Patents by Inventor Se Byeong Lee

Se Byeong Lee 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: 12366670
    Abstract: The disclosure relates to a device for detecting therapeutic radiation based on an optical disk with solar cells. The radiation detecting device may include at least one optical disk formed of a water-equivalent material, disposed perpendicular to a first direction in which the radiation is incident, and converting the radiation into visible light; a solar cell disposed on one side of the at least one optical disk, converting the visible light into an electrical signal; and a processing module for collecting and processing the electrical signal outputted from the solar cell.
    Type: Grant
    Filed: March 10, 2023
    Date of Patent: July 22, 2025
    Assignees: NATIONAL CANCER CENTER, SEOUL NATIONAL UNIVERSITY HOSPITAL
    Inventors: Dongho Shin, Tae Hyun Kim, Tae-Ho Kim, Haksoo Kim, Dong-Seok Shin, Se Byeong Lee, Youngkyung Lim, Jonghwi Jeong, Jaeman Son
  • Publication number: 20240373538
    Abstract: Provided is a radiation irradiation device and method in which radiation intensity can be adjusted depending on an irradiation position. The device includes a radiation source, a target plate having an irradiation hole through which radiation emitted from the radiation source passes and having a first target stopper and a second target stopper formed to protrude on both surfaces, respectively, X-axis shield plates and Y-axis shield plates coupled to both sides of one surface of the target plate and including shield stoppers formed on a contact surface with the target plate and capable of being moved with respect to the target plate. The X-axis shield plate are coupled laterally with shield stoppers capable of moving laterally and the Y-axis plate are coupled longitudinally with shield stoppers capable of moving longitudinally. The shield stoppers can be moved between two first target stoppers or two second target stoppers adjacent to each other.
    Type: Application
    Filed: August 22, 2022
    Publication date: November 7, 2024
    Applicant: NATIONAL CANCER CENTER
    Inventors: Dong Ho SHIN, Tae Hyun KIM, Hak Soo KIM, Se Byeong LEE, Young Kyung LIM, Jong Hwi JEONG
  • Publication number: 20240335678
    Abstract: The present invention relates to a conversion device for converting a treatment beam for treating a lesion of a subject, comprising: a collimator unit to which the treatment beam is incident and which has a plurality of slits; and a scattering unit that scatters the treatment beam that has passed through the collimator unit.
    Type: Application
    Filed: June 23, 2022
    Publication date: October 10, 2024
    Applicants: NATIONAL CANCER CENTER, RAPHARAD INC., INDUSTRY-ACADEMIC COOPERATION FOUNDATION, YONSEI UNIVERSITY, SAMSUNG LIFE PUBLIC WELFARE FOUNDATION
    Inventors: Young Kyung LIM, Myeong Soo KIM, Kyeong Yun PARK, Do Hyeon KIM, Sang Soo KIM, Hak Soo KIM, Jong Hwi JEONG, Se Byeong LEE, Dong Ho SHIN, Joo Young KIM, Tae Hyun KIM, Seong Ho MOON, Yang-Gun SUH, Hojin KIM, Kwanghyun JO
  • Publication number: 20230288582
    Abstract: The disclosure relates to a device for detecting therapeutic radiation based on an optical disk with solar cells. The radiation detecting device may include at least one optical disk formed of a water-equivalent material, disposed perpendicular to a first direction in which the radiation is incident, and converting the radiation into visible light; a solar cell disposed on one side of the at least one optical disk, converting the visible light into an electrical signal; and a processing module for collecting and processing the electrical signal outputted from the solar cell.
    Type: Application
    Filed: March 10, 2023
    Publication date: September 14, 2023
    Applicants: NATIONAL CANCER CENTER, SEOUL NATIONAL UNIVERSITY HOSPITAL
    Inventors: Dongho SHIN, Tae Hyun KIM, Tae-Ho KIM, Haksoo KIM, Dong-Seok SHIN, Se Byeong LEE, Youngkyung LIM, Jonghwi JEONG, Jaeman SON
  • Patent number: 11471701
    Abstract: A body-insertable device having an adjustable radiation emission direction and radiation emission range, which includes a first outer body extending to be long and an accommodation space having a first accommodation space and a second accommodation space having different distances to the first outer body.
