Patents by Inventor K. Angela Macfarlane

K. Angela Macfarlane 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: 9937073
    Abstract: A comfortable insert comprises a retention structure sized for placement under the eyelids and along at least a portion of conjunctival sac of the upper and lower lids of the eye. The retention structure resists deflection when placed in the conjunctival sac of the eye and to guide the insert along the sac when the eye moves. The retention structure can be configured in many ways to provide the resistance to deflection and may comprise a hoop strength so as to urge the retention structure outward and inhibit movement of the retention structure toward the cornea. The insert may move rotationally with deflection along the conjunctival sac, and may comprise a retention structure having a cross sectional dimension sized to fit within folds of the conjunctiva. The insert may comprise a release mechanism and therapeutic agent to release therapeutic amounts of the therapeutic agent for an extended time.
    Type: Grant
    Filed: January 20, 2015
    Date of Patent: April 10, 2018
    Assignee: ForSight Vision5, Inc.
    Inventors: Eugene de Juan, Jr., Yair Alster, Cary J. Reich, K. Angela Macfarlane, Janelle Chang, Stephen Boyd, David Sierra, Jose D. Alejandro, Douglas Sutton, Alexander J. Gould
  • Patent number: 9883968
    Abstract: An injector apparatus comprises an elongate structure having one or more openings positionable near a penetrable barrier of an implantable device so as to receive fluid of the implantable device. The apparatus comprises a needle and a sheath extending over at least a portion of the needle. The elongate structure may comprise a distal tip to penetrate tissue and the penetrable barrier, and a distal opening near the tip to release therapeutic fluid into the implantable chamber. In many embodiments the distal tip, the distal opening, and the plurality of openings are separated from a stop that engages a tissue of the patient and limit penetration depth such that the distal opening and the plurality of openings are located along an axis of the implantable device to increase an efficiency of the exchange.
    Type: Grant
    Filed: September 13, 2012
    Date of Patent: February 6, 2018
    Assignee: ForSight Vision4, Inc.
    Inventors: Darren Doud, Randolph E. Campbell, Signe Erickson, K. Angela MacFarlane, Mike Barrett, Christina Skieller, David Batten, Greg Stine, Eugene de Juan, Jr., Douglas Sutton, Kathleen Cogan Farinas
  • Publication number: 20180011341
    Abstract: A conformable covering comprises an outer portion with rigidity to resist movement on the cornea and an inner portion to contact the cornea and provide an environment for epithelial regeneration. The inner portion of the covering can be configured in many ways so as to conform at least partially to an ablated stromal surface so as to correct vision. The conformable inner portion may have at least some rigidity so as to smooth the epithelium such that the epithelium regenerates rapidly and is guided with the covering so as to form a smooth layer for vision. The inner portion may comprise an amount of rigidity within a range from about 1×10?4 Pa*m3 to about 5×10?4 Pa*m3 so as to deflect and conform at least partially to the ablated cornea and smooth an inner portion of the ablation with an amount of pressure when deflected.
    Type: Application
    Filed: September 5, 2017
    Publication date: January 11, 2018
    Inventors: EUGENE DE JUAN, JR., CARY J. REICH, YAIR ALSTER, K. ANGELA MACFARLANE, DOUG RIMER, DOUGLAS SUTTON, DEAN CARSON, ENRIQUE BARRAGAN, MATT CLARKE, ASHLEY TUAN, BRIAN LEVY
  • Patent number: 9861521
    Abstract: Methods and apparatus provide a therapeutic fluid to devices implanted in the body, for example to containers of devices implanted in the eye of a patient. The methods and apparatus may comprise an injector to increase an amount of therapeutic agent injected into the device implanted in the eye, or a structure to receive the therapeutic fluid within the device implanted in the eye, or combinations thereof. The device implanted in the eye may comprise a reservoir chamber having a fluid with a density different than the therapeutic fluid, and the apparatus can be adapted to at least partially separate the implanted device fluid from therapeutic fluid within the reservoir chamber to increase and amount of therapeutic fluid placed in the reservoir chamber.
    Type: Grant
    Filed: May 15, 2015
    Date of Patent: January 9, 2018
    Assignee: ForSight Vision4, Inc.
    Inventors: Eugene de Juan, Jr., Yair Alster, Kathleen Cogan Farinas, K. Angela MacFarlane, Cary J. Reich, Randolph E. Campbell, Darren Doud, Signe Erickson, Mike Barrett, David Batten, Christina Skieller, Greg Stine
  • Patent number: 9810921
    Abstract: A conformable covering comprises an outer portion with rigidity to resist movement on the cornea and an inner portion to contact the cornea and provide an environment for epithelial regeneration. The inner portion of the covering can be configured in many ways so as to conform at least partially to an ablated stromal surface so as to correct vision. The conformable inner portion may have at least some rigidity so as to smooth the epithelium such that the epithelium regenerates rapidly and is guided with the covering so as to form a smooth layer for vision. The inner portion may comprise an amount of rigidity within a range from about 1×10-4 Pa*m3 to about 5×10-4 Pa*m3 so as to deflect and conform at least partially to the ablated cornea and smooth an inner portion of the ablation with an amount of pressure when deflected.
