Dual-optical path molecular image navigation system and imaging method with switchable field of view

A molecular imaging and navigation system technology, applied in medical science, sensors, surgery, etc., to achieve a wide range of application scenarios, broaden the effective working range, and achieve effective and compatible effects
CN104367380BActive Publication Date: 2016-09-07INST OF AUTOMATION CHINESE ACAD OF SCI

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
INST OF AUTOMATION CHINESE ACAD OF SCI
Publication Date
2016-09-07

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Abstract

The invention discloses a view-switchable dual-optical-path molecular image navigation system and an imaging method. The view-switchable dual-optical-path molecular image navigation system comprises a camera module, an imaging system switching module, an open-type imaging module, an endoscopic-type imaging module, a data processing module and a system support module. The camera module is used for color imaging and fluorescence imaging. The imaging system switching module is used for switching an open-type imaging mode or an endoscopic-type imaging mode according to imaging need. The open-type imaging module is used for large-view observation imaging. The endoscopic-type imaging module is used for deep-view detection imaging. The data processing module is used for providing camera control software and image acquisition, processing and display methods. The system support module is used for providing support and connection for navigation equipment.
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Description

technical field

[0001] The invention belongs to the technical field of optical molecular imaging, and involves an excitation fluorescence imaging method, an image processing method, an endoscopic optical molecular image navigation method, and an open optical molecular image navigation method. Background technique

[0002] Molecular imaging refers to the nondestructive detection and imaging of organisms at the cellular and molecular levels, such as nuclear magnetic resonance, PET, ultrasound, and optical molecular imaging. As an important imaging modality, optical molecular imaging has become a research hotspot due to its advantages of low cost, high throughput, non-invasive, non-contact, non-ionizing radiation, high sensitivity, and high specificity. Excited fluorescence molecular imaging technology is an important branch of optical molecular imaging. It uses an external light source to excite fluorescent markers in organisms, and the excited fluorescent markers emit fluores...

Claims

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