Patents by Inventor Julian D. Kavazov

Julian D. Kavazov 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: 8317759
    Abstract: An infusion set for subcutaneous delivery of an infusant. The infusion set may include a base removably attachable to an infusion site and a connector temporarily lockable to the base. The connector can engage the base in a plurality of orientations. The connector locks into the base after at least partial rotation of the connector about the base. The connector may include flexible arms which unlock the connector from the base. The base includes a cannula for insertion through the infusion site. The connector includes a tubing for passing the infusant. The infusant is subcutaneously passable from the tubing through the cannula when the connector is attached to the base. The infusion set may also include a hub removably attachable to the base that includes a needle that extends through the base and the cannula and a guard removably attachable to the base opposite the hub for surrounding the needle.
    Type: Grant
    Filed: January 27, 2009
    Date of Patent: November 27, 2012
    Assignee: Medtronic MiniMed, Inc.
    Inventors: Sheldon B. Moberg, Mark Holt, Albert D. Candioty, Julian D. Kavazov, Lance E. Shetler
  • Patent number: 8313467
    Abstract: Various embodiments of the present invention are directed to equalizing pressure in a reservoir containing fluidic media, possibly due to imperfect installation of the reservoir or an external influence such as an altitude or a temperature change. In various embodiments, fluidic media may be expelled from the reservoir through a needle and contained in an interior volume of a pierceable member before the needle pierces the pierceable member to establish a flow path to a user. In other embodiments, fluidic media may be expelled through a port of the reservoir into a chamber. In further embodiments, fluidic media may be expelled through a channel in a plunger head and out a passage in the reservoir when the channel and passage are aligned. In other embodiments, fluidic media may be expelled through a valve, and the valve may be pierceable by a needle to establish a flow path to the user.
    Type: Grant
    Filed: December 27, 2007
    Date of Patent: November 20, 2012
    Assignee: Medtronic MiniMed, Inc.
    Inventors: Colin A. Chong, Rafael Bikovsky, Julian D. Kavazov, Eric M. Lorenzen, Bradley J. Sargent, Andrew J. Scherer, Rex O. Bare
  • Publication number: 20120289925
    Abstract: A transfer guard may provide a fluid path from a vial to a reservoir containing a plunger head connected to a plunger arm operatively engagable with a handle that at least partially covers a casing configured to allow the handle to operatively engage the plunger arm to move the plunger head to transfer fluidic media from the vial to the reservoir. A support structure may have a chamber, a first adapter for mating with a vial containing fluidic media, and a second adapter for mating with a reservoir containing a plunger head moveable within the reservoir. A first needle may provide a fluid path from the vial to the reservoir and a second needle may connect the vial and the chamber containing an air flow control mechanism for allowing air to flow in one direction.
    Type: Application
    Filed: June 22, 2012
    Publication date: November 15, 2012
    Inventors: Colin A. Chong, Julian D. Kavazov, Rafael Bikovsky, Arsen Ibranyan, Eric M. Lorenzen, Chad Srisathapat
  • Patent number: 8277415
    Abstract: A delivery device includes a durable housing portion and a separable disposable portion that selectively engage and disengage from each other. The disposable housing portion secures to the patient-user and may be disposed of after it has been in use for a prescribed period. Components that normally come into contact with a patient-user or with infusion medium are supported by the disposable housing portion, while the durable housing portion supports other components such as electronics and a drive device. A reservoir is supported by the disposable housing portion and has a moveable plunger that operatively couples to the drive device, when the disposable and durable housing portions are engaged.
    Type: Grant
    Filed: November 22, 2006
    Date of Patent: October 2, 2012
    Assignee: Medtronic MiniMed, Inc.
    Inventors: R. Paul Mounce, Melissa D. Norton, Robert M. Guezuraga, Bradley J. Enegren, Paul F. Bente, IV, Ian B. Hanson, Julian D. Kavazov, Christopher G. Griffin, Sheldon B. Moberg, Mark D. Holt, Susie E. Maule, Paul H. Kovelman
  • Publication number: 20120165736
    Abstract: An infusion set is provided for use in delivering fluid through a cannula, which is housed on a cannula housing, to a selected subcutaneous infusion site on a patient. The fluid is generally a medication, e.g., insulin. The cannula is in fluid communication with a fluid passageway surrounded by a projection on the cannula housing that includes one or more rail-like extensions acting as guides. A connector connects the cannula housing to a fluid delivery system, e.g., an infusion pump. The connector includes a needle, one or more guide arms that slide over the rail-like extensions to guide the needle into the self-sealing septum, and one or more locking arms, with barbs at the end, to connect with corresponding recesses in the cannula housing. An introducer having one or more similar guide arms and locking arms, and a longer needle, may be used to insert the cannula into the patient.