    Type: Grant
    Filed: December 11, 2015
    Date of Patent: November 7, 2017
    Assignee: NEXISVISION, INC.
    Inventors: Eugene De Juan, Jr., Cary J. Reich, Yair Alster, K. Angela MacFarlane, Doug Rimer, Douglas Sutton, Dean Carson, Enrique Barragan, Matt Clarke, Ashley Tuan, Brian Levy
  • Publication number: 20170258634
    Abstract: An injectable formulation of therapeutic agent may comprise the therapeutic agent and a stabilizer such that a substantial portion of the stabilizer remains in the therapeutic device to stabilize the therapeutic agent when the therapeutic agent is released from the therapeutic device. The injectable formulation may comprise one or more of binding agent particles or erodible material particles, such that the formulation can be injected into the therapeutic device. The binding agent particles can bind reversibly to the therapeutic agent so as to modulate release of the therapeutic agent, and the erodible material particles can generate protons of an acid so as to increase stability of the therapeutic agent and may modulate release of the therapeutic agent. The therapeutic agent can be combined with one or more of the stabilizer, the binding agent particles or the erodible particles to increase stability of the therapeutic agent and may modulate release.
    Type: Application
    Filed: May 26, 2017
    Publication date: September 14, 2017
    Inventors: Eugene de Juan, JR., Yair Alster, Steven M. Chamow, Kathleen Cogan Farinas, K. Angela Macfarlane, Cary J. Reich, Randolph E. Campbell, Signe Erickson, Blaine Bueche
  • Publication number: 20170131566
    Abstract: Methods and apparatus can fit coverings to treat eyes. The treated eye may comprise a natural eye, for example an eye treated for refractive error with a contact lens, or an eye having an epithelial defect of the eye, such as an eye ablated with PRK refractive surgery. In many embodiments, the covering can be identified so as to provide improved flow of tear liquid under the covering. The covering can be identified based on an inner corneal curvature and an outer corneal curvature and one or more of a limbus sag height or a conjunctival sag height. The covering may form a chamber when placed on the eye to pump tear liquid under at least a portion of the covering. The covering may comprise an outer portion with rigidity to resist movement on the cornea and an inner portion to contact the cornea and provide an environment for epithelial regeneration.
    Type: Application
    Filed: June 16, 2016
    Publication date: May 11, 2017
    Inventors: Eugene de Juan, JR., Yair Alster, Cary J. Reich, Ashley Tuan, K. Angela Macfarlane, Matt Clarke, Brian Levy
  • Publication number: 20170056242
    Abstract: A therapeutic system comprises an ocular insert placed on a region outside an optical zone of an eye. The ocular insert comprises two structures: a first skeletal structure and a second cushioning structure. The first structure functions as a skeletal frame which maintains positioning of the implant along the anterior portion of the eye and provides support to the second, cushioning structure. This first structure maintains the attachment of the therapeutic system to the anterior portion of the eye for at least thirty days. In some embodiments the first structure remains a constant size and shape, e.g. a ring shape, a ring with haptics, or a curvilinear ring that is confined to and restrainingly engages the inferior and superior conjunctival fornices so as to retain the implant within the tear fluid and/or against the tissues of the eye.
    Type: Application
    Filed: August 5, 2016
    Publication date: March 2, 2017
    Inventors: Yair Alster, Eugene de Juan, JR., Cary J. Reich, Stephen Boyd, David Sierra, Jose D. Alejandro, K. Angela Macfarlane, Douglas Sutton
  • Publication number: 20170035785
    Abstract: Described herein are compositions and methods for the treatment of meibomian gland dysfunction. Said compositions and methods comprise keratolytic agents, such as salicylic acid, selenium disulfide, or the like. Topical administration of said compositions to the eyelid margin or surrounding areas provides therapeutic benefit to patients suffering from meibomian gland dysfunction.
