Patents by Inventor Daniel E. Clark

Daniel E. Clark 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).

  • Publication number: 20240268801
    Abstract: An excisional device for either handheld or stereotactic table use may comprise an outer sheath that may comprise a distal trough shape configured to penetrate and/or cut tissue independently or in concert with work element(s). The articulable work element(s) may comprise articulable beak(s) and may be configured to translate and/or rotate at a first rate and to cut tissue in a direction implied by placement of the trough shaped outer sheath. A first helical element or equivalent assembly may be configured to transport tissue cut by the work element(s) and/or trough, may be co-axially disposed relative to the work element(s) and may be operative to rotate at a second rotation rate that is different than the first rate. A proximal sheath may be co-axially disposed relative to the work element(s) and the first helical element, and may be configured to rotate and actuate the work element(s).
    Type: Application
    Filed: February 5, 2024
    Publication date: August 15, 2024
    Inventors: James W. VETTER, Eugene H. VETTER, Daniel E. CLARK, Alisen E. VETTER, Paul A. VETTER
  • Patent number: 11937792
    Abstract: An excisional device for either handheld or stereotactic table use may comprise an outer sheath that may comprise a distal trough shape configured to penetrate and/or cut tissue independently or in concert with work element(s). The articulable work element(s) may comprise articulable beak(s) and may be configured to translate and/or rotate at a first rate and to cut tissue in a direction implied by placement of the trough shaped outer sheath. A first helical element or equivalent assembly may be configured to transport tissue cut by the work element(s) and/or trough, may be co-axially disposed relative to the work element(s) and may be operative to rotate at a second rotation rate that is different than the first rate. A proximal sheath may be co-axially disposed relative to the work element(s) and the first helical element, and may be configured to rotate and actuate the work element(s).
    Type: Grant
    Filed: July 20, 2020
    Date of Patent: March 26, 2024
    Assignee: TransMed7, LLC
    Inventors: James W Vetter, Eugene H Vetter, Daniel E Clark, Alisen E Vetter, Paul A Vetter
  • Publication number: 20210000456
    Abstract: An excisional device for either handheld or stereotactic table use may comprise an outer sheath that may comprise a distal trough shape configured to penetrate and/or cut tissue independently or in concert with work element(s). The articulable work element(s) may comprise articulable beak(s) and may be configured to translate and/or rotate at a first rate and to cut tissue in a direction implied by placement of the trough shaped outer sheath. A first helical element or equivalent assembly may be configured to transport tissue cut by the work element(s) and/or trough, may be co-axially disposed relative to the work element(s) and may be operative to rotate at a second rotation rate that is different than the first rate. A proximal sheath may be co-axially disposed relative to the work element(s) and the first helical element, and may be configured to rotate and actuate the work element(s).
    Type: Application
    Filed: July 20, 2020
    Publication date: January 7, 2021
    Inventors: JAMES W VETTER, Eugene H. Vetter, Daniel E. Clark, Alisen E. Vetter, Paul A. Vetter
  • Patent number: 10806434
    Abstract: An excisional device for either handheld or stereotactic table use may comprise an outer sheath that may comprise a distal trough shape configured to penetrate and/or cut tissue independently or in concert with work element(s). The articulable work element(s) may comprise articulable beak(s) and may be configured to translate and/or rotate at a first rate and to cut tissue in a direction implied by placement of the trough shaped outer sheath. A first helical element or equivalent assembly may be configured to transport tissue cut by the work element(s) and/or trough, may be co-axially disposed relative to the work element(s) and may be operative to rotate at a second rotation rate that is different than the first rate. A proximal sheath may be co-axially disposed relative to the work element(s) and the first helical element, and may be configured to rotate and actuate the work element(s).
    Type: Grant
    Filed: October 10, 2013
    Date of Patent: October 20, 2020
    Assignee: TransMed7, LLC
    Inventors: James W Vetter, Eugene H Vetter, Daniel E Clark, Alisen E Vetter
  • Patent number: 10555751
    Abstract: An excisional device for either handheld or stereotactic table/MRI use may comprise a work element configured to rotate at a first rotation rate and comprising at least one articulable beak configured to cut tissue in a longitudinal direction. Helical elements or equivalent assemblies may be configured to transport tissue cut by a work element and may be co-axially disposed relative to the work element and may be operative to rotate at rotation rates that may be different from the work element rotation rate. Flush and vacuum tissue transport mechanisms may be incorporated in replacement of or in conjunction with helical elements. A proximal sheath and a distal sheath may be co-axially disposed relative to a work element and may be configured to rotate a work element and to actuate a beak or beaks. A simplified embodiment of this device may be applicable to field use where power sources for actuation may be limited.
