Patents by Inventor Douglas Michael Ackermann

Douglas Michael Ackermann 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: 10238861
    Abstract: Described here are devices, systems, and methods for treating one or more conditions (such as dry eye) or improving ocular health by providing stimulation to nasal or sinus tissue. Generally, the devices may be handheld or implantable. In some variations, the handheld devices may have a stimulator body and a stimulator probe having one or more nasal insertion prongs. When the devices and systems are used to treat dry eye, nasal or sinus tissue may be stimulated to increase tear production, reduce the symptoms of dry eye, and/or improve ocular surface health.
    Type: Grant
    Filed: February 11, 2016
    Date of Patent: March 26, 2019
    Assignee: Oculeve, Inc.
    Inventors: Douglas Michael Ackermann, James Donald Loudin
  • Patent number: 10207108
    Abstract: Described here are systems, devices, and methods for implanting a nasal stimulator into nasal tissue and electrically stimulating nasal tissue. In some variations, a nasal microstimulator implantation system may comprise an implantation tool and an implantable microstimulator. An implantation tool may comprise a shaft and features to releasably attach a microstimulator. A microstimulator may comprise a passive stimulation circuit and one or more electrodes. In other variations, a nasal implantation system may additionally comprise one or more additional devices, such as a controller, an electrical probe, and/or a dissection tool.
    Type: Grant
    Filed: October 22, 2015
    Date of Patent: February 19, 2019
    Assignee: Oculeve, Inc.
    Inventors: Manfred Franke, James Donald Loudin, Janusz Kuzma, Paul Taehyun Yun, Douglas Michael Ackermann
  • Patent number: 10155108
    Abstract: Described here are devices, systems, and methods for treating one or more conditions (such as dry eye) or improving ocular health by providing stimulation to nasal or sinus tissue. Generally, the devices may be handheld or implantable. In some variations, the handheld devices may have a stimulator body and a stimulator probe having one or more nasal insertion prongs. When the devices and systems are used to treat dry eye, nasal or sinus tissue may be stimulated to increase tear production, reduce the symptoms of dry eye, and/or improve ocular surface health.
    Type: Grant
    Filed: April 18, 2014
    Date of Patent: December 18, 2018
    Assignee: OCULEVE, INC.
    Inventors: Douglas Michael Ackermann, James Donald Loudin
  • Patent number: 10143846
    Abstract: A stimulation system stimulates anatomical targets in a patient for treatment of dry eye. The system may include a controller and a microstimulator. The controller may be implemented externally to or internally within the microstimulator. The components of the controller and microstimulator may be implemented in a single unit or in separate devices. When implemented separately, the controller and microstimulator may communicate wirelessly or via a wired connection. The microstimulator may generate pulses from a controller signal and apply the signal via one or more electrodes to an anatomical target. The microstimulator may not have any intelligence or logic to shape or modify a signal. The microstimulator may be a passive device configured to generate a pulse based on a signal received from the controller. The microstimulator may shape or modify a signal. Waveforms having different frequency, amplitude and period characteristics may stimulate different anatomical targets in a patient.
    Type: Grant
    Filed: December 1, 2017
    Date of Patent: December 4, 2018
    Assignee: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Douglas Michael Ackermann, Daniel Palanker, James Donald Loudin, Garrett Cale Smith, Victor Wayne McCray, Brandon McNary Felkins
  • Publication number: 20180280691
    Abstract: Disclosed herein are systems and methods for nerve conduction block. The systems and methods can utilize at least one renewable electrode. The methods can include delivering a first direct current with a first polarity to an electrode proximate nervous tissue sufficient to block conduction in the nervous tissue. Delivering the first direct current can place the nervous tissue in a hypersuppressed state at least partially preventing conduction of the nervous tissue after cessation of delivering of the first direct current. The nervous tissue can be maintained in the hypersuppressed state for a desired period, such as at least about 1 minute.
