The mandible is the most important bony support in the lower 1/3 skeleton of the face which is critical for both esthetics and function. Mandibular defects, resulting from tumor resection, can cause severe functional and cosmetic deformities. Nowadays, vascularized bony tissue transfer such as free fibula flap has been widely used for mandibular reconstruction. However, traditional mandibular reconstruction based on clinical experience may hawe some problems in accuracy and efficiency because of lacking individualized design. In recent years, digital surgical techniques such as computer-aided design, rapid prototyping and surgical navigation have been used for mandibular reconstruction surgery. Accurate design for tumor resection as well as individualized design for mandibular reconstruction can be performed with computer preoperatively which help to turn the virtual plan into reality by using surgical guide or navigation. Many studies suggested that digital surgical techniques could significantly improve the clinical outcome of mandibular reconstruction. In this article, we summarized the application of digital surgical techniques for mandibular reconstruction based on our own experience and literatures review.
- Article type
- Year
- Co-author
Open Access
Expert Forum
Issue
Open Access
Review Article
Issue
Oral squamous cell carcinoma (OSCC) is the most common malignant tumor in the oral and maxillofacial regions. Cervical lymph node metastasis is not only an important biological behavior of oral cancer but also an important factor affecting the prognosis of oral cancer patients. As neck dissection is the most commonly used method of neck management, the appropriate choice of surgical procedure is very important. The current view is that radical neck dissection or modified radical neck dissection can be used for patients with clinically node-positive neck (cN+), while selective neck dissection can be used for patients with clinically node-negative neck (cN0). In recent years, selective neck dissection has been increasingly popularized and applied. Its implications are also gradually expanding from cN0 to cN+. However, there is still no consensus on whether selective neck dissection can also be used in patients with cN+ necks. This article reviews the clinical studies on the neck management of cN+ OSCC patients in recent years, analyzes the effects of different neck dissections on the prognosis of cN+ OSCC patients, and summarizes the treatment principles of neck management.
Open Access
Expert Forum
Issue
Oral and maxillofacial tumors are common oral and maxillofacial surgery-related diseases. Digital surgical technology, represented by virtual surgical design and surgical navigation, is the main auxiliary means of the surgical diagnosis and treatment of oral and maxillofacial tumors. However, the existing digital technology still has some problems and room for improvement in terms of 3D visualization imaging and intraoperative hand-eye coordination. At present, the application of 3D visualization technology represented by mixed-reality technology has been rapidly developing in the medical field. It assists in realizing the real-time stereoscopic presentation of medical images by superimposing 3D virtual images onto the real surgical environment. Mixed-reality technology has been gradually applied to the diagnosis and treatment of oral and maxillofacial tumors. Preoperatively, mixed-reality technology can be used to construct a 3D model of the tumor and its surrounding vital structures based on imaging data, at which point the medical team can personalize the preoperative assessment and design the surgical plan in the mixed-reality environment. Intraoperatively, the combination of mixed-reality technology and surgical navigation technology can be used to display the 3D virtual model in real time in the actual environment of the operation area, overcoming the hand-eye coordination problem associated with using navigation technology alone and further improving the accuracy and safety of oral and maxillofacial tumor surgery. The combination of mixed-reality technology and internet medical technology can provide a high-quality teaching platform to promote the development of regional oral and maxillofacial surgery practices. The limitations of mixed-reality technology include image occlusion, lack of accuracy when used alone, and long alignment times. In this review, the application of mixed-reality technology to the diagnosis and treatment of oral and maxillofacial tumors will be summarized and assessed by combining information from domestic and international literature reports with the practical clinical experience of the author group.
京公网安备11010802044758号