    Type: Grant
    Filed: September 11, 2014
    Date of Patent: February 11, 2020
    Assignee: Transmed7, LLC
    Inventors: James W Vetter, Daniel E Clark, Eugene H Vetter, Alisen E Vetter
  • Patent number: 10485522
    Abstract: Embodiments of the invention relate to coring tip or beak designs for single insertion, multiple sample, multiple lesion tissue coring and acquisition (biopsy or excisional) medical devices to facilitate tissue penetration, coring, capturing and parting off of tissue that also inherently enhance ultrasound images for the purpose of continuous and positive excisional device tip visualization for targeting and capture of target tissue, such as lesions or other tissue in the body.
    Type: Grant
    Filed: April 28, 2016
    Date of Patent: November 26, 2019
    Assignee: TransMed7, LLC
    Inventors: James W Vetter, Daniel E Clark, Eugene H Vetter
  • Publication number: 20190183466
    Abstract: Embodiments of the invention relate to coring tip or beak designs for single insertion, multiple sample, multiple lesion tissue coring and acquisition (biopsy or excisional) medical devices to facilitate tissue penetration, coring, capturing and parting off of tissue that also inherently enhance ultrasound images for the purpose of continuous and positive excisional device tip visualization for targeting and capture of target tissue, such as lesions or other tissue in the body.
    Type: Application
    Filed: April 28, 2016
    Publication date: June 20, 2019
    Inventors: James W. Vetter, Daniel E. Clark, Eugene H. Vetter
  • Patent number: 10070885
    Abstract: An excisional device for either handheld or stereotactic table/MRI use may comprise a work element configured to rotate at a first rotation rate and comprising at least one articulable beak configured to cut tissue in a longitudinal direction. Helical elements or equivalent assemblies may be configured to transport tissue cut by a work element and may be co-axially disposed relative to the work element and may be operative to rotate at rotation rates that may be different from the work element rotation rate. Flush and vacuum tissue transport mechanisms may be incorporated in replacement of or in conjunction with helical elements. A proximal sheath and a distal sheath may be co-axially disposed relative to a work element and may be configured to rotate a work element and to actuate a beak or beaks. A simplified embodiment of this device may be applicable to field use where power sources for actuation may be limited.
    Type: Grant
    Filed: September 19, 2014
    Date of Patent: September 11, 2018
    Assignee: TransMed7, LLC
    Inventors: James W Vetter, Daniel E Clark, Eugene H Vetter, Alisen E Vetter
  • Patent number: 10070884
    Abstract: An excisional device for either handheld or stereotactic table/MRI use may comprise a work element configured to rotate at a first rotation rate and comprising at least one articulable beak configured to cut tissue in a longitudinal direction. Helical elements or equivalent assemblies may be configured to transport tissue cut by a work element and may be co-axially disposed relative to the work element and may be operative to rotate at rotation rates that may be different from the work element rotation rate. Flush and vacuum tissue transport mechanisms may be incorporated in replacement of or in conjunction with helical elements. A proximal sheath and a distal sheath may be co-axially disposed relative to a work element and may be configured to rotate a work element and to actuate a beak or beaks. A simplified embodiment of this device may be applicable to field use where power sources for actuation may be limited.
    Type: Grant
    Filed: September 19, 2014
    Date of Patent: September 11, 2018
    Assignee: TransMed7, LLC
    Inventors: James W Vetter, Daniel E Clark, Eugene H Vetter, Alisen E Vetter
  • Patent number: 9592035
    Abstract: An excisional device for either handheld car stereotactic table use may comprise an outer sheath that may comprise a distal scoopula shape configured to penetrate and/or cut tissue independently or in concert with work element(s). The articulable work element(s) may comprise articulable beak(s) and may be configured to translate and/or rotate at a first rate and to cut tissue in a direction implied by placement of the scoopula shaped outer sheath. A first helical element or equivalent assembly may be configured to transport tissue cut by the work element(s) and/or scoopula, may be co-axially disposed relative to the work element(s) and may be operative to rotate at a second rotation rate that is different than the first rate. A proximal sheath may be co-axially disposed relative to the work element(s) and the first helical element, and may be configured to rotate and actuate the work element(s).
    Type: Grant
    Filed: October 12, 2013
    Date of Patent: March 14, 2017
    Assignee: TransMed7, LLC
    Inventors: James W Vetter, Eugene H Vetter, Daniel E Clark, Alisen E Vetter, Paul A Vetter
  • Patent number: 9463001
    Abstract: An excisional device may comprise a work element configured to rotate at a first rotation rate and comprising a first and a second articulable beak configured to cut tissue. A first helical element, configured to transport tissue cut by the first and second articulable beaks, may be co-axially disposed relative to the work element and operative to rotate at a second rotation rate that is different than the work element. A proximal sheath may be co-axially disposed relative to the work element and the first helical element, and may be configured to rotate the work element and to actuate the first and second articulable beaks.