    Type: Application
    Filed: April 2, 2018
    Publication date: October 4, 2018
    Inventors: Douglas Michael Ackermann, Kenneth Wu
  • Publication number: 20180250506
    Abstract: Example adjustable electrodes are described. One example adjustable electrode includes two or more contacts configured to selectively deliver high frequency alternating current (HFAC) to a nerve in an amount sufficient to produce an HFAC nerve conduction block in the nerve. The example adjustable electrode may also include a logic configured to selectively control which of the two or more contacts deliver HFAC to the nerve to control whether the nerve electrode is in a first (e.g., onset response mitigating) configuration or in a second (e.g., HFAC nerve conduction block maintenance) configuration. The electrode may be used in applications including, but not limited to, nerve block applications, and nerve stimulation applications. The electrode may be adjusted by changing attributes including, but not limited to, the number, length, orientation, distance between, surface area, and distance from a nerve of contacts to be used to deliver the HFAC.
    Type: Application
    Filed: May 8, 2018
    Publication date: September 6, 2018
    Inventors: Kevin Kilgore, Douglas Michael Ackermann, JR., Niloy Bhadra, Narendra Bhadra, Joe Payer
  • Patent number: 10039917
    Abstract: Example adjustable electrodes are described. One example adjustable electrode includes two or more contacts configured to selectively deliver high frequency alternating current (HFAC) to a nerve in an amount sufficient to produce an HFAC nerve conduction block in the nerve. The example adjustable electrode may also include a logic configured to selectively control which of the two or more contacts deliver HFAC to the nerve to control whether the nerve electrode is in a first (e.g., onset response mitigating) configuration or in a second (e.g., HFAC nerve conduction block maintenance) configuration. The electrode may be used in applications including, but not limited to, nerve block applications, and nerve stimulation applications. The electrode may be adjusted by changing attributes including, but not limited to, the number, length, orientation, distance between, surface area, and distance from a nerve of contacts to be used to deliver the HFAC.
    Type: Grant
    Filed: April 29, 2016
    Date of Patent: August 7, 2018
    Assignee: Case Western Reserve University
    Inventors: Kevin Kilgore, Douglas Michael Ackermann, Jr., Niloy Bhadra, Narendra Bhadra, Joe Payer
  • Publication number: 20180161579
    Abstract: A stimulation system for treating a condition (e.g., dry eye, Meibomian gland disease) of a subject includes a stimulator configured to deliver a stimulus to external facial tissue of the subject, at least one sensor configured to detect a characteristic of the subject, and a control system in communication with the sensor and configured to adjust the stimulus at least partially based on the detected subject characteristic. In some variations, the control system may be configured to adjust the stimulus at least partially based on a detected environmental condition. The stimulator may be configured to activate a nerve of the subject, thereby increasing tear production. The stimulation system may, for example, include a device configured to be worn by a subject such as eyeglasses or a mask, or held by a subject such as handheld stimulator device.
    Type: Application
    Filed: December 1, 2017
    Publication date: June 14, 2018
    Inventors: Manfred FRANKE, Chao LIU, Douglas Michael ACKERMANN, Diane Michelle SENCHYNA, James Donald LOUDIN
  • Publication number: 20180153394
    Abstract: Generally, a machine may include a processor and a memory connected to the processor, where the memory stores instructions executed by the processor to determine first and second properties related to dry eye symptoms of a patient. The properties may be used to form a dry eye forecast. A treatment recommendation may be selected based at least in part upon the dry eye forecast. The treatment recommendation may be supplied to a device.
    Type: Application
    Filed: November 30, 2017
    Publication date: June 7, 2018
    Inventors: Manfred FRANKE, Chao LIU, Abirami MURALIDHARAN, James Donald LOUDIN, Douglas Michael ACKERMANN, Michael G. ROGERS
  • Publication number: 20180154137
    Abstract: Described here are devices, systems, and methods for treating one or more conditions (such as dry eye) or improving ocular health by providing stimulation to nasal or sinus tissue. Generally, the devices may be handheld or implantable. In some variations, the handheld devices may have a stimulator body and a stimulator probe having one or more nasal insertion prongs. When the devices and systems are used to treat dry eye, nasal or sinus tissue may be stimulated to increase tear production, reduce the symptoms of dry eye, and/or improve ocular surface health.
