Method and system for realizing surgical navigation by using real-time structured light technology
A surgical navigation and structured light technology, applied in the field of surgical navigation, can solve the problems of lost surgical instrument tracking, complicated operation, distortion tracking, etc., and achieves the effect of saving operation time and patient cost, small size of equipment, and accurate positioning.
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Embodiment 1
[0048] This embodiment provides a method for realizing navigation in craniocerebral hematoma surgery using real-time structured light technology. The specific operations are as follows:
[0049] (1) Convert the MRI or CT scan data of the head into DICOM format data, and then perform three-dimensional modeling of the head based on the data to obtain the preoperative model;
[0050] (2) According to the preoperative model, analyze the anatomical structure of the craniofacial area and the hematoma area, and design the needle entry point and puncture route; the software automatically calculates the length from the needle entry point to the center of the hematoma according to the designed needle entry point and puncture route;
[0051] (3) Fix the head (face up) and the real-time depth-scanning camera 1 position; the real-time depth-scanning camera 1 is located at the middle bisection angle between the vertical line of the normal line of the head and face and the axis of the surgica...
Embodiment 2
[0055] This embodiment discloses a system for realizing surgical navigation using real-time structured light technology: including a DICOM module, a preoperative planning module, a three-dimensional scanning module, a markerless registration module, a computer-aided design (CAD) module, and a computer vision enhancement module;
[0056] DICOM module: used to convert MRI or CT scan data obtained before operation into DICOM data format;
[0057] Preoperative planning module: build a preoperative model based on the data provided by the DICOM module, then design the surgical needle entry point and puncture route based on the preoperative model, and then calculate the length from the needle entry point to the center of the hematoma;
[0058] Three-dimensional scanning module: use the real-time depth scanning camera 1 to send and receive structured light, scan the real-time point cloud of the operation area where the surgical instrument 2 exists, and obtain the point cloud file of th...
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