1.Operation and Administration of Rehabilitation Institutions in China
Zhongxiang MI ; Qiuchen HUANG ; Fei LIU ; Jianjun LI ; Jun CHENG ; Zhiru CUI ; Pei LI ; Haifeng SHI ; Hao DONG ; Ailing ZHU ; Baohua WANG ; Xiaoyue ZHOU ; Wen BAO ; Didi LU ; Ying LI ; Tianyi CHU ; Mengmeng WANG
Chinese Journal of Rehabilitation Theory and Practice 2015;(1):103-105
How to give full play to the advantages of rehabilitation institutions, and to improve service quality and administration efficiency are some of the complex issues faced by the high-level administrators of rehabilitation institutions. This paper studied a total of 67 institutions to investigate the operation and management model of rehabilitation institutions in China, as well as their advantages and disadvantages.
2.Efficient Performance Management System of Medical Rehabilitation in China
Jun CHENG ; Zhongxiang MI ; Zhiru CUI ; Jianjun LI ; Pei LI ; Haifeng SHI ; Hao DONG ; Ailing ZHU ; Baohua WANG ; Xiaoyue ZHOU ; Wen BAO ; Qiuchen HUANG ; Fei LIU ; Ying LI ; Didi LU ; Tianyi CHU ; Mengmeng WANG
Chinese Journal of Rehabilitation Theory and Practice 2015;(1):106-108
The establishment of an efficient performance management system is crucial for a rehabilitation institution. This article discussed the concept of performance, performance management and ways to establish an efficient performance management system.
3.Timing calibration comparison research of integrated TOF-PET/MR.
Tianyi ZENG ; Hui YANG ; Tuoyu CAO ; Lingzhi HU ; Xu CHU ; Xinyu LU ; Qun CHEN
Journal of Biomedical Engineering 2019;36(6):1003-1011
Integrated TOF-PET/MR is a multimodal imaging system which can acquire high-quality magnetic resonance (MR) and positron emission tomography (PET) images at the same time, and it has time of flight (TOF) function. The TOF-PET system usually features better image quality compared to traditional PET because it is capable of localizing the lesion on the line of response where annihilation takes place. TOF technology measures the time difference between the detectors on which the two 180-degrees-seperated photons generated from positron annihilation are received. Since every individual crystal might be prone to its timing bias, timing calibration is needed for a TOF-PET system to work properly. Three approaches of timing calibration are introduced in this article. The first one named as fan-beam method is an iterative method that measures the bias of the Gaussian distribution of timing offset created from a fan-beam area constructed using geometric techniques. The second one is to find solutions of the overdetermination equations set using L1 norm minimization and is called L1-norm method. The last one called L2-norm method is to build histogram of the TOF and find the peak, and uses L2 norm minimization to get the result. This article focuses on the comparison of the amount of the data and the calculation time needed by each of the three methods. To avoid location error of the cylinder radioactive source during data collection, we developed a location calibration algorithm which could calculate accurate position of the source and reduce image artifacts. The experiment results indicate that the three approaches introduced in this article could enhance the qualities of PET images and standardized uptake values of cancer regions, so the timing calibration of integrated TOF-PET/MR system was realized. The fan-beam method has the best image quality, especially in small lesions. In integrated TOF-PET/MR timing calibration, we recommend using fan-beam method.
Algorithms
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Calibration
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Image Processing, Computer-Assisted
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Magnetic Resonance Imaging
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Magnetic Resonance Spectroscopy
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Multimodal Imaging
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Positron-Emission Tomography