Device and method for intraoperative reconstruction of bone 3d models
US-2024394982-A1 · Nov 28, 2024 · US
US2021113170A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2021113170-A1 |
| Application number | US-201816498431-A |
| Country | US |
| Kind code | A1 |
| Filing date | Mar 27, 2018 |
| Priority date | Mar 27, 2017 |
| Publication date | Apr 22, 2021 |
| Grant date | — |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
This diagnostic image processing apparatus receives an input of an X-ray image of a hand or a foot, detects, in the X-ray image, the imaging range of the left hand, the right hand, the left foot, or the right foot, and extracts, at least for each joint located in the detected imaging range and used for assessment by using an assessment method selected from either van der Heijde method or Genant method, portions of relatively high luminance from the opposing ends of a pair of bones located across each of the joints. Then, the diagnostic image processing apparatus generates and outputs information about a distance and an area between the extracted high luminance parts as diagnosis information for each joint used for the assessment carried out by the selected assessment method.
Opening claim text (preview).
1 . A diagnostic image processing apparatus comprising: a receiving device which receives an input of an X-ray image of a hand or a foot, a high luminance portion extraction device which detects a captured image range of the left hand, the right hand, the left foot, or the right foot from the received X-ray image, and with respect to at least each joint to be used by an assessment method selected from either van der Heijde (VDH) or Genant from among the joints of the left hand, the right hand, the left foot, or the right foot located in the detected captured image range, extracts portions having relatively high luminance from opposing ends of a pair of bones having the joint therebetween, a diagnostic information generation device which generates information regarding a distance and an area between the extracted high luminance portions as diagnostic information, with respect to each joint to be used for assessment by the selected assessment method, and an output device which outputs the generated diagnostic information. 2 . A diagnostic image processing apparatus according to claim 1 further comprising an outline setting device which detects a captured image range of the left hand, the right hand, the left foot, or the right foot from the received X-ray image, and sets an outline of each bone, an image of which is captured in the detected captured image range, wherein the high luminance portion extraction device specifies a bone including the extracted high luminance portion using the set outline, and outputs information for specifying a joint located adjacent to the high luminance portion together with information of the extracted high luminance portion, and the diagnostic information generation device generates information regarding a distance and an area between the extracted high luminance portions adjacent to the specified joint, as diagnostic information, with respect to each joint to be used for assessment by the selected assessment method, and outputs the generated diagnostic information in association with information for specifying a joint regarding the generated diagnostic information. 3 . A diagnostic image processing apparatus according to claim 2 , wherein the outline setting device estimates a length of the longest finger among the fingers the images of which are captured in the detected captured image range, estimates a length of each bone the image of which is captured in the detected captured image range using a predetermined ratio relative to the length of the estimated finger, and sets an outline of each bone using the estimated length. 4 . A diagnostic image processing apparatus according to claim 1 , further comprising a device which further receives an input of information for specifying a person to be diagnosed, the image of the person being captured in the received X-ray image, and an input of information of time and date when the X-ray image is captured, and which records the diagnostic information in association with the received information for specifying the person to be diagnosed and the information of image captured time and date, so as to output a record of diagnostic information on the basis of X-ray images captured on mutually different time and date for each person to be diagnosed. 5 . A method for assisting assessment of progress or improvement of bone deformation using a computer, comprising: a step of inputting an X-ray image of a hand or a foot, information for specifying a person to be diagnosed whose image is captured in the X-ray image, and information of time and date when the X-ray image is captured; detecting a captured image range of the left hand, the right hand, the left foot, or the right foot from the X-ray image; and extracting, with respect to at least a joint to be used by an assessment method selected from either van der Heijde (VDH) or Genant from among the joints of the left hand, the right hand, the left foot, or the right foot located in the detected captured image range, portions having relatively high luminance from opposing ends of a pair of bones having the joint therebetween; a step of generating information regarding a distance and an area between the extracted high luminance portions as diagnostic information; a step of recording the generated diagnostic information in association with the received information for specifying the person to be diagnosed and the information of image captured time and date; and a step of outputting a record of diagnostic information on the basis of X-ray images captured on mutually different time and date for each person to be diagnosed. 6 . A non-transitory computer readable medium storing a program which causes a computer to execute steps of: receiving an input of an X-ray image of a hand or a foot, detecting a captured image range of the left hand, the right hand, the left foot, or the right foot from the received X-ray image, and with respect to at least each joint to be used by an assessment method selected from either van der Heijde (VDH) or Genant from among the joints of the left hand, the right hand, the left foot, or the right foot located in the detected captured image range, extracting portions having relatively high luminance from opposing ends of a pair of bones having the joint therebetween, generating information regarding a distance and an area between the extracted high luminance portions as diagnostic information, and outputting the generated diagnostic information. 7 . A diagnostic image processing apparatus according to claim 2 , further comprising a device which further receives an input of information for specifying a person to be diagnosed, the image of the person being captured in the received X-ray image, and an input of information of time and date when the X-ray image is captured, and which records the diagnostic information in association with the received information for specifying the person to be diagnosed and the information of image captured time and date, so as to output a record of diagnostic information on the basis of X-ray images captured on mutually different time and date for each person to be diagnosed. 8 . A diagnostic image processing apparatus according to claim 3 , further comprising a device which further receives an input of information for specifying a person to be diagnosed, the image of the person being captured in the received X-ray image, and an input of information of time and date when the X-ray image is captured, and which records the diagnostic information in association with the received information for specifying the person to be diagnosed and the information of image captured time and date, so as to output a record of diagnostic information on the basis of X-ray images captured on mutually different time and date for each person to be diagnosed.
Biomedical image inspection · CPC title
General purpose image data processing · CPC title
for diagnosis of bone · CPC title
for simulation or modelling of medical disorders · CPC title
X-ray image · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.