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METHOD FOR PREOPERATIVE PLANNING OF ORTHOGNATIC SURGERY IN PATIENTS WITH CONGENITAL ANOMALIES OF JAWS
专利权人:
Kurakin Konstantin Aleksandrovich
发明人:
Kurakin Konstantin Aleksandrovich (RU),Куракин Константин Александрович (RU),Kolchin Sergej Aleksandrovich (RU),Колчин Сергей Александрович (RU),Salimkhanov Vildan Yakubovich (RU),Салимханов Вильдан Я
申请号:
RU2019112958
公开号:
RU0002711974C1
申请日:
2019.04.26
申请国别(地区):
RU
年份:
2020
代理人:
摘要:
FIELD: medicine.SUBSTANCE: invention relates to the field of medicine, namely to surgical dentistry and maxillofacial surgery, to a method for preoperative planning of orthognatic surgery in patients with congenital anomalies of jaws, and can be used in conditions of maxillofacial, dental department, as well as other medical institutions. Disclosed is a method for preoperative planning of orthognatic surgery in patients with congenital anomalies of jaws, characterized by the fact that preoperative period before orthognatic intervention is determined by method of cone-beam computed tomography volume and the size of the surgical dentoalform anomalies of the area from the superciliary arcs to the edge of the body of the lower jaw of the patient in the natural position of the head, the obtained tomographic information is stored in a DICOM format and transferred into Dolphin Imaging, using 3dMDface camera of 3D patient's head photo in a natural position (HNP) with its location between two modular units comprising six chambers synchronized in one grip, at photographing speed of 1.5 millisecond with geometric accuracy ≤0.2 mm from 180° covering the patient's head from ear to ear, performing the obtained photographs rendering for 7–8 seconds with their preservation in the OBJ format, upper and lower jaws of the patient with developing abnormalities are made using Zher-mack Hydrogum impression mass to obtain their impressions, cast models of upper and lower jaw casts are molded by casting of prepared impressions with prepared mass of dental gypsum grade 4 using a vibration table and after 30–35 minutes, plaster models are removed from imprint, method includes scanning plaster models in an optical narrow-band scanner Zirkozahn S600 ARTI at scanning accuracy of 10 mcm and rotating models about its axis by 360° with inclination angle from vertical axis by 100° and obtained scans are stored in STL format, alignment with accuracy of 0.1 mm of the results of conical-beam computed
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