    Type: Application
    Filed: March 7, 2012
    Publication date: June 28, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: Susie E. Maule, Sheldon B. Moberg, Arin N. Holecek, Christopher G. Griffin, Julian D. Kavazov, Paul H. Kovelman
  • Publication number: 20120160848
    Abstract: Various embodiments of the present invention are directed to equalizing pressure in a reservoir containing fluidic media, possibly due to imperfect installation of the reservoir or an external influence such as an altitude or a temperature change. In various embodiments, fluidic media may be expelled from the reservoir through a needle and contained in an interior volume of a pierceable member before the needle pierces the pierceable member to establish a flow path to a user. In other embodiments, fluidic media may be expelled through a port of the reservoir into a chamber. In further embodiments, fluidic media may be expelled through a channel in a plunger head and out a passage in the reservoir when the channel and passage are aligned. In other embodiments, fluidic media may be expelled through a valve, and the valve may be pierceable by a needle to establish a flow path to the user.
    Type: Application
    Filed: March 2, 2012
    Publication date: June 28, 2012
    Inventors: Colin A. Chong, Julian D. Kavazov, Eric M. Lorenzen
  • Patent number: 8187232
    Abstract: A housing may have a needle, plunger, and bias mechanism supported within the housing by a tab configured to retain the plunger in position and to allow the plunger to move under bias force imparted by the bias mechanism to move the needle to an insert position when the tab is removed. A base and a structure may be configured for relative movement there between and may be adapted to be secured to a user with a cannula extending through a body of the structure into the user during use of a medical device. A housing may be adapted to be secured to a user to support a medical device operable with an insertion needle, the housing having a magnifying material for increasing visibility of an injection site.
    Type: Grant
    Filed: September 30, 2010
    Date of Patent: May 29, 2012
    Assignee: Medtronic MiniMed, Inc.
    Inventors: Colin A. Chong, Eric M. Lorenzen, Arsen Ibranyan, Julian D. Kavazov, Rafael Bikovsky
  • Patent number: 8172929
    Abstract: Various embodiments of the present invention are directed to limiting a presence of air bubbles in fluidic media in a reservoir. Air passages may allow air to escape from fluidic media in a reservoir. Membranes may allow for trapping air bubbles in fluidic media before fluidic media enters a reservoir. A membrane may allow air to flow from a first reservoir containing fluidic media to a second reservoir while plunger heads within each of the reservoirs are moved within the reservoirs. An inner reservoir with a membrane may be moveable within an outer reservoir to allow air to move from the outer reservoir to the inner reservoir. An inner reservoir containing pressurized gas may allow fluidic media to be transferred to an outer reservoir.
    Type: Grant
    Filed: May 27, 2011
    Date of Patent: May 8, 2012
    Assignee: Medtronic MiniMed, Inc.
    Inventors: Julian D. Kavazov, Rafael Bikovsky, Arsen Ibranyan, David Hezzell, Christopher G. Griffin, Mike Lee, Truong Gia Luan, Benjamin X. Shen, Thomas Miller
  • Patent number: 8162876
    Abstract: An infusion set is provided for use in delivering fluid through a cannula, which is housed on a cannula housing, to a selected subcutaneous infusion site on a patient. The fluid is generally a medication, for example, insulin. The cannula is in fluid communication with a fluid passageway surrounded by a projection on the cannula housing that includes one or more rail-like extensions acting as connection guides. A connector connects the cannula housing to a fluid delivery system, such as an infusion pump. The connector includes a connecting needle and one or more guide arms that slide over the rail-like extensions to guide the needle into the self-sealing septum. The connector includes one or more locking arms, with barbs at the end, to connect with one or more recesses that are provided in the cannula housing.
    Type: Grant
    Filed: October 18, 2007
    Date of Patent: April 24, 2012
    Assignee: Medtronic Minimed, Inc.
    Inventors: Susie E. Maule, Sheldon B. Moberg, Arin N. Holecek, Christopher G. Griffin, Julian D. Kavazov, Paul H. Kovelman
  • Publication number: 20120059323
    Abstract: An insertion device, generally used with an infusion set, including a needle being adapted for puncturing at one end and including at the opposite end a hub. The hub includes a handle part and a guard part that are capable of securing the needle through the use of locks. Locking structures are used to secure the insertion device in a position where the needle is covered in a locked position, avoiding unintended contact with the needle.