    Type: Grant
    Filed: May 28, 2013
    Date of Patent: October 11, 2016
    Assignee: TransMed7, LLC
    Inventors: James W Vetter, Daniel E Clark, Eugene H Vetter
  • Patent number: 9456807
    Abstract: An excisional device for either handheld or stereotactic table use may comprise an outer sheath that may comprise a distal trough shape configured to penetrate and/or cut tissue independently or in concert with work element(s). The articulable work element(s) may comprise articulable beak(s) and may be configured to translate and/or rotate at a first rate and to cut tissue in a direction implied by placement of the trough shaped outer sheath. A first helical element or equivalent assembly may be configured to transport tissue cut by the work element(s) and/or trough, may be co-axially disposed relative to the work element(s) and may be operative to rotate at a second rotation rate that is different than the first rate. A proximal sheath may be co-axially disposed relative to the work element(s) and the first helical element, and may be configured to rotate and actuate the work element(s).
    Type: Grant
    Filed: October 12, 2013
    Date of Patent: October 4, 2016
    Assignee: TransMed7, LLC
    Inventors: James W Vetter, Eugene H Vetter, Daniel E Clark, Alisen E Vetter
  • Patent number: 9155527
    Abstract: An excisional device for either handheld or stereotactic table use may comprise an outer sheath that may comprise a distal scoopula shape configured to penetrate and/or cut tissue independently or in concert with work element(s). The articulable work element(s) may comprise articulable beak(s) and may be configured to translate and/or rotate at a first rate and to cut tissue in a direction implied by placement of the scoopula shaped outer sheath. A first helical element or equivalent assembly may be configured to transport tissue cut by the work element(s) and/or scoopula, may be co-axially disposed relative to the work element(s) and may be operative to rotate at a second rotation rate that is different than the first rate. A proximal sheath may be co-axially disposed relative to the work element(s) and the first helical element, and may be configured to rotate and actuate the work element(s).
    Type: Grant
    Filed: August 22, 2013
    Date of Patent: October 13, 2015
    Assignee: TransMed7, LLC
    Inventors: James W Vetter, Eugene H Vetter, Daniel E Clark, Alisen E Vetter
  • Publication number: 20150133985
    Abstract: An excisional device for either handheld or stereotactic table/MRI use may comprise a work element configured to rotate at a first rotation rate and comprising at least one articulable beak configured to cut tissue in a longitudinal direction. Helical elements or equivalent assemblies may be configured to transport tissue cut by a work element and may be co-axially disposed relative to the work element and may be operative to rotate at rotation rates that may be different from the work element rotation rate. Flush and vacuum tissue transport mechanisms may be incorporated in replacement of or in conjunction with helical elements. A proximal sheath and a distal sheath may be co-axially disposed relative to a work element and may be configured to rotate a work element and to actuate a beak or beaks. A simplified embodiment of this device may be applicable to field use where power sources for actuation may be limited.
    Type: Application
    Filed: September 19, 2014
    Publication date: May 14, 2015
    Inventors: James W VETTER, Daniel E Clark, Eugene H Vetter, Alisen E Vetter
  • Publication number: 20150112226
    Abstract: An excisional device for either handheld or stereotactic table/MRI use may comprise a work element configured to rotate at a first rotation rate and comprising at least one articulable beak configured to cut tissue in a longitudinal direction. Helical elements or equivalent assemblies may be configured to transport tissue cut by a work element and may be co-axially disposed relative to the work element and may be operative to rotate at rotation rates that may be different from the work element rotation rate. Flush and vacuum tissue transport mechanisms may be incorporated in replacement of or in conjunction with helical elements. A proximal sheath and a distal sheath may be co-axially disposed relative to a work element and may be configured to rotate a work element and to actuate a beak or beaks. A simplified embodiment of this device may be applicable to field use where power sources for actuation may be limited.
