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Method for measuring turning angle of humerus by using multiple line of CT three-D remodelling

A three-dimensional reconstruction, humeral head technology, applied in image data processing, instruments, image data processing and other directions, can solve the problems of time-consuming, inaccurate measurement methods, and difficulty in obtaining the definition line of the torsion angle accurately, so as to improve the accuracy and accuracy. The effect of the measurement method

Inactive Publication Date: 2007-01-31
THE FIRST AFFILIATED HOSPITAL OF THIRD MILITARY MEDICAL UNIVERSITY OF PLA
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  • Abstract
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AI Technical Summary

Problems solved by technology

With this method, it is difficult to accurately obtain the maximum level of the humeral head side, and the medial and medial epicondyles of the distal humerus are not displayed at the same level, so it is difficult to obtain the definition line of the torsion angle accurately. Large, requiring neutral humeral rotation, 0° extension, 0° abduction, and the X-ray beam is perpendicular to the bed surface
For these reasons, the measurement method is inaccurate and time-consuming
[0006] There are also CT three-dimensional reconstruction measurements, Boileau P, Walch G. The three-dimensional geometry of the proximal humerus. Implications for surgical technique and prosthetic design. J Bone Joint Surg (Br), 1997, 79 (5): 857-865. Use and computer The connected digital measurement device analyzed 65 specimens. The defined line of the humeral head side is the perpendicular line of the articular surface diameter (head circumference diameter). 17.9°±13.7°(-6.7°~47.5°, negative value indicates that the head twist angle is angled forward), when the distal definition line is parallel to the line connecting the medial condyle and trochlea, also known as the elbow tangent line, its measured value is 21.5°±15.1°(-10.3°~56.5°), this study clearly gave a schematic diagram of the definition line of the torsion angle of the humeral head, but did not involve how to connect the humeral head and the distal humeral medial and medial epicondyles in the standard overlooking position Overlapping in the same image, while ensuring that the bony landmarks required to define the line are clear, this also causes inaccurate measurement results

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  • Method for measuring turning angle of humerus by using multiple line of CT three-D remodelling

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Embodiment 1

[0029] Measure shoulder joint specimen humeral head torsion angle with method described in the present invention, step is as follows:

[0030](1) Place the shoulder joint specimen on the examination bed, with the orthogonal positioning lines respectively located on the front and side mid-axis of the humerus;

[0031] (2) Using Siemens Somatom Sensation 16-slice spiral CT scanner, CT scanning parameters: 120KV, effective mAs 150, collimator width 0.75mm, acquisition slice thickness 5mm, continuous scan data acquisition, overlap 1mm reconstruction, reconstruction slice thickness 2mm , the scanning range is from the acromion to the end of the trochlea;

[0032] (3) Three-dimensional reconstruction Reconstruct the shoulder joint with the volume reconstruction imaging processing method, use the shoulder joint mode in the volume reconstruction technology, cut and separate the scapula, and obtain the three-dimensional reconstruction image of the humerus;

[0033] (4) Obtain the defi...

Embodiment 2

[0035] Measure human humeral head torsion angle with method of the present invention, step is as follows:

[0036] (1) The subject lies supine on the examination bed, and the upper arm is placed in an anatomical position with the center of the palm facing forward.

[0037] (2), using Siemens Somatom Sensation 16-slice spiral CT scanner, CT scanning parameters: scanning kilovolt value: 130KV, effective milliampere second 160, collimator width 0.75mm, acquisition layer thickness 8mm, continuous scanning data acquisition, Overlap 1.5mm reconstruction, reconstruction layer thickness 2mm. The scanning range is from the acromion to the end of the trochlea;

[0038] (3) Three-dimensional reconstruction Reconstruct the shoulder joint with the volume reconstruction imaging processing method, use the shoulder joint mode in the volume reconstruction technology, cut and separate the scapula, and obtain the three-dimensional reconstruction image of the humerus;

[0039] (4) Obtain the de...

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Abstract

A 3D reproducing method with multi-row for measuring the torsional angle of humerus head includes such steps as using the shoulder joint mode in volume reproducing technique to cut and separate scapula and obtain the reproduced 3D humerus image, drawing a circle to fit the joint surface of humerus head, drawing a line between dots A and B which are cross points between said circle and joint surface, drawing the midnormal line EF or said line AB to obtain the far-end defining line of said torsional angle, drawing a line CD between the most convex dots of internal and external upper condyles to obtain its near-end defining line, and measuring the included angle between lines EF and CD to obtain said torsional angle.

Description

technical field [0001] The invention relates to a method for measuring the torsion angle of the humeral head in orthopedic medicine, in particular to a method for measuring the torsion angle of the humeral head by using multi-row X-ray CT (X-ray computed Tomography) three-dimensional reconstruction. Background technique [0002] The retroversion angle or retrotorsion angle of the humeral head refers to the angle between the central axis of the humeral head and the line connecting the medial and medial epicondyles of the distal humerus or the trochlear axis. It is one of the core indicators of joint reconstruction surgery and has very important clinical significance. Its measurement methods include direct anatomical measurement, X-ray plain film measurement, CT two-dimensional method measurement, etc. [0003] Direct anatomical measurement: Pearl ML, Volk AG. Retroversion of the proximal humerus in relationship to prosthetic replacement arthritis. J ShoulderElbow Surg. 1995,...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B6/03G06T1/00
Inventor 唐康来李锦青王健陈伟
Owner THE FIRST AFFILIATED HOSPITAL OF THIRD MILITARY MEDICAL UNIVERSITY OF PLA
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