    Type: Application
    Filed: November 9, 2011
    Publication date: March 8, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: SHELDON B. MOBERG, SUSIE E. MAULE, MARK D. HOLT, PAUL S. CHENEY, II, ARIN N. HOLECEK, CHRISTOPHER G. GRIFFIN, JULIAN D. KAVAZOV
  • Publication number: 20120059322
    Abstract: An insertion device, generally used with an infusion set, including a needle being adapted for puncturing at one end and including at the opposite end a hub. The hub includes a handle part and a guard part that are capable of securing the needle through the use of locks. Locking structures are used to secure the insertion device in a position where the needle is covered in a locked position, avoiding unintended contact with the needle.
    Type: Application
    Filed: November 9, 2011
    Publication date: March 8, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: SHELDON B. MOBERG, SUSIE E. MAULE, MARK D. HOLT, PAUL S. CHENEY, II, ARIN N. HOLECEK, CHRISTOPHER G. GRIFFIN, JULIAN D. KAVAZOV
  • Publication number: 20120059320
    Abstract: An infusion set is provided for use in delivering fluid through a cannula, which is housed on a cannula housing, to a selected subcutaneous infusion site on a patient. The fluid is generally a medication, e.g., insulin. The cannula is in fluid communication with a fluid passageway surrounded by a projection on the cannula housing that includes one or more rail-like extensions acting as guides. A connector connects the cannula housing to a fluid delivery system, e.g., an infusion pump. The connector includes a needle, one or more guide arms that slide over the rail-like extensions to guide the needle into the self-sealing septum, and one or more locking arms, with barbs at the end, to connect with corresponding recesses in the cannula housing. An introducer having one or more similar guide arms and locking arms, and a longer needle, may be used to insert the cannula into the patient.
    Type: Application
    Filed: November 14, 2011
    Publication date: March 8, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: SUSIE E. MAULE, Sheldon B. Moberg, Arin N. Holecek, Christopher G. Griffin, Julian D. Kavazov, Paul H. Kovelman
  • Publication number: 20120035549
    Abstract: An insertion device, generally used with an infusion set, including a needle being adapted for puncturing at one end and including at the opposite end a hub. The hub includes a handle part and a guard part that are capable of securing the needle through the use of locks. Locking structures are used to secure the insertion device in a position where the needle is covered in a locked position, avoiding unintended contact with the needle.
    Type: Application
    Filed: October 19, 2011
    Publication date: February 9, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: SHELDON B. MOBERG, Susie E. Maule, Mark D. Holt, Paul S. Cheney, II, Arin N. Holecek, Christopher G. Griffin, Julian D. Kavazov
  • Patent number: 8083716
    Abstract: Various embodiments of the present invention are directed to limiting a presence of air bubbles in a fluidic medium expelled from a reservoir. In various embodiments, a plunger head within a reservoir is shaped so as to limit a presence of air bubbles in a fluidic medium expelled from the reservoir. Also, in various embodiments, a reservoir is shaped so as to limit a presence of air bubbles in a fluidic medium expelled from the reservoir. In some embodiments, both a reservoir and a plunger head within the reservoir are shaped so as to limit a presence of air bubbles in a fluidic medium expelled from the reservoir.
    Type: Grant
    Filed: December 26, 2007
    Date of Patent: December 27, 2011
    Assignee: Medtronic Minimed, Inc.
    Inventors: Julian D. Kavazov, Sheldon B. Moberg, Ian B. Hanson, Colin A. Chong, Eric M. Lorenzen, Rafael Bikovsky, Truong Gia Luan, Mike Lee, Christopher G. Griffin, Thomas Miller
  • Patent number: 8070722
    Abstract: An insertion device, generally used with an infusion set, including a needle being adapted for puncturing at one end and including at the opposite end a hub. The hub includes a handle part and a guard part that are capable of securing the needle through the use of locks. Locking structures are used to secure the insertion device in a position where the needle is covered in a locked position, avoiding unintended contact with the needle.
    Type: Grant
    Filed: June 8, 2009
    Date of Patent: December 6, 2011
    Assignee: Medtronic Minimed, Inc.
