Multi-focal-depth and multi-spectrum-section laparoscope three-dimensional monitoring equipment
A monitoring device and laparoscopic technology, applied in the field of medical imaging, can solve the problems of no distance on the screen, prolong the operation time, hidden dangers, etc., and achieve the effect of reducing the difficulty of surgical operation, ensuring the safety of the operation, and improving the safety.
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Embodiment 1
[0046] see figure 1, is a structural block diagram of a laparoscopic three-dimensional monitoring device with multiple focal depths and multiple spectral segments provided by an embodiment of the present invention. The multi-focus, multi-spectral laparoscopic three-dimensional monitoring equipment 10 includes a three-dimensional laparoscope 1 with a dual optical path parallel camera system 11 and a three-dimensional display system 2. The three-dimensional display system 2 includes a three-dimensional display device 21 and a three-dimensional Polarized glasses22. The three-dimensional laparoscope 1 is a double-lens laparoscope that can be inserted into the body through an organ tube to capture multi-focal surgical images in the patient's abdominal cavity and convert them into 3D stereoscopic images for display by the three-dimensional display device 21, while the user ( For example, a patient) can observe a 3D surgical field of view on the 3D display device 21 after wearing th...
Embodiment 2
[0056] Such as image 3 Shown is a structural block diagram of a laparoscopic three-dimensional monitoring device with multiple focal depths and multiple spectral segments provided by the second embodiment of the present invention. Like Embodiment 1, the laparoscopic three-dimensional monitoring system 20 provided in this embodiment includes a three-dimensional laparoscope 1 with a dual optical path parallel camera system 11 and a three-dimensional display system 2, and the three-dimensional display system 2 includes a three-dimensional display device 21 used in conjunction with each other And three-dimensional polarized glasses 22. The three-dimensional laparoscope 1 is a double-lens laparoscope that can be inserted into the body through an organ tube, so as to capture multi-focal surgical images in the patient's abdominal cavity and convert them into 3D stereoscopic image displays through the three-dimensional display device 21. After wearing the three-dimensional polarizin...
Embodiment 3
[0064] refer to Figure 4 , is a structural block diagram of a laparoscopic three-dimensional monitoring device with multiple focal depths and multiple spectral segments provided by the third embodiment of the present invention. Like Embodiment 2, the laparoscopic three-dimensional monitoring system 30 provided in this embodiment includes a three-dimensional laparoscope 1 and a three-dimensional display system 2 with a dual optical path parallel camera system 11 and a far-near infrared receiving sensor 12, and the three-dimensional display system 2 includes mutual A three-dimensional display device 21 and three-dimensional polarizing glasses 22 are used in conjunction. The three-dimensional laparoscope 1 is a double-lens laparoscope that can be inserted into the body through an organ tube, so as to capture multi-focal surgical images in the patient's abdominal cavity and convert them into 3D stereoscopic image displays through the three-dimensional display device 21. After we...
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