Release date: 2018-04-20 Recently, Beijing Friendship Hospital Otorhinolaryngology Head and Neck Surgery successfully implemented the first transencephalic acoustic neuroma resection in the country using a "mixed reality" technique for an acoustic neuroma patient. Acoustic neuroma is a benign tumor located in the intracranial inner auditory canal and the cerebellopontine angle. The local surgical space is narrow and the nerve vessels are clustered. Therefore, the risk and difficulty of surgery are very large. It is understood that this patient has a full sputum on the affected side before surgery, but the facial nerve function is completely normal, so the patient's expectation of maintaining facial nerve function is high. In view of this situation, Gong Shusheng, director of the Department of Otorhinolaryngology Head and Neck Surgery of Beijing Friendship Hospital, decided to use the "mixed reality" technology in the operation when formulating a treatment plan for the patient. Gong Shusheng said: "In the past, doctors could only rely on CT, MRI and other examination results to imagine reducing the patient's lesions in the brain. The 'mixed reality' technique is to generate a 3D holographic model of the patient's CT or nuclear magnetic data. The device clearly sees the 3D image of the patient's lesion, and can hide, zoom, rotate, move, change transparency, etc. of the image." “'Mixed reality' technology is like giving a doctor a pair of 'perspective eyes'.†Gong Shusheng said that the technology not only improves the accuracy and safety of surgery, but also changes the traditional communication mode between doctors and patients, enabling patients to understand themselves more intuitively. The condition and the corresponding treatment plan reduce the misunderstanding caused by the unequal medical information of both parties and effectively alleviate the anxiety of the patient. According to reports, "mixed reality" technology introduces real-world scene information in the virtual environment, and sets up a loop of interactive feedback information between the virtual world, the real world and users. The virtual three-dimensional reconstruction of the imaging data before surgery is helpful for the design of the surgical progress. In the operation, the 3D model of the lesion structure restored by the patient imaging data is used as the viewing object, and the virtual world and the real world are integrated in real time to guide the operation. Source: Xinhuanet
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