Patents Assigned to Auris Health, Inc.
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Patent number: 10500001Abstract: A surgical robotics system with robotic arms is configurable to perform a variety of surgical procedures. The surgical robotics system includes a table, column, base, and robotic arms that are either column-mounted, rail-mounted, or mounted on a separate unit. In a column-mounted configuration, the column includes column rings that translate vertically and rotate about the column. The robotic arms are attached to the column rings. In a rail-mounted configuration, the base includes base rails that translate along the base. The robotic arms are attached to the base rails. In both configurations, the robotic arms move independently from each other and include a multiple arm segments. Each arm segment provides an additional degree of freedom to the robotic arm. Thus, the surgical robotics system may position the robotic arms into numerous configurations to access different parts of a patient's body.Type: GrantFiled: March 8, 2017Date of Patent: December 10, 2019Assignee: Auris Health, Inc.Inventors: Alan Yu, Frederic H. Moll, Benjamin Richter, Mark H. Olson, Jason Gonzalez, Kyle Andrew Tucker, Paxton Maeder-York, Gregory T. Schulte
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Patent number: 10492741Abstract: For position sensors, e.g., a fiber-based system, that build a shape of an elongated member, such as a catheter, using a sequence of small orientation measurements, a small error in orientation at the proximal end of the sensor will cause large error in position at distal points on the fiber. Exemplary methods and systems are disclosed, which may provide full or partial registration along the length of the sensor to reduce the influence of the measurement error. Additional examples are directed to applying selective filtering at a proximal end of the elongated member to provide a more stable base for distal measurements and thereby reducing the influence of measurement errors.Type: GrantFiled: October 19, 2018Date of Patent: December 3, 2019Assignee: Auris Health, Inc.Inventors: Sean P. Walker, Serena H. Wong, June Park, Neal A. Tanner
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Patent number: 10493241Abstract: Methods and apparatuses for detecting tension on a tendon and/or mechanical deformation (e.g., breakage) of one or more steering tendon of a steerable and flexible articulating device. Theses apparatuses may have one or more tendons that are each electrically conductive and configured to steer the apparatus when tension is applied to the proximal end of the tendon. Tension and/or breakage (or other deformation) of one or more of these tendons may be detected by monitoring the electrical resistance of the tendons.Type: GrantFiled: July 26, 2017Date of Patent: December 3, 2019Assignee: Auris Health, Inc.Inventor: Allen Jiang
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Patent number: 10493239Abstract: A robotic surgical system configured for the articulation of a catheter includes an input device, a control computer, and an instrument driver having at least one motor for displacing the pull-wire of a steerable catheter wherein the control computer is configured to determine the desired motor torque or tension of the pull-wire of a catheter based on user manipulation of the input device. The control computer is configured to output the desired motor torque or tension of the pull-wire to the instrument driver, whereby at least one motor of the instrument driver implements the desired motor torque to cause the desired pull-wire tension to articulate the distal tip of the catheter.Type: GrantFiled: March 23, 2017Date of Patent: December 3, 2019Assignee: Auris Health, Inc.Inventors: J. Scot Hart, Francis Macnamara
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Patent number: 10482599Abstract: Methods and apparatuses provide improved navigation through tubular networks such as lung airways by providing improved estimation of location and orientation information of a medical instrument (e.g., an endoscope) within the tubular network. Various input data such as image data, EM data, and robot data are used by different algorithms to estimate the state of the medical instrument, and the state information is used to locate a specific site within a tubular network and/or to determine navigation information for what positions/orientations the medical instrument should travel through to arrive at the specific site. Probability distributions together with confidence values are generated corresponding to different algorithms are used to determine the medical instrument's estimated state.Type: GrantFiled: April 1, 2019Date of Patent: November 19, 2019Assignee: Auris Health, Inc.Inventors: David S. Mintz, Atiyeh Ghoreyshi, Prasanth Jeevan, Yiliang Xu, Gehua Yang, Matthew Joseph Leotta, Charles V. Stewart
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Patent number: 10478595Abstract: A catheter rotation drive apparatus includes first and second drives that are engageable to an output shaft. When the first drive is engaged to the output shaft and rotated, the output shaft rotates in an output rotation direction, and when the second drive is engaged to the output shaft and rotated, the output shaft rotates in the output rotation direction.Type: GrantFiled: June 2, 2017Date of Patent: November 19, 2019Assignee: Auris Health, Inc.Inventor: Arkady Kokish
