treatmentVascular formations on the face and body are a common phenomenon that occurs quite often, mainly in women. The use of LASEST lasers allows efficiently and in the shortest possible time to solve the problem of vascular formations the process of laser treatment of vascular diseases, the main goal of laser radiation exposure is hemoglobin of red blood cells in blood vessels, to a greater or lesser extent penetrating the skin surface in the area of pathological changes. The light energy of the laser radiation is selectively and controlledly focused in the area of the skin where the unwanted vascular network to be processed is located.
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Optical Coherence Tomography otherwise known as OCT is an advanced technology used specifically within retinal imaging and analysis. This non-invasive technology was designed to provide highly detailed images of the retina as well as the optic nerve. It uses light waves to take cross-section images of your retina, using OCT it is possible to see each of the retina’s distinctive layers. Within OCT’s, a light source with a broad optical bandwidth is used for illumination and is split by a Non-Polarising Beam-Splitter into 2 paths referred to as the reference and sample arms. The light from both the reference and sample arms are reflected back and combined at the detector. An interference effect is seen at the detector in the reference and sample arm only if the time travelled by the light is nearly equal. Read PDF for more info
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High precision automated laser marking is a process of marking or engraving a material using a high-powered laser beam. This process is widely used in a variety of industries including medical, automotive and smart devices manufacturing. The laser beam can mark materials such as metal, plastic and glass with extreme accuracy and detail down to micron scale. This makes it possible to mark the smallest materials and components.
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