    Type: Grant
    Filed: August 27, 2018
    Date of Patent: October 18, 2022
    Assignee: NATIONAL CANCER CENTER
    Inventors: Young Kyung Lim, Ui Jung Hwang, Young Moon Goh, Hak Soo Kim, Dong Ho Shin, Se Byeong Lee, Jong Hwi Jeong, Joo Young Kim, Tae Hyun Kim
  • Patent number: 11033244
    Abstract: The present invention relates to an in vivo radiation amount measuring instrument. An in vivo radiation amount measuring instrument according to the present invention comprises: a main body elongated along an in vivo inserting direction and capable of supplying a fluid; an expanding part having at least a portion thereof fixed or connected to the main body and capable of being expanded and contracted by means of the outflow/inflow of the fluid; and a radiation measuring part disposed on the expanding part and measuring the amount of surface radiation distribution on in vivo tissue which the expanding part contacts by expanding.
    Type: Grant
    Filed: March 4, 2016
    Date of Patent: June 15, 2021
    Assignee: NATIONAL CANCER CENTER
    Inventors: Young Kyung Lim, Eun Hee Jeang, Ui-Jung Hwang, Kwan Ho Cho, Se Byeong Lee, Dongho Shin, Jeonghoon Park, Dae Yong Kim, Joo-Young Kim, Tae Hyun Kim, Sun Young Kim, Kwanghyun Jo, Ki Mun Kang, Hojin Jeong
  • Publication number: 20200246634
    Abstract: A body-insertable device having an adjustable radiation emission direction and radiation emission range, which includes a first outer body extending to be long and an accommodation space having a first accommodation space and a second accommodation space having different distances to the first outer body.
    Type: Application
    Filed: August 27, 2018
    Publication date: August 6, 2020
    Applicant: NATIONAL CANCER CENTER
    Inventors: Young Kyung LIM, Ui Jung HWANG, Young Moon GOH, Hak Soo KIM, Dong Ho SHIN, Se Byeong LEE, Jong Hwi JEONG, Joo Young KIM, Tae Hyun KIM
  • Patent number: 9971048
    Abstract: Disclosed is a proton beam detection device comprising a sensor having optical fiber of an arrangement structure capable of accurately and efficiently detecting proton dose distribution such as bragg peak, spread out bragg peak (SOBP) and symmetry of a therapeutic proton beam emitted in a scattering mode. The proton beam detection device, which detects a proton beam emitted from a proton beam source in a scattering mode, comprises a sensor having a plurality of detection modules including reference optical fiber and detection optical fiber having a length longer than the length of the reference optical fiber, the plurality of detection modules being diagonally arranged in the depth direction along which the proton beam emitted from the proton beam source proceeds.
    Type: Grant
    Filed: December 10, 2014
    Date of Patent: May 15, 2018
    Assignee: NATIONAL CANCER CENTER
    Inventors: Dong Ho Shin, Me Young Kim, Joo Young Kim, Jae Man Son, Se Byeong Lee, Young Kyung Lim, Ui Jung Hwang
  • Publication number: 20180098742
    Abstract: The present invention relates to an in vivo radiation amount measuring instrument. An in vivo radiation amount measuring instrument according to the present invention comprises: a main body elongated along an in vivo inserting direction and capable of supplying a fluid; an expanding part having at least a portion thereof fixed or connected to the main body and capable of being expanded and contracted by means of the outflow/inflow of the fluid; and a radiation measuring part disposed on the expanding part and measuring the amount of surface radiation distribution on in vivo tissue which the expanding part contacts by expanding.
    Type: Application
    Filed: March 4, 2016
    Publication date: April 12, 2018
    Inventors: Young Kyung Lim, Eun Hee Jeang, Ui-Jung Hwang, Kwan Ho Cho, Se Byeong Lee, Dongho Shin, Jeonghoon Park, Dae Yong Kim, Joo-Young Kim, Tae Hyun Kim, Sun Young Kim, Kwanghyun Jo, Ki Mun Kang, Hojin Jeong
  • Patent number: 9671508
    Abstract: The disclosed device for detecting the position and dose distribution of a therapeutic proton beam emitted in a pencil beam scanning mode comprises: a proton beam progressing position detection unit comprising a plurality of first optical fibers arranged along the first direction and a plurality of second optical fibers arranged along the second direction which is different from the first direction; and a proton beam dose distribution detection unit comprising a plurality of optical wavelength converter, each of which comprises an optical wavelength conversion disk and an optical wavelength-converting optical fibers arranged along the outer circumference of the optical wavelength conversion disk.
