Medical
Optical imaging technology has become an important tool in the field of medicine, which can provide high-resolution, high-contrast images to help doctors diagnose and treat diseases.
Imaging
Optical imaging technology is the most widely used in imaging. Medical imaging is a science based on optical imaging technology. By irradiating various parts of the body and collecting the reflected light signals, information about the internal structure of the human body can be obtained. In hospitals, common imaging techniques such as X-ray, CT, MRI, ultrasound and so on all involve optical imaging technology.
Endoscope
Endoscopy technology is a non-invasive examination method that can be entered into the human body through various types of endoscopes to observe the condition of internal organs. The technology involves optical imaging, in which a dedicated optical imaging device converts signals from an endoscope into high-quality color images. Endoscopy technology plays a huge role in the examination of digestive tract, respiratory tract and other aspects, which helps doctors to carry out early detection and diagnosis of diseases.
Optical coherence tomography(OCT)
Optical coherence Tomography (OCT) is a new type of optical imaging technology, which has gained more and more popularity in the medical field in recent years. This technique mainly uses the optical interference effect to scan layer by layer of the sample being detected to form an image. It can not only examine eye diseases, but also observe small changes in skin tissue in real time, which brings more convenience for the diagnosis and treatment of skin diseases.
Laser surgical technique
Laser surgery is a special optical imaging technology, which plays an important role in the development of medicine. Due to its highly accurate selectivity, this technique has been widely used in the treatment and surgery of various diseases. Different types of laser surgery, such as myopia correction surgery, cataract treatment, cosmetic skin, atherosclerosis and other treatments can be carefully controlled by the laser beam, so that it is located to the location of the need for treatment, to achieve more accurate and efficient treatment effects
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