    Type: Application
    Filed: December 21, 2017
    Publication date: June 7, 2018
    Inventors: Douglas Michael ACKERMANN, James Donald LOUDIN, John WARDLE, Janusz KUZMA
  • Publication number: 20180154161
    Abstract: A stimulation system stimulates anatomical targets in a patient for treatment of dry eye. The system may include a controller and a microstimulator. The controller may be implemented externally to or internally within the microstimulator. The components of the controller and microstimulator may be implemented in a single unit or in separate devices. When implemented separately, the controller and microstimulator may communicate wirelessly or via a wired connection. The microstimulator may generate pulses from a controller signal and apply the signal via one or more electrodes to an anatomical target. The microstimulator may not have any intelligence or logic to shape or modify a signal. The microstimulator may be a passive device configured to generate a pulse based on a signal received from the controller. The microstimulator may shape or modify a signal. Waveforms having different frequency, amplitude and period characteristics may stimulate different anatomical targets in a patient.
    Type: Application
    Filed: December 1, 2017
    Publication date: June 7, 2018
    Inventors: Douglas Michael ACKERMANN, Daniel PALANKER, James Donald LOUDIN, Garrett Cale SMITH, Victor Wayne McCRAY, Brandon McNary FELKINS
  • Publication number: 20180064941
    Abstract: Described here are stimulation systems and methods for stimulating one or more anatomical targets in a patient for treatment conditions such as dry eye. The stimulation system may include a controller and a microstimulator. The components of the controller and microstimulator may be implemented in a single unit or in separate devices. When implemented separately, the controller and microstimulator may communicate wirelessly or via a wired connection. The microstimulator may generate pulses from a signal received from the controller and apply the signal via one or more electrodes to an anatomical target. In some variations, the microstimulator may include a passive generation circuit configured to generate a pulse based on a signal received from the controller.
    Type: Application
    Filed: November 2, 2017
    Publication date: March 8, 2018
    Inventors: Douglas Michael ACKERMANN, James Donald LOUDIN, Janusz KUZMA, Daniel PALANKER, Scott Franklin WETENKAMP
  • Publication number: 20180064940
    Abstract: Described here are stimulation systems and methods for stimulating one or more anatomical targets in a patient for treatment conditions such as dry eye. The stimulation system may include a controller and a microstimulator. The components of the controller and microstimulator may be implemented in a single unit or in separate devices. When implemented separately, the controller and microstimulator may communicate wirelessly or via a wired connection. The microstimulator may generate pulses from a signal received from the controller and apply the signal via one or more electrodes to an anatomical target. In some variations, the microstimulator may include a passive generation circuit configured to generate a pulse based on a signal received from the controller.
    Type: Application
    Filed: November 2, 2017
    Publication date: March 8, 2018
    Inventors: Douglas Michael ACKERMANN, James Donald LOUDIN, Janusz KUZMA, Daniel PALANKER, Scott Franklin WETENKAMP
  • Publication number: 20170368359
    Abstract: Described here are devices, systems, and methods for increasing tear production by stimulating the cornea, conjunctiva, and/or subconjunctiva. In some variations, the devices may be in the form of a contact lens. The contact lens may comprise a lens body and a stimulator chip, where the stimulator chip is embedded in the lens body. An external power source wirelessly transmits energy to the stimulator chip, where the stimulator chip may convert the energy to an electric waveform to stimulate the cornea, conjunctiva, and/or subconjunctiva. Stimulation may activate the lacrimal reflex to increase tear production. The devices and systems for increasing tear production may be used in methods of treating dry eye, reducing the symptoms of tired eye, increasing comfort for contact lens wearers, and extending the number of years a contact lens user can wear contacts. Also described are methods of manufacturing a contact lens.
