Patents by Inventor Timotheus Anton Gmeiner

Timotheus Anton Gmeiner 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: 10791917
    Abstract: Described are various embodiments of micro-optical surgical probes and micro-optical probe tips and methods of manufacture therefor. In some embodiments, multichannel micro-optical probe tip structures are directly manufactured upon respective optical channel waveguides, or again manufactured to integrally define respective optical coupling to these waveguides. In some embodiments, micro-optical probe tip structures are manufactured via a 3D laser printing process. Specific embodiments include, but are not limited to, spectroscopic or particularly Raman spectroscopy probes and their associated multichannel probe tip structures, and multichannel endoscopes.
    Type: Grant
    Filed: August 7, 2019
    Date of Patent: October 6, 2020
    Assignee: Synaptive Medical (Barbados) Inc.
    Inventors: Timotheus Anton Gmeiner, Siu Wai Jacky Mak, Kresimir Franjic
  • Patent number: 10725136
    Abstract: A cerebrospinal diffusion phantom including a housing having a shape and size configured for insertion into a magnetic resonance coil in one or more preselected poses. A scaffold support structure is mounted on an interior of said housing and a plurality of elongated diffusion mimicking members supported on the support array. The elongated diffusion mimicking members are affixed to the scaffold support structure such that elongated diffusion mimicking members extend in directions needed to substantially emulate a 3 dimensional arrangement of cerebrospinal diffusion fiber tracts in a living organism; modules for elimination of resolution based-bias, angular accuracy evaluation, diffusion rate calibration, and quality assurance image referencing. Each elongated diffusion mimicking member includes an aqueous component which can undergo diffusion along the elongated diffusion mimicking member.
    Type: Grant
    Filed: December 21, 2017
    Date of Patent: July 28, 2020
    Assignee: Synaptive Medical (Barbados) Inc.
    Inventors: Fergal Kerins, Timotheus Anton Gmeiner, Jeff Alan Stainsby, Chad Tyler Harris, Sheryl Rae Thingvold, Gregory Allan Whitton
  • Patent number: 10559227
    Abstract: Simulated tissue products and methods involving an enhanced simulated tissue product, the enhanced simulated tissue product formed from a polyvinyl alcohol material having a molecular chain length in a range of at least approximately 7000 vinyl alcohol repeat units; and water, wherein the polyvinyl alcohol material has a preferred molecular chain length in a range of at least approximately 7150 vinyl alcohol repeat units; wherein the aqueous polyvinyl alcohol solution involves an additive, and, wherein the additive involves a plurality of nanoparticles. The simulated tissue products and methods are further useful with multi-metric surgery simulator devices, systems, and methods, such as those for training surgical tasks.
    Type: Grant
    Filed: June 2, 2016
    Date of Patent: February 11, 2020
    Assignee: Synaptive Medical (Barbados) Inc.
    Inventors: Timotheus Anton Gmeiner, Fergal Kerins, Gregory Allan Whitton, Kimberly Bojanowski Hoang
  • Publication number: 20200029796
    Abstract: Described are various embodiments of micro-optical surgical probes and micro-optical probe tips and methods of manufacture therefor. In some embodiments, multichannel micro-optical probe tip structures are directly manufactured upon respective optical channel waveguides, or again manufactured to integrally define respective optical coupling to these waveguides. In some embodiments, micro-optical probe tip structures are manufactured via a 3D laser printing process. Specific embodiments include, but are not limited to, spectroscopic or particularly Raman spectroscopy probes and their associated multichannel probe tip structures, and multichannel endoscopes.
    Type: Application
    Filed: August 7, 2019
    Publication date: January 30, 2020
    Applicant: Synaptive Medical (Barbados) Inc.
    Inventors: Timotheus Anton Gmeiner, Siu Wai Jacky Mak, Kresimir Franjic
  • Patent number: 10510268
    Abstract: Multi-metric surgery simulator devices, systems, and methods, involving at least one sensor configured to collect surgical training performance data relevant to at least one surgical task, the at least one sensor configured to operate with a surgical navigation system comprising a processor, the processor configurable, by way of a set of executable instructions storable in relation to a non-transitory medium, to perform at least one of analyze collected data, transform the collected data, and provide feedback in relation thereto; and at least one surgery simulator apparatus operatively coupled with the at least one sensor, the at least one surgery simulator apparatus configured to operate with a tracking system, whereby collected data is obtainable and clinical performance in relation to the at least one surgical task is quantitatively evaluable and progressively improvable.
    Type: Grant
    Filed: April 5, 2016
    Date of Patent: December 17, 2019
    Assignee: Synaptive Medical (Barbados) Inc.
