the degree to which the capacitor is discharged to produce the pulse signal. A power cut-off switch may be provided to control the discharge of the capacitor such that the capacitor is stopped from discharging prior to the actual end of the armature stroke. The time at which the capacitor discharge is stopped may be selected such that energy remaining in the coil after the capacitor stops discharging is sufficient to continue the pump stroke to the actual end of the stroke.Type: GrantFiled: December 27, 2001Date of Patent: July 22, 2003Assignee: Medtronic MiniMed, Inc.Inventors: John Gray, Robert W. Bosley
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Publication number: 20030135160Abstract: A drive mechanism for delivery of infusion medium a coil capable of being electrically activated to provide an electromagnetic field. The coil surrounds a piston channel extending in an axial direction. The piston channel provides a passage for communication of infusion medium to an outlet chamber located at one end of the piston channel. An armature is located adjacent the coil, on one side of the axial channel. The armature is moveable toward a forward position, in response to the electromagnetic field produced by activation of the coil. A piston is located within the piston channel and is moveable axially within the channel to a forward position, in response to movement of the armature to its forward position. The armature and piston are moved toward a retracted position, when the coil is not energized. In the retracted position of the piston, a piston chamber is formed between the piston and a valve member and is filled with infusion medium.Type: ApplicationFiled: February 19, 2003Publication date: July 17, 2003Applicant: Medtronic MiniMed, Inc.Inventors: John F. Gray, Robert W. Bosley
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Patent number: 6591876Abstract: A transfer guard for use by an individual for transferring contents from a supply container into a receiver container includes a supply adapter, a receiver adapter, a support structure and a fluid conducting element. The supply adapter connects the supply container to the transfer guard, and the receiver adapter connects the receiver container to the transfer guard. The support structure couples the supply adapter with the receiver adapter, and supports the fluid conducting element which, passes through the supply adapter and the receiver adapter. The fluid conducting element provides a passage for the contents to transfer from the supply container into the receiver container. The fluid conducting element also includes at least one pointed end that is substantially protected by the transfer guard from contact with the individual.Type: GrantFiled: August 22, 2002Date of Patent: July 15, 2003Assignee: Medtronic MiniMed, Inc.Inventor: Jason H. Safabash
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Patent number: 6594156Abstract: A circuit protection device for protection of sensitive components during high energy radiation sterilization that includes a support substrate and a protective housing. The substrate supports the sensitive components. The protective housing is hermetically coupled to the support substrate to seal the sensitive components within the protective housing. Preferably, the protective housing stops high energy used in the high energy sterilization from damaging the sensitive components from a predetermined exposure level of high energy sterilization. The circuit protection device may further include a protective conductor that is coupled to the support substrate on a side which is opposite the protective housing to prevent high energy from entering the opposite side of the support substrate.Type: GrantFiled: April 24, 2000Date of Patent: July 15, 2003Assignee: MiniMed Inc.Inventors: William P. Van Antwerp, Sheana Karre, Adrian Prokop, Sara Akiko Stinson, Jason Fong, James J. Rosenberg
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Publication number: 20030130616Abstract: A closed loop infusion system controls the rate that fluid is infused into the body of a user. The closed loop infusion system includes a sensor system, a controller, and a delivery system. The sensor system includes a sensor for monitoring a condition of the user. The sensor produces a sensor signal, which is representative of the condition of the user. The sensor signal is used to generate a controller input. The controller uses the controller input to generate commands to operate the delivery system. The delivery system infuses a liquid into the user at a rate dictated by the commands from the controller. Preferably, the sensor system monitors the glucose concentration in the body of the user, and the liquid infused by the delivery system into the body of the user includes insulin.Type: ApplicationFiled: December 31, 2002Publication date: July 10, 2003Applicant: MEDTRONIC MINIMED, INC.Inventors: Garry M. Steil, Kerstin Rebrin
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Publication number: 20030130619Abstract: An insertion device and insertion set. The insertion device for inserting at least a portion of at least one piercing member of an insertion set through the skin of a patient includes a device housing, a carrier body and a driver. The carrier body is slidably received within the device housing for movement between an advanced position and a retracted position. The carrier body also includes a receiving structure to support the insertion set in a position with the at least one piercing member oriented for insertion through the skin of the patient at a predetermined angle relative to the skin of the patient upon movement of the carrier body from the retracted position to the advanced position.Type: ApplicationFiled: February 21, 2003Publication date: July 10, 2003Applicant: MEDTRONIC MINIMED, INC.Inventors: Jason H. Safabash, Susan M. McConnell, Randy W. Adair, Jeffery V. Funderburk, April A. Marano, Jeffrey F. Field
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Publication number: 20030130647Abstract: A drive mechanism for delivery of infusion medium a coil capable of being electrically activated to provide an electromagnetic field. The coil surrounds a piston channel extending in an axial direction. The piston channel provides a passage for communication of infusion medium to an outlet chamber located at one end of the piston channel. An armature is located adjacent the coil, on one side of the axial channel. The armature is moveable toward a forward position, in response to the electromagnetic field produced by activation of the coil. A piston is located within the piston channel and is moveable axially within the channel to a forward position, in response to movement of the armature to its forward position. The armature and piston are moved toward a retracted position, when the coil is not energized. In the retracted position of the piston, a piston chamber is formed between the piston and a valve member and is filled with infusion medium.Type: ApplicationFiled: February 20, 2003Publication date: July 10, 2003Applicant: Medtronic MiniMed, Inc.Inventors: John F. Gray, Robert W. Bosley