    Type: Application
    Filed: September 19, 2016
    Publication date: February 9, 2017
    Inventors: Yair ALSTER, Omer RAFAELI, K. Angela MACFARLANE, Cary REICH, Shimon AMSELEM, Doron FRIEDMAN
  • Publication number: 20170023800
    Abstract: A conformable covering comprises an outer portion with rigidity to resist movement on the cornea and an inner portion to contact the cornea and provide an environment for epithelial regeneration. The inner portion of the covering can be configured in many ways so as to conform at least partially to an ablated stromal surface so as to correct vision. The conformable inner portion may have at least some rigidity so as to smooth the epithelium such that the epithelium regenerates rapidly and is guided with the covering so as to form a smooth layer for vision. The inner portion may comprise an amount of rigidity within a range from about 1×10?4 Pa*m3 to about 5×10?4 Pa*m3 so as to deflect and conform at least partially to the ablated cornea and smooth an inner portion of the ablation with an amount of pressure when deflected.
    Type: Application
    Filed: October 10, 2016
    Publication date: January 26, 2017
    Inventors: Eugene de Juan, JR., Cary J. Reich, Yair Alster, K. Angela Macfarlane, Doug Rimer, Douglas Sutton, Dean Carson, Enrique Barragan, Matt Clarke, Ashley Tuan, Brian Levy
  • Patent number: 9498385
    Abstract: A conformable covering comprises an outer portion with rigidity to resist movement on the cornea and an inner portion to contact the cornea and provide an environment for epithelial regeneration. The inner portion of the covering can be configured in many ways so as to conform at least partially to an ablated stromal surface so as to correct vision. The conformable inner portion may have at least some rigidity so as to smooth the epithelium such that the epithelium regenerates rapidly and is guided with the covering so as to form a smooth layer for vision. The inner portion may comprise an amount of rigidity within a range from about 1×10?4 Pa*m3 to about 5×10?4 Pa*m3 so as to deflect and conform at least partially to the ablated cornea and smooth an inner portion of the ablation with an amount of pressure when deflected.
    Type: Grant
    Filed: October 25, 2010
    Date of Patent: November 22, 2016
    Assignee: NexisVision, Inc.
    Inventors: Eugene de Juan, Jr., Cary J. Reich, Yair Alster, K. Angela MacFarlane, Doug Rimer, Douglas Sutton, Dean Carson, Enrique Barragan, Matt Clarke, Ashley Tuan, Brian Levy
  • Patent number: 9492315
    Abstract: A therapeutic device to release a therapeutic agent comprises a porous structure coupled to a container comprising a reservoir. The reservoir comprises a volume sized to release therapeutic amounts of the therapeutic agent for an extended time when coupled to the porous structure and implanted in the patient. The porous structure may comprise a first side coupled to the reservoir and a second side to couple to the patient to release the therapeutic agent. The length of the channels extending from the first side to the second side may comprise an effective length greater than a distance across the porous structure from the first side to the second side. The therapeutic device may comprise a penetrable barrier to inject therapeutic agent into the device when implanted in the patient.
    Type: Grant
    Filed: August 5, 2011
    Date of Patent: November 15, 2016
    Assignee: ForSight Vision4, Inc.
    Inventors: Eugene de Juan, Jr., Yair Alster, Kathleen Cogan Farinas, K. Angela MacFarlane, Cary J. Reich, Randolph E. Campbell
  • Patent number: 9463201
    Abstract: Described herein are compositions and methods for the treatment of meibomian gland dysfunction. Said compositions and methods comprise keratolytic agents, such as salicylic acid, selenium disulfide, or the like. Topical administration of said compositions to the eyelid margin or surrounding areas provides therapeutic benefit to patients suffering from meibomian gland dysfunction.
    Type: Grant
    Filed: June 5, 2015
    Date of Patent: October 11, 2016
    Assignee: M.G. THERAPEUTICS LTD
    Inventors: Yair Alster, Omer Rafaeli, K. Angela Macfarlane, Cary Reich, Shimon Amselem, Doron Friedman
  • Patent number: 9456878
    Abstract: A marking device for identifying a subcutaneous biopsy cavity having a first nonabsorbable marker element detectable by a first imaging modality and a second nonabsorbable marker element detectable by a second imaging modality but not detectable by the first imaging modality.
    Type: Grant
    Filed: May 11, 2010
    Date of Patent: October 4, 2016
    Assignee: DEVICOR MEDICAL PRODUCTS, INC.
    Inventors: K. Angela Macfarlane, Sascha Zarins
  • Publication number: 20160243291
    Abstract: The present disclosure is directed to a pharmaceutical delivery device useful for the treatment of ocular diseases and disorders through sustained release of therapeutic doses of a pharmaceutical agent, while increasing or reducing formation and/or accumulation of mucus.
    Type: Application
    Filed: October 13, 2014
    Publication date: August 25, 2016
    Inventors: Cary J. Reich, K. Angela Macfarlane, Yair Alster, Logan Stark
  • Patent number: 9421126
    Abstract: A therapeutic system comprises an ocular insert placed on a region outside an optical zone of an eye. The ocular insert comprises two structures: a first skeletal structure and a second cushioning structure. The first structure functions as a skeletal frame which maintains positioning of the implant along the anterior portion of the eye and provides support to the second, cushioning structure. This first structure maintains the attachment of the therapeutic system to the anterior portion of the eye for at least thirty days. In some embodiments the first structure remains a constant size and shape, e.g. a ring shape, a ring with haptics, or a curvilinear ring that is confined to and restrainingly engages the inferior and superior conjunctival fornices so as to retain the implant within the tear fluid and/or against the tissues of the eye.