    Inventors: Timotheus Anton Gmeiner, Fergal Kerins, Aaron Yu Lai Cheung, Kimberly Bojanowski Hoang
  • Patent number: 10413167
    Abstract: Described are various embodiments of micro-optical surgical probes and micro-optical probe tips and methods of manufacture therefor. In some embodiments, multichannel micro-optical probe tip structures are directly manufactured upon respective optical channel waveguides, or again manufactured to integrally define respective optical coupling to these waveguides. In some embodiments, micro-optical probe tip structures are manufactured via a 3D laser printing process. Specific embodiments include, but are not limited to, spectroscopic or particularly Raman spectroscopy probes and their associated multichannel probe tip structures, and multichannel endoscopes.
    Type: Grant
    Filed: May 30, 2017
    Date of Patent: September 17, 2019
    Inventors: Timotheus Anton Gmeiner, Siu Wai Jacky Mak, Kresimir Franjic
  • Patent number: 10319259
    Abstract: Disclosed herein are anatomical simulators produced using three dimensional (3D) printing to produce interior components of the simulator. The method of producing void structures in an anatomical phantom, includes 3D printing one or more structures of one or more desired sub-anatomical features using a dissolvable material; supporting and enclosing the one or more structures in an interior of a mold of the anatomical phantom; filling a remaining internal volume in the interior of the mold between an outer surface of the one or more structures and an inner surface of the mold with a liquid precursor of a matrix material selected to mimic anatomical tissue and processing the liquid precursor to form a tissue mimic matrix material; and dissolving the one or more structures with a fluid selected to dissolve said dissolvable material to produce one or more internal cavities within the tissue mimic matrix material.
    Type: Grant
    Filed: September 23, 2015
    Date of Patent: June 11, 2019
    Assignee: SYNAPTIVE MEDICAL (BARBADOS) INC.
    Inventors: Fergal Kerins, Gregory Allan Whitton, Joshua Lee Richmond, Timotheus Anton Gmeiner
  • Publication number: 20190065681
    Abstract: A system and methods for managing a plurality of medical equipment via distributed ledgers involving: a network device configured to communicate with the plurality of medical equipment; a mobile application storable in relation to, and configuring, each piece of medical equipment of the plurality of medical equipment to individually communicate with the network device, the mobile application comprising a set of executable instructions for automatically collecting usage data in relation to each piece of medical equipment of the plurality of medical equipment and for automatically transmitting the usage data to the network device; and a processor configured to receive the usage data from the network device and to generate billing data based on the usage data corresponding to each piece of medical equipment of the plurality of medical equipment.
    Type: Application
    Filed: August 28, 2017
    Publication date: February 28, 2019
    Inventor: Timotheus Anton GMEINER
  • Publication number: 20180344130
    Abstract: Described are various embodiments of micro-optical surgical probes and micro-optical probe tips and methods of manufacture therefor. In some embodiments, multichannel micro-optical probe tip structures are directly manufactured upon respective optical channel waveguides, or again manufactured to integrally define respective optical coupling to these waveguides. In some embodiments, micro-optical probe tip structures are manufactured via a 3D laser printing process. Specific embodiments include, but are not limited to, spectroscopic or particularly Raman spectroscopy probes and their associated multichannel probe tip structures, and multichannel endoscopes.
    Type: Application
    Filed: May 30, 2017
    Publication date: December 6, 2018
    Inventors: Timotheus Anton GMEINER, Siu Wai Jacky MAK, Kresimir FRANJIC
  • Publication number: 20180308393
    Abstract: Simulated tissue products and methods involving an enhanced simulated tissue product, the enhanced simulated tissue product formed from a polyvinyl alcohol material having a molecular chain length in a range of at least approximately 7000 vinyl alcohol repeat units; and water, wherein the polyvinyl alcohol material has a preferred molecular chain length in a range of at least approximately 7150 vinyl alcohol repeat units; wherein the aqueous polyvinyl alcohol solution involves an additive, and, wherein the additive involves a plurality of nanoparticles. The simulated tissue products and methods are further useful with multi-metric surgery simulator devices, systems, and methods, such as those for training surgical tasks.
    Type: Application
    Filed: June 2, 2016
    Publication date: October 25, 2018
    Inventors: Timotheus Anton GMEINER, Fergal KERINS, Gregory Allan WHITTON, Kimberly Bojanowski HOANG
  • Publication number: 20180116724
    Abstract: Multi-metric surgery simulator devices, systems, and methods, involving at least one sensor configured to collect surgical training performance data relevant to at least one surgical task, the at least one sensor configured to operate with a surgical navigation system comprising a processor, the processor configurable, by way of a set of executable instructions storable in relation to a non-transitory medium, to perform at least one of analyze collected data, transform the collected data, and provide feedback in relation thereto; and at least one surgery simulator apparatus operatively coupled with the at least one sensor, the at least one surgery simulator apparatus configured to operate with a tracking system, whereby collected data is obtainable and clinical performance in relation to the at least one surgical task is quantitatively evaluable and progressively improvable.