    Inventors: Sheldon B. Moberg, Susie E. Maule, Mark D. Holt, Paul S. Cheney, II, Arin N. Holecek, Christopher G. Griffin, Julian D. Kavazov
  • Publication number: 20110247719
    Abstract: Various embodiments of the present invention are directed to transferring fluidic media from a vial to a reservoir. In various embodiments, fluidic media may be transferred from the vial to the reservoir by moving a housing portion to move a plunger head located in the reservoir to draw fluidic media from the vial to the reservoir. In other embodiments, fluidic media may be transferred from the vial to the reservoir while the reservoir is held by a holding unit and vibrated by a vibrator to remove air from the fluidic media. In some embodiments, fluidic media may be transferred from the vial to the reservoir by moving a handle operatively connected to a bias member for assisting with the transfer of fluidic media. In other embodiments, the transfer of fluidic media may be assisted by a bias member and a needle connecting atmosphere and the vial.
    Type: Application
    Filed: June 17, 2011
    Publication date: October 13, 2011
    Inventor: Julian D. Kavazov
  • Publication number: 20110230834
    Abstract: Various embodiments of the present invention are directed to limiting a presence of air bubbles in fluidic media in a reservoir. Air passages may allow air to escape from fluidic media in a reservoir. Membranes may allow for trapping air bubbles in fluidic media before fluidic media enters a reservoir. A membrane may allow air to flow from a first reservoir containing fluidic media to a second reservoir while plunger heads within each of the reservoirs are moved within the reservoirs. An inner reservoir with a membrane may be moveable within an outer reservoir to allow air to move from the outer reservoir to the inner reservoir. An inner reservoir containing pressurized gas may allow fluidic media to be transferred to an outer reservoir.
    Type: Application
    Filed: May 27, 2011
    Publication date: September 22, 2011
    Inventors: Julian D. Kavazov, Rafael Bikovsky, Arsen Ibranyan, David Hezzell, Christopher G. Griffin, Mike Lee, Truong Gia Luan, Benjamin X. Shen, Thomas Miller
  • Publication number: 20110190700
    Abstract: A reservoir includes a reservoir body portion and a collecting portion. The reservoir body portion having a wall defining an interior volume for containing fluidic media, the reservoir having a first port in the reservoir body portion to be in fluid flow communication with the interior volume, the first port for expelling fluidic media from the interior volume as a plunger is moved within the reservoir. The collecting portion having a wall defining a volume in fluid flow communication with the interior volume, the volume of the collecting portion for collecting gas bubbles in the fluidic media as the fluidic media is expelled through the first port from the interior volume of the reservoir body portion, the reservoir having a second port in the collecting portion to be in fluid flow communication with the volume of the collecting portion, the second port for receiving fluidic media into the reservoir.
    Type: Application
    Filed: April 8, 2011
    Publication date: August 4, 2011
    Inventors: Julian D. KAVAZOV, Ian B. Hanson, Colin A. Chong, Eric M. Lorenzen, Rafael Bikovsky, Truong Gia Luan, Mike Teang Lee, Thomas P. Miller
  • Patent number: 7963954
    Abstract: Various embodiments of the present invention are directed to transferring fluidic media from a vial to a reservoir. In various embodiments, fluidic media may be transferred from the vial to the reservoir by moving a housing portion to move a plunger head located in the reservoir to draw fluidic media from the vial to the reservoir. In other embodiments, fluidic media may be transferred from the vial to the reservoir while the reservoir is held by a holding unit and vibrated by a vibrator to remove air from the fluidic media. In some embodiments, fluidic media may be transferred from the vial to the reservoir by moving a handle operatively connected to a bias member for assisting with the transfer of fluidic media. In other embodiments, the transfer of fluidic media may be assisted by a bias member and a needle connecting atmosphere and the vial.
    Type: Grant
    Filed: April 22, 2008
    Date of Patent: June 21, 2011
    Assignee: Medtronic Minimed, Inc.
    Inventor: Julian D. Kavazov
  • Patent number: 7959715
    Abstract: Various embodiments of the present invention are directed to limiting a presence of air bubbles in fluidic media in a reservoir. Air passages may allow air to escape from fluidic media in a reservoir. Membranes may allow for trapping air bubbles in fluidic media before fluidic media enters a reservoir. A membrane may allow air to flow from a first reservoir containing fluidic media to a second reservoir while plunger heads within each of the reservoirs are moved within the reservoirs. An inner reservoir with a membrane may be moveable within an outer reservoir to allow air to move from the outer reservoir to the inner reservoir. An inner reservoir containing pressurized gas may allow fluidic media to be transferred to an outer reservoir.
    Type: Grant
    Filed: April 29, 2008
    Date of Patent: June 14, 2011
    Assignee: Medtronic Minimed, Inc.
    Inventors: Julian D. Kavazov, Rafael Bikovsky, Arsen Ibranyan, David Hezzell, Christopher G. Griffin, Mike Lee, Truong Gia Luan, Benjamin X. Shen, Thomas Miller