Three-dimensional guiding method for use in orthopaedic operation and guider thereof

An orthopedic surgery, three-dimensional fixed technology, applied in surgery, medical science, trocars, etc., can solve the problems of affecting the accuracy of the device, complicated and complicated use, errors, etc., to improve the accurate information of the position, avoid human errors, and high positioning accuracy. Effect

Active Publication Date: 2010-10-27
王智运 +1
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Problems solved by technology

From the physical characteristics of the material itself, it is difficult to guarantee its inherent accuracy; the tool accuracy during processing also affects the accuracy of its device
[0006] 3. Due to the difference between nurses and nurses in the operation, it is difficult to require every user to abide by the reading rules when reading the scale, and human error is introduced from actual use
[0008] 5. From the description of the structure of the device itself, it is determined that its volume is too large, it is not portable, and it cannot provide dynamic position informat

Method used

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  • Three-dimensional guiding method for use in orthopaedic operation and guider thereof
  • Three-dimensional guiding method for use in orthopaedic operation and guider thereof
  • Three-dimensional guiding method for use in orthopaedic operation and guider thereof

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Embodiment Construction

[0033] The present invention will now be explained more fully with reference to the accompanying drawings, in which exemplary embodiments of the invention are shown.

[0034] A three-dimensional directional guidance method for orthopedic surgery proposed by the present invention, by fixing and installing an acceleration sensor and a magnetic field sensor on the surgical instrument, the acceleration sensor obtains the gravitational acceleration component corresponding to each axis of the surgical instrument, and the magnetic field sensor obtains each axis of the surgical instrument. Corresponding magnetic field components; then convert the acquired gravitational acceleration components and magnetic field components into azimuth and sagittal angle information for real-time display, and perform real-time three-dimensional orientation guidance based on the displayed azimuth and sagittal angle information.

[0035] The calculation method used to convert the obtained gravitational ac...

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Abstract

The invention discloses a three-dimensional guiding method for use in an orthopaedic operation and a guider thereof. In the invention, an acceleration sensor and a magnetic field sensor are fixedly arranged on an operating instrument, wherein the acceleration sensor acquires gravity acceleration components corresponding to the axes of the operating instrument, and the magnetic field sensor acquires the magnetic field components corresponding to the axes of the operating instrument; the acquired gravity acceleration components and magnetic field components are converted into azimuth angle and sagittal saw angle information which is to be displayed in real time; and real-time three-dimensional orientation guiding is performed according to the displayed azimuth angle and sagittal saw angle information. The guider can be used to help medical care personnel to determine the sizes of azimuth angles and sagittal saw angles in clinic so as to avoid various human errors. Meanwhile, the guider has a small volume and therefore is convenient to carry; and when the guider is used, the medical care personnel can acquire real-time position accurate information, so that the successful rate of an operation can be increased.

Description

technical field [0001] The present invention relates to a three-dimensional directional guide method for orthopedic surgery; the present invention also relates to a three-dimensional directional guide using the method as an auxiliary device in orthopedic surgery such as cervical, thoracic, and lumbar pedicle puncture and screw fixation. device. Background technique [0002] In the existing orthopedic surgery operations, the puncture technique is widely used, especially in the transpedicular operation of spinal surgery, the puncture must be performed in the only correct bony channel, so that the screw or bone cement can be placed Therefore, clinicians are required to determine the sagittal angle and azimuth angle of instrument operation with high precision. However, at present, the angle is generally estimated roughly based on the experience of the doctor's visual observation. Therefore, even an experienced doctor cannot guarantee that the angle is completely correct or basi...

Claims

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Application Information

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IPC IPC(8): A61B17/56A61B17/90A61B17/34
Inventor 王智运赵硕峰
Owner 王智运
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