    Type: Grant
    Filed: December 10, 2014
    Date of Patent: June 6, 2017
    Assignee: National Cancer Center
    Inventors: Dong Ho Shin, Me Young Kim, Joo Young Kim, Jae Man Son, Se Byeong Lee, Young Kyung Lim, Ui Jung Hwang
  • Publication number: 20160327659
    Abstract: Disclosed is a proton beam detection device comprising a sensor having optical fiber of an arrangement structure capable of accurately and efficiently detecting proton dose distribution such as bragg peak, spread out bragg peak (SOBP) and symmetry of a therapeutic proton beam emitted in a scattering mode. The proton beam detection device, which detects a proton beam emitted from a proton beam source in a scattering mode, comprises a sensor having a plurality of detection modules including reference optical fiber and detection optical fiber having a length longer than the length of the reference optical fiber, the plurality of detection modules being diagonally arranged in the depth direction along which the proton beam emitted from the proton beam source proceeds.
    Type: Application
    Filed: December 10, 2014
    Publication date: November 10, 2016
    Inventors: Dong Ho SHIN, Me Young KIM, Joo Young KIM, Jae Man SON, Se Byeong LEE, Young Kyung LIM, Ui Jung HWANG
  • Publication number: 20160327658
    Abstract: The disclosed device for detecting the position and dose distribution of a therapeutic proton beam emitted in a pencil beam scanning mode comprises: a proton beam progressing position detection unit comprising a plurality of first optical fibers arranged along the first direction and a plurality of second optical fibers arranged along the second direction which is different from the first direction; and a proton beam dose distribution detection unit comprising a plurality of optical wavelength converter, each of which comprises an optical wavelength conversion disk and an optical wavelength-converting optical fibers arranged along the outer circumference of the optical wavelength conversion disk.
    Type: Application
    Filed: December 10, 2014
    Publication date: November 10, 2016
    Inventors: Dong Ho SHIN, Me Young KIM, Joo Young KIM, Jae Man SON, Se Byeong LEE, Young Kyung LIM, Ui Jung HWANG
  • Publication number: 20150202463
    Abstract: In an apparatus for laser alignment and a method of aligning laser using the same, the apparatus for laser alignment is used in a radiation therapy system. The radiation therapy system includes a rotatable gantry having a radiation source generating radiation, a radiation shaping unit and a crosshair indicating a radiation field center, a couch on which a patient is disposed and a laser device disposed adjacent to the gantry to irradiate a laser for aiming. A light source irradiates light being mounted in the gantry. The couch is disposed adjacent to the gantry. Position and direction of the couch are controllable. The apparatus for laser alignment includes the plural alignment marks spaced apart from each other to be projected, thereby simultaneously checking alignment status by the irradiation of the light in at least one direction; and a level and a level adjusting part.
    Type: Application
    Filed: September 11, 2014
    Publication date: July 23, 2015
    Inventors: Young Kyung Lim, Jung Won Kwak, Yeon-Joo Kim, Sung Ho Moon, Dong Ho Shin, Se Byeong Lee, Kwanghyun Jo, Ui-Jung Hwang
  • Patent number: 8638982
    Abstract: Disclosed herein is a method of tracking the movement of an eyeball in eyeball tumor treatment. The method includes a calibration step of storing an actual length for each pixel of an image in a storage unit, a template image generation step of storing a patient's eyeball image as a template image of the patient's eyeball in the storage unit, an eyeball location tracking step of, during the treatment of the patient's eyeball, determining whether movement of the treatment image has occurred by comparing treatment images of the patient's eyeball in real time with the template image, and a control step of stopping the operation of the proton beam output device if the movement of the treatment image deviates from a preset tolerance range, and keeping operation of the proton beam output device normal if the movement of the treatment image is within the tolerance range.
    Type: Grant
    Filed: April 14, 2009
    Date of Patent: January 28, 2014
    Assignee: National Cancer Center
    Inventors: Dong Ho Shin, Sung Yong Park, Se Byeong Lee, Myong Geun Yoon, Young Kyung Lim, Kwan Ho Cho
  • Publication number: 20090257639
    Abstract: Disclosed herein is a method of tracking the movement of an eyeball in eyeball tumor treatment. The method includes a calibration step of storing an actual length for each pixel of an image in a storage unit, a template image generation step of storing a patient's eyeball image as a template image of the patient's eyeball in the storage unit, an eyeball location tracking step of, during the treatment of the patient's eyeball, determining whether movement of the treatment image has occurred by comparing treatment images of the patient's eyeball in real time with the template image, and a control step of stopping the operation of the proton beam output device if the movement of the treatment image deviates from a preset tolerance range, and keeping operation of the proton beam output device normal if the movement of the treatment image is within the tolerance range.
    Type: Application
    Filed: April 14, 2009
    Publication date: October 15, 2009
    Applicant: NATIONAL CANCER CENTER
    Inventors: Dong Ho Shin, Sung Yong Park, Se Byeong Lee, Myong Geun Yoon, Young Kyung Lim, Kwan Ho Cho