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X-ray-film-based method for locating coordinates of pedicle screws

A pedicle screw and coordinate positioning technology, which is applied in medical science, surgery, foreign body detection, etc., can solve the problems of increasing the difficulty of pedicle positioning, irregular transverse processes, and prone to internal or external positioning. Achieve the effect of reducing spinal degeneration and anatomical variation, high safety and controllability, and overcoming radiation damage

Inactive Publication Date: 2011-02-16
王铁铸
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] For the above traditional methods, when clinicians, especially young doctors, deal with patients with obvious spinal hyperplasia and degeneration, there will be a lot of deviation when positioning the nail. Inwardly or outwardly; Some transverse processes are not very regular, and it is easy to be positioned upward or downward when probing the upper and lower edges of the transverse process
In addition, when probing the upper and lower borders of the transverse process, it is necessary to peel off the exposed transverse process and easily damage the arteriole network around the transverse process, which will inevitably increase the amount of blood loss during the operation
Transverse process fractures occur in some vertebral bodies in some traumatic spinal injuries, which also increases the difficulty of pedicle positioning
Especially those clinicians who are not rich in experience, and there are differences between individuals, they are prone to positioning deviations when faced with the above situations. It can be seen that there are many disadvantages in using the lumbar spine for traditional pedicle positioning marks

Method used

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  • X-ray-film-based method for locating coordinates of pedicle screws
  • X-ray-film-based method for locating coordinates of pedicle screws
  • X-ray-film-based method for locating coordinates of pedicle screws

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] Example 1: A fracture of the 2nd lumbar vertebra needs to be fixed with pedicle screws through posterior incision, and the pedicle entry points of lumbar vertebrae 1 and 3 need to be determined. On the X-ray film, find the outer edge of the lamina of lumbar vertebra 1 and lumbar vertebra 3, and determine the medial wall of the pedicle of lumbar vertebra 1 and 3 (the longitudinal extension line passing through the outer edge of the lumbar lamina just passes through the inner edge of the pedicle, This line is the A line mentioned above), determine the midpoint of the line connecting the midpoints of the spinous processes of "thoracic vertebra 12, lumbar vertebra 1" and "lumbar vertebra 2, lumbar vertebra 3", and then make the parallel lower vertebral body endplate through the midpoint Parallel line (a single finger can be placed horizontally on the supraspinous ligament in the interspinous process space during the operation, so that it is in the middle of the spinous proce...

Embodiment 2

[0026] Example 2: When the fracture of the 12th thoracic vertebrae requires posterior incision for internal fixation with pedicle screws, take an X-ray film first, and determine the pedicle entry points of the thoracic vertebra 11 and lumbar vertebra 1 on the X-ray film (lumbar vertebra 1 vertebral The pedicle entry point has been described). Through the midpoint of the line between the facet joints of thoracic vertebra 10 and thoracic vertebra 11, draw the longitudinal extension line C (this line passes through the central axis of the disfigured position of the thoracic vertebral pedicle), and pass through the transverse extension line D of the lower edge of the spinous process of thoracic vertebra 10 Line (this line just passes through the middle 1 / 3 of the pedicle of the thoracic 11th vertebra). The intersection point E2 of the C line and the D line is the pedicle screw entry point of the thoracic vertebra 11 . See Figure 4 , 5 .

[0027] The facet joints of the thorac...

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PUM

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Abstract

The invention relate to an X-ray-film-based method for locating coordinates of pedicle screws, comprising the following steps: measuring transverse diameter, longitudinal diameter and angle of a vertebral pedicle of a centrum on an X-ray plane film; producing a longitudinal extended line A passing the out edge of an vertebral plate by taking thoracic vertebra12-lumbar vertebra 5 as coordinate points; producing a transverse extended line B by midpoints of spinous process midpoint connection lines adjacent to the thoracic vertebra12-lumbar vertebra 5; taking line midpoints of thoracic vertebra zygapophyseal joints as a longitudinal extended line C; taking the line midpoints passing chest 10 spinous process inferior boarder as an extended line D; transferring the intersection point of the extended line A and the extended line B outwards by 4-6mm to reach the locating points of thoracic vertebra12-lumbar vertebra 5; and taking the intersection point of the extended line C and the extended line D as the locating point of the thoracic vertebra 11. The method of the invention is easy to understand and convenient to operate. As the method is completely performed on the X-ray plane film, radioactive injury directly exerted on human body by the traditional location method is overcome. In addition, influence of spinal column regression and variation in anatomy resulting from the traditional method for locating the pedicle screws is reduced and the method features accurate location, high security and high controllability.

Description

technical field [0001] The invention relates to a positioning method, in particular to a coordinate positioning method of a pedicle screw based on an X-ray film. Background technique [0002] For some patients with spinal degeneration and spinal trauma fractures, it is generally necessary to perform posterior pedicle screw internal fixation. In the past, the following methods were mostly used for traditional positioning: For the lumbar spine: 1. Mager (1986) advocated along the outer facet process of the vertebral body The nail is positioned at the intersection of the marginal vertical line and the transverse process bisector, parallel to the end plate of the vertebral body and at an angle of 15° to the sagittal plane, and goes medially through the pedicle to the subcortex of the anterior vertebral body. 2. Roy-Camille (1986) suggested that the nail should be inserted at the intersection of the extension line of the vertical line of the articular process and the bisector of ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B6/12A61B17/90
Inventor 王铁铸王月邱国良王旭王清和陈祥云
Owner 王铁铸
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