Articles reprinted from People's Daily Health Client

Wearing 3D glasses and guided by real-time three-dimensional OCT navigation, doctors can clearly see the subtle anatomical structures of the patient's eyes for surgery. On September 15, Wang Jingjing, executive director of the Global Health Industry Innovation Center, said that the independently developed high-end domestic ophthalmic microscope product "Bōyún", for the first time, realized the function of providing dynamic and real-time three-dimensional images of eye tissues and surgical tools during surgery, subverting the traditional surgical mode where microscopes can only see planar images and need to rely on clinical experience to judge lesion information. As one of the most important equipment in ophthalmic surgery, the surgical microscope can be regarded as the "eyes" of doctors, which can help doctors observe the anatomical structure of the patient's eyes more clearly and perform the surgery accurately. Whether it is anterior segment surgery (cataract surgery, glaucoma surgery, refractive surgery, etc.) or posterior segment surgery (vitreous cutting surgery, retinal surgery, etc.), it is indispensable.

The self-developed high-end domestic ophthalmic microscope product released by Tuopai Medical has changed the traditional ophthalmic surgical method that needs to rely on eyepieces and assistant mirrors. At the same time, based on the real-time three-dimensional intraoperative OCT navigation function of 400,000 times ultra-high-speed swept-frequency OCT (Optical Coherence Tomography) technology, doctors wear 3D glasses and perform surgery facing a 55-inch 3D large screen like watching a 3D movie, and can retrieve the required auxiliary information. Professor Lu Yi of the Ophthalmology Department of Eye and ENT Hospital of Fudan University said that as an ophthalmologist, it is very pleasing to see that domestic ophthalmic equipment can break through from major unmet clinical needs, allowing microscopes to move from the optical era to the information era and ophthalmic imaging examination equipment from the anatomical era to the functional era. This new type of fused bimodal imaging function provides a solid hardware platform for ophthalmic surgical microscopes to move towards full digitalization. Through image reality enhancement technology and artificial intelligence technology, it can greatly increase the amount of information doctors obtain during the surgery and assist doctors in making better surgical decisions, thereby improving the quality of surgery.