    Type: Application
    Filed: September 19, 2014
    Publication date: April 23, 2015
    Inventors: James W. VETTER, Daniel E. CLARK, Eugene H. VETTER, Alisen E. VETTER
  • Publication number: 20150073299
    Abstract: An excisional device for either handheld or stereotactic table/MRI use may comprise a work element configured to rotate at a first rotation rate and comprising at least one articulable beak configured to cut tissue in a longitudinal direction. Helical elements or equivalent assemblies may be configured to transport tissue cut by a work element and may be co-axially disposed relative to the work element and may be operative to rotate at rotation rates that may be different from the work element rotation rate. Flush and vacuum tissue transport mechanisms may be incorporated in replacement of or in conjunction with helical elements. A proximal sheath and a distal sheath may be co-axially disposed relative to a work element and may be configured to rotate a work element and to actuate a beak or beaks. A simplified embodiment of this device may be applicable to field use where power sources for actuation may be limited.
    Type: Application
    Filed: September 11, 2014
    Publication date: March 12, 2015
    Inventors: James W. VETTER, Daniel E. Clark, Eugene H. Vetter, Alisen E. Vetter
  • Publication number: 20150057568
    Abstract: An excisional device for either handheld or stereotactic table use may comprise an outer sheath that may comprise a distal scoopula shape configured to penetrate and/or cut tissue independently or in concert with work element(s). The articulable work element(s) may comprise articulable beak(s) and may be configured to translate and/or rotate at a first rate and to cut tissue in a direction implied by placement of the scoopula shaped outer sheath. A first helical element or equivalent assembly may be configured to transport tissue cut by the work element(s) and/or scoopula, may be co-axially disposed relative to the work element(s) and may be operative to rotate at a second rotation rate that is different than the first rate. A proximal sheath may be co-axially disposed relative to the work element(s) and the first helical element, and may be configured to rotate and actuate the work element(s).
    Type: Application
    Filed: October 10, 2013
    Publication date: February 26, 2015
    Applicant: TRANSMED7, LLC
    Inventors: James W Vetter, Eugene H Vetter, Daniel E Clark, Alisen E Vetter
  • Publication number: 20150057567
    Abstract: An excisional device for either handheld or stereotactic table use may comprise an outer sheath that may comprise a distal scoopula shape configured to penetrate and/or cut tissue independently or in concert with work element(s). The articulable work element(s) may comprise articulable beak(s) and may be configured to translate and/or rotate at a first rate and to cut tissue in a direction implied by placement of the scoopula shaped outer sheath. A first helical element or equivalent assembly may be configured to transport tissue cut by the work element(s) and/or scoopula, may be co-axially disposed relative to the work element(s) and may be operative to rotate at a second rotation rate that is different than the first rate. A proximal sheath may be co-axially disposed relative to the work element(s) and the first helical element, and may be configured to rotate and actuate the work element(s).
    Type: Application
    Filed: October 10, 2013
    Publication date: February 26, 2015
    Applicant: TRANSMED7, LLC
    Inventors: James W. VETTER, Eugene H. Vetter, Daniel E. Clark, Alisen E. Vetter
  • Publication number: 20150057566
    Abstract: An excisional device for either handheld or stereotactic table use may comprise an outer sheath that may comprise a distal scoopula shape configured to penetrate and/or cut tissue independently or in concert with work element(s). The articulable work element(s) may comprise articulable beak(s) and may be configured to translate and/or rotate at a first rate and to cut tissue in a direction implied by placement of the scoopula shaped outer sheath. A first helical element or equivalent assembly may be configured to transport tissue cut by the work element(s) and/or scoopula, may be co-axially disposed relative to the work element(s) and may be operative to rotate at a second rotation rate that is different than the first rate. A proximal sheath may be co-axially disposed relative to the work element(s) and the first helical element, and may be configured to rotate and actuate the work element(s).
    Type: Application
    Filed: August 22, 2013
    Publication date: February 26, 2015
    Applicant: TRANSMED7, LLC
    Inventors: James W. Vetter, Eugene H. Vetter, Daniel E. Clark, Alisen E. Vetter
  • Publication number: 20150057569
    Abstract: An excisional device for either handheld or stereotactic table use may comprise an outer sheath that may comprise a distal scoopula shape configured to penetrate and/or cut tissue independently or in concert with work element(s). The articulable work element(s) may comprise articulable beak(s) and may be configured to translate and/or rotate at a first rate and to cut tissue in a direction implied by placement of the scoopula shaped outer sheath. A first helical element or equivalent assembly may be configured to transport tissue cut by the work element(s) and/or scoopula, may be co-axially disposed relative to the work element(s) and may be operative to rotate at a second rotation rate that is different than the first rate. A proximal sheath may be co-axially disposed relative to the work element(s) and the first helical element, and may be configured to rotate and actuate the work element(s).
    Type: Application
    Filed: October 12, 2013
    Publication date: February 26, 2015
    Applicant: TRANSMED7, LLC
    Inventors: James W. VETTER, Eugene H. VETTER, Daniel E. CLARK, Alisen E. VETTER