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Patent number: 10470830Abstract: Systems, devices and methods are provided in which an instrument can translate along an insertion axis. Rather than relying primarily on a robotic arm for instrument insertion, the instruments described herein have novel instrument based insertion architectures that allow portions of the instruments themselves to translate along an insertion axis. For example, an instrument can comprise a shaft, an end effector on a distal end of the shaft, and a handle coupled to the shaft. The architecture of the instrument allows the shaft to translate relative to the handle along an axis of insertion. The translation of the shaft does not interfere with other functions of the instrument, such as end effector actuation.Type: GrantFiled: December 10, 2018Date of Patent: November 12, 2019Assignee: Auris Health, Inc.Inventors: Aren Calder Hill, Travis Michael Schuh, Nicholas J. Eyre
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Patent number: 10464209Abstract: Certain aspects relate to systems and techniques for surgical robotic arm setup. In one aspect, there is provided a system including a first robotic arm configured to manipulate a medical instrument, a processor, and a memory. The processor may be configured to: determine a minimum stroke length of the first robotic arm that allows advancing of the medical instrument by the first robotic arm to reach a target region from an access point via a path, determine a boundary for an initial pose of the first robotic arm based on the minimum stroke length and a mapping stored in the memory, and during an arm setup phase prior to performing a procedure, provide an indication of the boundary during movement of the first robotic arm.Type: GrantFiled: September 25, 2018Date of Patent: November 5, 2019Assignee: Auris Health, Inc.Inventors: Mingyen Ho, David Paul Noonan, Shu-Yun Chung, Allen Jiang
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Patent number: 10463439Abstract: A steerable catheter system may include a flexible elongate catheter body, a drive mechanism at the proximal end of the catheter body, and at least one group of pullwires extending along a length of the catheter body. The catheter body may include a distal articulating section and a proximal non-articulating section. Each group of pullwires includes at least two pullwires, and each of the pullwires is anchored at a first end to the distal end of the catheter body and at a second end to the drive mechanism. The pullwires of each group are positioned close to one another in the catheter wall to concentrate the forces and cause deflection along the articulating section of the catheter body and diverge away from one another to reach a more separated distribution around a circumference of the catheter body to distribute the forces and prevent deflection along the non-articulating section.Type: GrantFiled: August 26, 2016Date of Patent: November 5, 2019Assignee: Auris Health, Inc.Inventors: Miles Joseph, Francis MacNamara
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Patent number: 10454347Abstract: A compact height torque sensing articulation axis assembly is disclosed herein having a torque sensor, an assembly mounting flange, a motor, a motor gearbox, a gearbox output shaft, an encoder, and a cable. The assembly may sense tension on robotic catheter pullwires in an articulating catheter and/or torque on a robotic output axis using the torque sensor. Disclosed embodiments may advantageously be used to achieve small, lightweight robotic catheter systems.Type: GrantFiled: April 28, 2017Date of Patent: October 22, 2019Assignee: Auris Health, Inc.Inventors: Travis Covington, Colin Wilson
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Patent number: 10434660Abstract: Certain aspects relate to systems and techniques for surgical robotic arm admittance control. In one aspect, there is provided a system including a robotic arm and a processor. The processor may be configured to determine a force at a reference point on the robotic arm based on an output of a torque sensor and receive an indication of a direction of movement of the reference point. The processor may also determine that a component of the force is in the same direction as the direction of movement of the reference point, generate at least one parameter indicative of a target resistance to movement of the robotic arm, and control the motor, based on the at least one parameter, to move the robotic arm in accordance with the target resistance.Type: GrantFiled: June 18, 2018Date of Patent: October 8, 2019Assignee: Auris Health, Inc.Inventors: Kurt Christopher Meyer, Shu-Yun Chung, Mingyen Ho
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Patent number: 10426661Abstract: Devices and methods for use in laser-assisted surgery, particularly cataract surgery. Specifically, the use of an optical fiber with a proximal and distal end, wherein the distal end has a non-orthogonal angle with the diameter of the optical fiber, to create an off-axis steam bubble for cutting and removing tissue in an operative region. Where the optical fiber is bent, rotating the fiber creates a circular cutting path for the steam bubble, allowing access to tissues that may normally be blocked by obstructions and obstacles.Type: GrantFiled: August 12, 2014Date of Patent: October 1, 2019Assignee: Auris Health, Inc.Inventor: Greg Kintz
