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Development of a compact DOI-TOF detector module for high-performance PET systems 被引量:6
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作者 Qing-Yang Wei Tian-Peng Xu +4 位作者 tian-tian dai Shi Wang Ya-Qiang Liu Yu Gu Tian-Yu Ma 《Nuclear Science and Techniques》 SCIE CAS CSCD 2017年第4期1-7,共7页
To increase spatial resolution and signal-to-noise ratio in PET imaging,we present in this paper the design and performance evaluation of a PET detector module combining both depth-of-interaction(DOI) and time-offligh... To increase spatial resolution and signal-to-noise ratio in PET imaging,we present in this paper the design and performance evaluation of a PET detector module combining both depth-of-interaction(DOI) and time-offlight(TOF) capabilities.The detector module consists of a staggered dual-layer LYSO block with2 mm × 2 mm × 7 mm crystals.MR-compatible SiPM sensors(MicroFJ-30035-TSV,SensL) are assembled into an 8× 8 array.SiPM signals from both fast and slow outputs are read out by a 128-channel ASIC chip.To test its performance,a flood histogram is acquired with a ^(22)Na point source on top of the detector,and the energy resolution and the coincidence resolving time(CRT) value for each individual crystal are measured.The flood histogram shows excellent crystal separation in both layers.The average energy resolution at 511 keV is 14.0 and 12.7%at the bottom and top layers,respectively.The average CRT of a single crystal is 635 and 565 ps at the bottom and top layers,respectively.In conclusion,the compact DOI-TOF PET detector module is of excellent crystal identification capability,good energy resolution and reasonable time resolution and has promising application prospective in clinical TOF PET,PET/MRI,and brain PET systems. 展开更多
关键词 POSITRON emission TOMOGRAPHY SIPM Depth of interaction (DOI) TIME-OF-FLIGHT (TOF)
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Surveying ionizing radiations in real time using a smartphone 被引量:2
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作者 Qing-Yang Wei Ru Bai +3 位作者 Zhen-Peng Wang Ru-Tao Yao Yu Gu tian-tian dai 《Nuclear Science and Techniques》 SCIE CAS CSCD 2017年第5期81-85,共5页
Surveying ionizing radiations of the surrounding with a smartphone provides a low-cost and convenient utility for the general public. We developed a smartphone application(App) that uses the built-in camera with a CMO... Surveying ionizing radiations of the surrounding with a smartphone provides a low-cost and convenient utility for the general public. We developed a smartphone application(App) that uses the built-in camera with a CMOS sensor and a radiation signal extraction algorithm.After a calibration through a series of radiation exposures,the App could display radiation dose rate and cumulative dose in real time without requiring covering the camera lens. A smartphone with this App can be used as a fast survey tool for ionizing radiations. 展开更多
关键词 Ionizing RADIATION CMOS SENSOR SMARTPHONE REAL time Detection
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Bacterial Cellulose Templated p-Co3O4/n-ZnO Nanocomposite with Excellent VOCs Response Performance 被引量:2
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作者 Ling-li Qi Chun-yan Zhong +5 位作者 Zan-hong Deng tian-tian dai Jun-qing Chang Shi-mao Wang Xiao-dong Fang Gang Meng 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2020年第4期477-484,I0002,共9页
In this work,p-type Co3O4 decorated n-type ZnO(Co3O4/ZnO)nanocomposite was designed with the assistance of bacterial cellulose template.Phase composition,morphology and element distribution were investigated by XRD,SE... In this work,p-type Co3O4 decorated n-type ZnO(Co3O4/ZnO)nanocomposite was designed with the assistance of bacterial cellulose template.Phase composition,morphology and element distribution were investigated by XRD,SEM,HRTEM,EDS mapping and XPS.Volatile organic compounds(VOCs)sensing measurements indicated a noticeable improvement of response and decrease of working temperature for Co3O4/ZnO sensor,in comparison with pure ZnO,i.e.,the response towards 100 ppm acetone was 63.7(at a low working temperature of 180℃),which was 26 times higher than pure ZnO(response of 2.3 at 240℃).Excellent VOCs response characteristics could be ascribed to increased surface oxygen vacancy concentration(revealed by defect characterizations),catalytic activity of Co3O4 and the special p-n heterojunction structure,and bacterial cellulose provides a facile template for designing diverse functional heterojunctions for VOCs detection and other applications. 展开更多
关键词 Bacterial cellulose HETEROJUNCTION Metal oxide composite ZNO Gas sensor
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