    Type: Grant
    Filed: June 1, 2011
    Date of Patent: August 23, 2016
    Assignee: ForSight Vision5, Inc.
    Inventors: Yair Alster, Eugene de Juan, Jr., Cary J. Reich, Stephen Boyd, David Sierra, Jose D. Alejandro, K. Angela Macfarlane, Douglas Sutton
  • Publication number: 20160170233
    Abstract: A conformable covering comprises an outer portion with rigidity to resist movement on the cornea and an inner portion to contact the cornea and provide an environment for epithelial regeneration. The inner portion of the covering can be configured in many ways so as to conform at least partially to an ablated stromal surface so as to correct vision. The conformable inner portion may have at least some rigidity so as to smooth the epithelium such that the epithelium regenerates rapidly and is guided with the covering so as to form a smooth layer for vision. The inner portion may comprise an amount of rigidity within a range from about 1×10-4 Pa*m3 to about 5×10-4 Pa*m3 so as to deflect and conform at least partially to the ablated cornea and smooth an inner portion of the ablation with an amount of pressure when deflected.
    Type: Application
    Filed: December 11, 2015
    Publication date: June 16, 2016
    Inventors: EUGENE DE JUAN, JR., CARY J. REICH, YAIR ALSTER, K. ANGELA MACFARLANE, DOUG RIMER, DOUGLAS SUTTON, DEAN CARSON, ENRIQUE BARRAGAN, MATT CLARKE, ASHLEY TUAN, BRIAN LEVY
  • Publication number: 20160106775
    Abstract: Described herein are compositions and methods for the treatment of meibomian gland dysfunction. Said compositions and methods comprise keratolytic agents, such as salicylic acid, selenium disulfide, or the like. Topical administration of said compositions to the eyelid margin or surrounding areas provides therapeutic benefit to patients suffering from meibomian gland dysfunction.
    Type: Application
    Filed: June 5, 2015
    Publication date: April 21, 2016
    Inventors: Yair Alster, Omer Rafaeli, K. Angela Macfarlane, Cary Reich, Shimon Amselem, Doron Friedman
  • Publication number: 20160067109
    Abstract: A conformable covering comprises an outer portion with rigidity to resist movement on the cornea and an inner portion to contact the cornea and provide an environment for epithelial regeneration. The inner portion of the covering can be configured in many ways so as to conform at least partially to an ablated stromal surface so as to correct vision. The conformable inner portion may have at least some rigidity so as to smooth the epithelium such that the epithelium regenerates rapidly and is guided with the covering so as to form a smooth layer for vision. The inner portion may comprise an amount of rigidity within a range from about 1×10-4 Pa*m3 to about 5×10-4 Pa*m3 so as to deflect and conform at least partially to the ablated cornea and smooth an inner portion of the ablation with an amount of pressure when deflected.
    Type: Application
    Filed: July 8, 2015
    Publication date: March 10, 2016
    Inventors: EUGENE DE JUAN, JR., CARY J. REICH, YAIR ALSTER, K. ANGELA MACFARLANE, DOUG RIMER, DOUGLAS SUTTON, DEAN CARSON, ENRIQUE BARRAGAN, MATT CLARKE, ASHLEY TUAN, BRIAN LEVY
  • Patent number: 9241837
    Abstract: A conformable covering comprises an outer portion with rigidity to resist movement on the cornea and an inner portion to contact the cornea and provide an environment for epithelial regeneration. The inner portion of the covering can be configured in many ways so as to conform at least partially to an ablated stromal surface so as to correct vision. The conformable inner portion may have at least some rigidity so as to smooth the epithelium such that the epithelium regenerates rapidly and is guided with the covering so as to form a smooth layer for vision. The inner portion may comprise an amount of rigidity within a range from about 1×10?4 Pa*m3 to about 5×10?4 Pa*m3 so as to deflect and conform at least partially to the ablated cornea and smooth an inner portion of the ablation with an amount of pressure when deflected.
    Type: Grant
    Filed: May 23, 2014
    Date of Patent: January 26, 2016
    Assignee: NexisVision, Inc.
    Inventors: Eugene de Juan, Cary J. Reich, Yair Alster, K. Angela Macfarlane, Doug Rimer, Douglas Sutton, Dean Carson, Enrique Barragan, Matt Clarke, Ashley Tuan, Brian Levy