    Type: Application
    Filed: September 8, 2017
    Publication date: December 28, 2017
    Inventors: James Donald LOUDIN, Manfred FRANKE, Daniel N. HAMILTON, Anand DORAISWAMY, Douglas Michael ACKERMANN
  • Publication number: 20170368332
    Abstract: Described here are devices, systems, and methods for treating one or more conditions (such as dry eye) or improving ocular health by providing stimulation to nasal or sinus tissue. Generally, the devices may be handheld or implantable. In some variations, the handheld devices may have a stimulator body and a stimulator probe having one or more nasal insertion prongs. When the devices and systems are used to treat dry eye, nasal or sinus tissue may be stimulated to increase tear production, reduce the symptoms of dry eye, and/or improve ocular surface health.
    Type: Application
    Filed: August 10, 2017
    Publication date: December 28, 2017
    Inventors: Douglas Michael ACKERMANN, James Donald LOUDIN, John WARDLE, Janusz KUZMA
  • Publication number: 20170354536
    Abstract: Systems, devices, and methods for delivering an implant to the orbit. In some instances, the systems may include a delivery device having a tongue member and a handle. The delivery device may further include an ejector configured to deliver an implant from the tongue member. The delivery device may also include a piercing member configured to create an opening in tissue. The systems may further include a piercing member for creating an opening in tissue. In some instances, the piercing member may have a first blade member rotatably connected to a second blade member.
    Type: Application
    Filed: July 13, 2017
    Publication date: December 14, 2017
    Inventors: Janusz KUZMA, Douglas Michael ACKERMANN, Christopher William STIVERS
  • Patent number: 9821159
    Abstract: Described here are stimulation systems and methods for stimulating one or more anatomical targets in a patient for treatment conditions such as dry eye. The stimulation system may include a controller and a microstimulator. The components of the controller and microstimulator may be implemented in a single unit or in separate devices. When implemented separately, the controller and microstimulator may communicate wirelessly or via a wired connection. The microstimulator may generate pulses from a signal received from the controller and apply the signal via one or more electrodes to an anatomical target. In some variations, the microstimulator may include a passive generation circuit configured to generate a pulse based on a signal received from the controller.
    Type: Grant
    Filed: April 6, 2012
    Date of Patent: November 21, 2017
    Assignees: The Board of Trustees of the Leland Stanford Junior University, Oculeve, Inc.
    Inventors: Douglas Michael Ackermann, James Donald Loudin, Janusz Kuzma, Daniel Palanker, Scott Franklin Wetenkamp
  • Patent number: 9782580
    Abstract: A percutaneously implantable paddle lead includes an elongated lead body having a proximal portion and a distal portion; a plurality of terminals disposed on the proximal portion of the lead; a flexible paddle body coupled to the distal portion of the lead; and a plurality of electrodes disposed in the paddle body and electrically coupled to the terminals on the proximal portion of the lead. The percutaneously implantable paddle lead also includes a bonding material in contact with the paddle body and holding the paddle body in a compacted form prior to, and during, insertion into a percutaneous implantation tool. The bonding material is configured and arranged to release the paddle body during or soon after implantation into a patient so that the paddle body can deploy into its paddle-like form. Alternatively, at least one current-degradable fastener can be used instead of the binding material.
    Type: Grant
    Filed: February 19, 2016
    Date of Patent: October 10, 2017
    Assignee: Boston Scientific Neuromodulation Corporation
    Inventors: Anne Margaret Pianca, Douglas Michael Ackermann
  • Patent number: D826420
    Type: Grant
    Filed: April 28, 2016
    Date of Patent: August 21, 2018
    Assignee: Oculeve, Inc.
    Inventors: Douglas Michael Ackermann, James Donald Loudin, John Wardle, John W. Lai, Natalie Catherine Vanns
  • Patent number: D837396
    Type: Grant
    Filed: April 28, 2016
    Date of Patent: January 1, 2019
    Assignee: Oculeve, Inc.
    Inventors: Douglas Michael Ackermann, James Donald Loudin, John Wardle, John W. Lai, Natalie Catherine Vanns