Patents by Inventor Santtu T.T. Ollila

Santtu T.T. Ollila 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: 11869680
    Abstract: A control circuit optimizes a radiation treatment plan for a patient treatment volume using an automatically iterating optimization process that optimizes as a function, at least in part, of predetermined cost functions, wherein at least one of the cost functions favors apertures for the multi-leaf collimation system having local curvature that deviates only minimally from a reference curvature. By one approach the control circuit determines the reference curvature as a function, at least in part, of at least one of setting the reference curvature to a static minimal local curvature, a shape of a projective mapping of the treatment volume onto an isocenter plane, and/or a fluence map associated with an amount of radiation to be administered to the treatment volume from a particular direction. By one approach the control circuit dynamically determines when to employ one or more such cost functions.
    Type: Grant
    Filed: March 30, 2018
    Date of Patent: January 9, 2024
    Assignee: Varian Medical Systems International AG
    Inventors: Santtu T.T. Ollila, Janne I. Nord, Jarkko Y. Peltola
  • Patent number: 11478660
    Abstract: Deep learning approaches automatically segment at least some breast tissue images while non-deep learning approaches automatically segment organs-at-risk. Both three-dimensional CT imaging information and two-dimensional orthogonal topogram imaging information can be used to determine virtual-skin volume. The foregoing imaging information can also serve to automatically determine a body outline for at least a portion of the patient. That body outline, along with the virtual-skin volume and registration information can serve as inputs to automatically calculate radiation treatment platform trajectories, collision detection information, and virtual dry run information of treatment delivery per the optimized radiation treatment plan.
    Type: Grant
    Filed: March 30, 2020
    Date of Patent: October 25, 2022
    Assignee: Varian Medical Systems International AG
    Inventors: Janne I. Nord, Anssi Kesti-Helia, Sylvie Spiessens, Helen Phillips, Santtu T. T. Ollila, Tor-Erik Malen, Francesca Attanasi, Anri Maarita Friman, Anne Razavi
  • Publication number: 20210299470
    Abstract: Deep learning approaches automatically segment at least some breast tissue images while non-deep learning approaches automatically segment organs-at-risk. Both three-dimensional CT imaging information and two-dimensional orthogonal topogram imaging information can be used to determine virtual-skin volume. The foregoing imaging information can also serve to automatically determine a body outline for at least a portion of the patient. That body outline, along with the virtual-skin volume and registration information can serve as inputs to automatically calculate radiation treatment platform trajectories, collision detection information, and virtual dry run information of treatment delivery per the optimized radiation treatment plan.
    Type: Application
    Filed: March 30, 2020
    Publication date: September 30, 2021
    Inventors: Janne I. Nord, Anssi Kesti-Helia, Sylvie Spiessens, Helen Phillips, Santtu T.T. Ollila, Tor-Erik Malen, Francesca Attanasi, Anri Maarita Friman, Anne Razavi
  • Publication number: 20190304617
    Abstract: A control circuit optimizes a radiation treatment plan for a patient treatment volume using an automatically iterating optimization process that optimizes as a function, at least in part, of predetermined cost functions, wherein at least one of the cost functions favors apertures for the multi-leaf collimation system having local curvature that deviates only minimally from a reference curvature. By one approach the control circuit determines the reference curvature as a function, at least in part, of at least one of setting the reference curvature to a static minimal local curvature, a shape of a projective mapping of the treatment volume onto an isocenter plane, and/or a fluence map associated with an amount of radiation to be administered to the treatment volume from a particular direction. By one approach the control circuit dynamically determines when to employ one or more such cost functions.
    Type: Application
    Filed: March 30, 2018
    Publication date: October 3, 2019
    Inventors: Santtu T.T. Ollila, Janne I. Nord, Jarkko Y. Peltola