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Patent number: 10426559Abstract: Certain aspects relate to systems and techniques for compensating for compression in elongated shafts of medical instruments. Medical instruments can include elongated shafts that may experience compression when articulated. The medical instruments can be attached to instrument positioning devices that are configured to move the medical instruments to compensate for this compression. For example, an instrument positioning device can advance a medical instrument to compensate for compression in an elongated shaft of the medical instrument. In some instances, the amount of compression is determined using a compression compensation parameter. The compression compensation parameter can be determined during a calibration process of the medical instrument.Type: GrantFiled: June 30, 2017Date of Patent: October 1, 2019Assignee: Auris Health, Inc.Inventors: Chauncey F. Graetzel, June Gyu Park
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Patent number: 10405939Abstract: An endolumenal robotic system provides the surgeon with the ability to drive a robotically-driven endoscopic device to a desired anatomical position in a patient without the need for awkward motions and positions, while also enjoying improved image quality from a digital camera mounted on the endoscopic device.Type: GrantFiled: November 14, 2014Date of Patent: September 10, 2019Assignee: Auris Health, Inc.Inventor: Enrique Romo
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Patent number: 10405940Abstract: An endolumenal robotic system provides the surgeon with the ability to drive a robotically-driven endoscopic device to a desired anatomical position in a patient without the need for awkward motions and positions, while also enjoying improved image quality from a digital camera mounted on the endoscopic device.Type: GrantFiled: November 14, 2014Date of Patent: September 10, 2019Assignee: Auris Health, Inc.Inventor: Enrique Romo
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Patent number: 10398518Abstract: Instrument device with an elongated, flexible shaft that is configured to both roll and articulate in a controllable manner. The claimed system and apparatus provides endoscopic rolling and articulating capabilities with minimal tradeoffs in control, allowing for greater ease of use and clinical efficacy.Type: GrantFiled: December 22, 2016Date of Patent: September 3, 2019Assignee: Auris Health, Inc.Inventors: Alan Yu, Jason Lee
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Patent number: 10383765Abstract: An apparatus and method for establishing a global coordinate system to facilitate robotic assisted surgery. The coordinate system may be established using a combination of the robotic data, i.e., kinematics, and optical coherence tomographic images generated by an overhead optical assembly and a tool-based sensor. Using these components, the system may generate a computer-registered three-dimensional model of the patient's eye. In some embodiments, the system may also generate a virtual boundary within the coordinate system to prevent inadvertent injury to the patient.Type: GrantFiled: December 19, 2014Date of Patent: August 20, 2019Assignee: Auris Health, Inc.Inventors: Jeffery B. Alvarez, Jian Zhang, Gregory Kintz
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Patent number: 10376672Abstract: A robotic instrument driver for elongate members includes a first carriage positionable on a bed and beside a patient access site for manipulating a first elongate member, and a second carriage positionable proximate the bed, the second carriage configured to articulate the first elongate member, wherein the second carriage is movable independent from the first carriage.Type: GrantFiled: March 15, 2013Date of Patent: August 13, 2019Assignee: Auris Health, Inc.Inventor: Alan Yu
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Patent number: 10368951Abstract: The apparatus of one embodiment of the present invention is comprised of a flexible sheath instrument, a flexible guide instrument, and a tool. The flexible sheath instrument comprises a first instrument base removably coupleable to an instrument driver and defines a sheath instrument working lumen. The flexible guide instrument comprises a second instrument base removably coupleable to the instrument driver and is threaded through the sheath instrument working lumen. The guide instrument also defines a guide instrument working lumen. The tool is threaded through the guide instrument working lumen. For this embodiment of the apparatus, the sheath instrument and guide instrument are independently controllable relative to each other.Type: GrantFiled: October 3, 2016Date of Patent: August 6, 2019Assignee: Auris Health, Inc.Inventors: Frederic H. Moll, Daniel T. Wallace, Gregory J. Stahler, David F. Moore, Daniel T. Adams, Kenneth M. Martin, Robert G. Younge, Michael R. Zinn, Gunter D. Niemeyer, David Lundmark
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Patent number: 10363103Abstract: An instrument having a flexible and elongated body includes at least a lumen and a flex member disposed within the lumen. The flex member may be capable of providing steering control to a first portion of the elongate body while providing load bearing support to a second portion of the elongate body. A pull wire may be disposed within the flex member, and at least a distal portion of the pull wire may be coupled to the elongate body and a proximal portion of the pull wire may be operatively coupled to a control unit. The control unit may be coupled to a proximal portion of the elongate body. In addition, a control member may be operatively coupled to the control unit such that a distal portion of the control member may be positioned near a proximal portion of the flex member. The control member may be configured to support the flex member and control the movement or displacement of the flex member.Type: GrantFiled: February 5, 2016Date of Patent: July 30, 2019Assignee: Auris Health, Inc.Inventors: Jeffery B. Alvarez, Enrique Romo, Francis MacNamara