AR detection glasses for detecting position of parathyroid gland
A technology for parathyroid glands and glasses is applied in the field of medical surgery to reduce the impact of ambient light, realize real-time detection, and solve the effects of ambient light.
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Embodiment 1
[0073] Embodiment 1 A detection instrument for detecting parathyroid glands according to the present invention, comprising:
[0074] The AR glasses body 7 includes a spectacle frame 71 for wearing on the eyes and an enhanced display lens assembly 72 for enhancing the display of the position of the parathyroid gland. The spectacle frame is composed of a beam 711 and temples 712. A hollow cavity, and each of its lateral ends is fixedly connected to a mirror leg; a power supply, a near-infrared autofluorescence receiving device and a data signal processing component are arranged in the hollow cavity of the beam, and a near-infrared autologous Fluorescence excitation device 3 and near-infrared autofluorescence receiving device 5, the lateral ends of the front end of the beam are symmetrically equipped with a camera, and the two cameras form a visible light RGB binocular camera 15; the bottom of the beam along its Two pieces of enhanced display lens assemblies are fixed in the leng...
Embodiment 2
[0098] Embodiment 2 An application method of AR detection glasses for detecting the position of parathyroid glands, comprising the following steps:
[0099] S100: closing the first switch to supply power to the near-infrared autofluorescence excitation device; before receiving the laser conduction enabling signal from the data signal processing component, the laser diode of the near-infrared autofluorescence excitation device does not emit light;
[0100] S200: Close the second switch, supply power to the data signal processing component, the data signal processing component starts to work, and starts three subprocesses:
[0101] S300: Process 1, control the near-infrared autofluorescence excitation device to emit light and turn off; collect the image data from the near-infrared autofluorescence receiving device synchronized with the laser on and off operation; analyze the collected image data sequence to find the near-infrared autofluorescence The position of the thyroid glan...
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