An upright three-dimensional ultrasonic scanning imaging system
A three-dimensional ultrasound and scanning imaging technology, applied in ultrasound/sonic/infrasonic Permian technology, ultrasound/sonic/infrasound image/data processing, organ motion/change detection, etc., and can solve the problem of low 2D image accuracy , to achieve the effect of improving the success rate, improving the success rate of surgery, and simplifying the operation
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Embodiment 1
[0026] The present invention provides an ultrasonic system capable of performing automatic ultrasonic scanning conveniently and quickly, and generating a three-dimensional limb blood vessel model based on the collected images, so as to meet the urgent needs in the clinical treatment of modern dialysis patients and improve the success rate of the operation. Simplify the operation of medical staff and improve the medical experience of patients. An upright 3D ultrasound scanning imaging system. Such as figure 1 As shown, it includes a controller 1, an ultrasonic device 2 connected to the controller 1, an acquisition processor 3, a motion driver 5, a workstation 4 connected to the acquisition processor 3 and the ultrasonic device 2, and the The inspection mechanism connected with the driver 5, the controller 1, the acquisition processor 3 and the ultrasonic equipment 2, such as figure 2 As shown, the inspection mechanism includes a casing 6, and the casing 6 is sequentially prov...
Embodiment 2
[0030] Such as figure 1 As shown, the present invention provides an upright three-dimensional ultrasonic scanning imaging system, including a controller 1, an ultrasonic device 2 connected to the controller 1, an acquisition processor 3, a motion driver 5, and the acquisition processor 3 The workstation 4 connected with the ultrasonic device 2 and the inspection mechanism connected with the motion driver 5, the controller 1, the acquisition processor 3 and the ultrasonic device 4 respectively, such as image 3 As shown, the inspection mechanism also includes a second inspection chamber 13 with an open top and a central hole at the bottom, a driving motor 14 and an axial sealing chamber 15 located at the bottom of the second inspection chamber 13, wherein the The axis output end of the drive motor 14 is located in the axial seal cavity 15, and the inside of the second inspection cavity 13 is provided with a rotating arm 23, and the rotation arm 23 is connected to the axis outpu...
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