Object three-dimensional drawing method based on medical education

A technology for medical education and objects, applied in image data processing, instrumentation, 3D modeling, etc., can solve problems such as low signal-to-noise ratio, image edge jaggedness, cloud storage space and cache burden, etc.

Pending Publication Date: 2020-10-23
成都智学易数字科技有限公司
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  • Abstract
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AI Technical Summary

Problems solved by technology

However, better image fluency and more detailed image information will inevitably require an increase in the resolution and frame rate of the model file, but the capacity of the model file will also increase as a result, resulting in a greater burden on cloud storage space and cache
If super-resolution reconstruction and other technologies are used, the image edge often has distortion problems such as jagged phenomenon
In addition, the reconstruction method of the existing scheme still has the problem of low signal-to-noise ratio, and it is impossible to propose a suitable image enhancement mechanism for the medical image scanning system. Therefore, it is necessary to provide a cloud-based storage space, cache size, network speed and image quality. A method for high-resolution 3D image reconstruction

Method used

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  • Object three-dimensional drawing method based on medical education
  • Object three-dimensional drawing method based on medical education
  • Object three-dimensional drawing method based on medical education

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Embodiment Construction

[0016] The following and accompanying appendices illustrating the principles of the invention Figure 1 A detailed description of one or more embodiments of the invention is provided together. The invention is described in connection with such embodiments, but the invention is not limited to any embodiment. The scope of the invention is limited only by the claims and the invention encompasses numerous alternatives, modifications and equivalents. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. These details are provided for the purpose of example and the invention may be practiced according to the claims without some or all of these specific details.

[0017] Aspects of the present invention provide a method for three-dimensional rendering of an object based on medical education. The method is realized by the medical image scanning reconstruction system of the present invention. The...

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Abstract

The invention provides an object three-dimensional drawing method based on medical education. The method comprises the steps that high-resolution image blocks and low-resolution image blocks are collected through a medical image scanning device; calculating by a deep learning engine to obtain a plurality of candidate high-resolution pixel sets and reference high-resolution pixel sets; the deep learning engine generates a post-processing residual value; a pixel summation unit performs pixel summation operation on the post-processing residual value and the low-resolution image block to obtain forward and reverse prediction high-resolution image blocks; a bi-directional predictor generates a super-resolution tile for the forward predicted high-resolution tile and the reverse predicted high-resolution tile. According to the object three-dimensional drawing method based on medical education, the three-dimensional image quality and the operation efficiency are effectively improved with low software and hardware cost, and meanwhile the problems of image distortion of an existing reconstruction method and limited bandwidth and limited storage space of an existing remote reconstruction method are solved.

Description

technical field [0001] The invention relates to three-dimensional image reconstruction, in particular to an object three-dimensional rendering method based on medical education. Background technique [0002] High-resolution 3D images have higher quality and clear details, which are very important for applications such as medical imaging. The medical image scanning system needs to record the model file and compress the image and then transmit it to the cloud. After the cloud decompresses the model file, it can be transmitted to the medical terminal for real-time monitoring by the user. Multiple model files collected for users to call at any time. However, better image fluency and more detailed image information will inevitably require an increase in the resolution and frame rate of the model file, but the capacity of the model file will also be increased, resulting in a greater burden on cloud storage space and cache. If technologies such as super-resolution reconstruction ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06T3/40G06T7/55G06T17/00
CPCG06T3/4046G06T3/4053G06T17/00G06T2207/20081G06T2207/20084G06T7/55
Inventor 张丹石钊
Owner 成都智学易数字科技有限公司
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