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2篇 您的检索式:作者名="YICHENG DU"
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1Integrated photonic RF self-interference cancellation on a silicon platform for full-duplex communication显示文摘In-band full-duplex(IBFD) technology can double the spectrum utilization efficiency for wireless communications,and increase the data transmission rate of B5G and 6G networks and satellite communications. RF self-interference is the major challenge for the application of IBFD technology, which must be resolved. Compared with the conventional electronic method, the photonic self-interference cancellation(PSIC) technique has the advantages of wide bandwidth, high amplitude and time delay tuning precision, and immunity to electromagnetic interference.Integrating the PSIC system on chip can effectively reduce the size, weight, and power consumption and meet the application requirement, especially for mobile terminals and small satellite payloads. In this paper, the silicon integrated PSIC chip is presented first and demonstrated for IBFD communication. The integrated PSIC chip comprises function units including phase modulation, time delay and amplitude tuning, sideband filtering, and photodetection, which complete the matching conditions for RF self-interference cancellation. Over the wide frequency range of C, X, Ku, and K bands, from 5 GHz to 25 GHz, a cancellation depth of more than 20 dB is achieved with the narrowest bandwidth of 140 MHz. A maximum bandwidth of 630 MHz is obtained at a center frequency of10 GHz. The full-duplex communication experiment at Ku-band by using the PSIC chip is carried out. Cancellation depths of 24.9 dB and 26.6 dB are measured for a bandwidth of 100 MHz at central frequencies of 12.4 GHz and14.2 GHz, respectively, and the signal of interest(SOI) with 16-quadrature amplitude modulation is recovered successfully. The factors affecting the cancellation depth and maximum interference to the SOI ratio are investigated in detail. The performances of the integrated PSIC system including link gain, noise figure, receiving sensitivity, and spurious free dynamic range are characterized.XIUYOU HAN XINXIN SU MENG CHAO XINDI YANG WEIHENG WANG SHUANGLING FU YICHENG DU ZHENLIN WU MINGSHAN ZHAO 2023Photonics Research2023,11,10:1
2Eosinophil-derived chemokine(hCCL 15/23,mCCL6)interacts with CCR1 to promote eosinophilic airway inflammation显示文摘Eosinophils are terminally differentiated cells derived from hematopoietic stem cells(HSCs)in the bone marrow.Several studies have confirmed the effective roles of eosinophils in asthmatic airway pathogenesis.However,their regulatory functions have not been well elucidated.Here,increased C-C chemokine ligand 6(CCL6)in asthmatic mice and the human orthologs CCL15 and CCL23 that are highly expressed in asthma patients are described,which are mainly derived from eosinophils.Using Cc/6 knockout mice,further studies revealed CCL6-dependent allergic airway inflammation and committed eosinophilia in the bone marrow following ovalbumin(OVA)challenge and identified a CCL6-CCR1 regulatory axis in hematopoietic stem cells(HSCs).Eosinophil differentiation and airway inflammation were remarkably decreased by the specific CCR1 antagonist BX471.Thus,the study identifies that the CCL6-CCR1 axis is involved in the crosstalk between eosinophils and HSCs during the development of allergic airway inflammation,which also reveals a potential therapeutic strategy for targeting G protein-coupled receptors(GPCRs)for future clinical treatment of asthma.Xufei Du Fei Li Chao Zhang Na Li Huaqiong Huang Zhehua Shao Min Zhang Xueqin Zhan Yicheng He Zhenyu Ju Wen Li Zhihua Chen Songmin Ying Huahao Shen 2021Signal Transduction and Targeted Therapy2021,6,3:1
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