    Type: Application
    Filed: April 5, 2016
    Publication date: May 3, 2018
    Inventors: Timotheus Anton GMEINER, Fergal KERINS, Aaron Yu Lai CHEUNG, Kimberly Bojanowski HOANG
  • Publication number: 20180113186
    Abstract: Disclosed herein are cerebrospinal diffusion phantoms which include a housing having a shape and size configured for insertion into a magnetic resonance coil in one or more preselected poses. A scaffold support structure is mounted on an interior of said housing and a plurality of elongated diffusion mimicking members supported on the support array. The elongated diffusion mimicking members are affixed to the scaffold support structure such that elongated diffusion mimicking members extend in directions needed to substantially emulate a 3 dimensional arrangement of cerebrospinal diffusion fiber tracts in a living organism; as well as modules for elimination of resolution based-bias, angular accuracy evaluation, diffusion rate calibration, and quality assurance image referencing. Each elongated diffusion mimicking member includes an aqueous component which can undergo diffusion along the elongated diffusion mimicking member.
    Type: Application
    Filed: December 21, 2017
    Publication date: April 26, 2018
    Inventors: Fergal KERINS, Timotheus Anton GMEINER, Jeff Alan STAINSBY, Chad Tyler HARRIS, Sheryl Rae THINGVOLD, Gregory Allan WHITTON
  • Patent number: 9880251
    Abstract: Disclosed herein are cerebrospinal diffusion phantoms which include a housing having a shape and size configured for insertion into a magnetic resonance coil in one or more preselected poses. A scaffold support structure is mounted on an interior of said housing and a plurality of elongated diffusion mimicking members supported on the support array. The elongated diffusion mimicking members are affixed to the scaffold support structure such that elongated diffusion mimicking members extend in directions needed to substantially emulate a 3 dimensional arrangement of cerebrospinal diffusion fiber tracts in a living organism; as well as modules for elimination of resolution based-bias, angular accuracy evaluation, diffusion rate calibration, and quality assurance image referencing. Each elongated diffusion mimicking member includes an aqueous component which can undergo diffusion along the elongated diffusion mimicking member.
    Type: Grant
    Filed: September 4, 2015
    Date of Patent: January 30, 2018
    Assignee: Synaptive Medical (Barbados) Inc.
    Inventors: Fergal Kerins, Timotheus Anton Gmeiner, Jeff Alan Stainsby, Chad Tyler Harris, Sheryl Rae Thingvold, Gregory Allan Whitton
  • Publication number: 20170291359
    Abstract: Disclosed herein are anatomical simulators produced using three dimensional (3D) printing to produce interior components of the simulator. The method of producing void structures in an anatomical phantom, includes 3D printing one or more structures of one or more desired sub-anatomical features using a dissolvable material; supporting and enclosing the one or more structures in an interior of a mold of the anatomical phantom; filling a remaining internal volume in the interior of the mold between an outer surface of the one or more structures and an inner surface of the mold with a liquid precursor of a matrix material selected to mimic anatomical tissue and processing said liquid precursor to form a tissue mimic matrix material; and dissolving the one or more structures with a fluid selected to dissolve said dissolvable material to produce one or more internal cavities within the tissue mimic matrix material.
    Type: Application
    Filed: September 23, 2015
    Publication date: October 12, 2017
    Inventors: Fergal KERINS, Gregory Allan WHITTON, Joshua Lee RICHMOND, Timotheus Anton GMEINER
  • Publication number: 20170192076
    Abstract: Disclosed herein are cerebrospinal diffusion phantoms which include a housing having a shape and size configured for insertion into a magnetic resonance coil in one or more preselected poses. A scaffold support structure is mounted on an interior of said housing and a plurality of elongated diffusion mimicking members supported on the support array. The elongated diffusion mimicking members are affixed to the scaffold support structure such that elongated diffusion mimicking members extend in directions needed to substantially emulate a 3 dimensional arrangement of cerebrospinal diffusion fiber tracts in a living organism; as well as modules for elimination of resolution based-bias, angular accuracy evaluation, diffusion rate calibration, and quality assurance image referencing. Each elongated diffusion mimicking member includes an aqueous component which can undergo diffusion along the elongated diffusion mimicking member.
    Type: Application
    Filed: September 4, 2015
    Publication date: July 6, 2017
    Inventors: Fergal KERINS, Timotheus Anton GMEINER, Jeff Alan STAINSBY, Chad Tyler HARRIS, Sheryl Rae THINGVOLD, Gregory Allan WHITTON
  • Patent number: D790709
    Type: Grant
    Filed: September 28, 2015
    Date of Patent: June 27, 2017
    Assignee: SYNAPTIVE MEDICAL (BARBADOS) INC.
    Inventors: Timotheus Anton Gmeiner, Gregory Allan Whitton, Fergal Kerins
  • Patent number: D809927
    Type: Grant
    Filed: July 5, 2016
    Date of Patent: February 13, 2018
    Assignee: SYNAPTIVE MEDICAL (BARBADOS) INC.
    Inventors: William Wai-Leung Lau, Timotheus Anton Gmeiner, Fergal Kerins