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| 1 | A wireless, implantable optoelectrochemical probe for optogenetic stimulation and dopamine detection显示文摘Physical and chemical technologies have been continuously progressing advances in neuroscience research.The development of research tools for closed-loop control and monitoring neural activities in behaving animals is highly desirable.In this paper,we introduce a wirelessly operated,miniaturized microprobe system for optical interrogation and neurochemical sensing in the deep brain.Via epitaxial liftoff and transfer printing,microscale light-emitting diodes(micro-LEDs)as light sources and poly(3,4-ethylenedioxythiophene)polystyrene sulfonate(PEDOT:PSS)-coated diamond films as electrochemical sensors are vertically assembled to form implantable optoelectrochemical probes for real-time optogenetic stimulation and dopamine detection capabilities.A customized,lightweight circuit module is employed for untethered,remote signal control,and data acquisition.After the probe is injected into the ventral tegmental area(VTA)of freely behaving mice,in vivo experiments clearly demonstrate the utilities of the multifunctional optoelectrochemical microprobe system for optogenetic interference of place preferences and detection of dopamine release.The presented options for material and device integrations provide a practical route to simultaneous optical control and electrochemical sensing of complex nervous systems. | Changbo Liu Yu Zhao Xue Cai Yang Xie Taoyi Wang Dali Cheng Lizhu Li Rongfeng Li Yuping Deng He Ding Guoqing Lv Guanlei Zhao Lei Liu Guisheng Zou Meixin Feng Qian Sun Lan Yin Xing Sheng | 2020 | Microsystems & Nanoengineering2020,6,1: | 3 |
| 2 | High-precision diffusion measurement of ethane and propane over SAPO-34 zeolites for methanol-to-olefin process显示文摘 | Dali Cai Yu Cui Zhao Jia Yao Wang Fei Wei | 2018 | Frontiers of Chemical Science and Engineering2018,12,1: | 3 |
| 3 | An echo detection algorithm for underwater continuous wave active detection显示文摘The model of linear frequency modulation continuous wave(LFMCW)applied in underwater detection and the method for the detection of echo signal and the estimation of target parameters were studied.By analyzing the heterodyne signal,an algorithm with the structure of heterodyne-Fractional Fourier Transform(FRFT)was proposed.To reduce the computation ofsearching targets in a two-dimensional FRFT result.the heterodyne signal would be processed by FRFT at a specific order,after Radon-Ambiguity Transform(RAT)was applied toc cstimate the sweep rate of the signal.Simulations proved that the algorithm can eliminate the coupling phenomenon of distance and velocity of LFMCW,and estimate targets'parameters accurately.The lake trial results showed that the processing gain of LFMCW processed by the algorithm in this paper was 13 dB better than that of the LFM processed by matched filter.The research results indicated that the algorithm applied in LFMCW underwater detection was feasible and effective,and it could estimate targets'parameters accurately and obtain a good detection performance. | LIU Dali LIU Yuntao CAI Huizhi | 2014 | Chinese Journal of Acoustics2014,33,1: | 2 |
| 4 | Buckling of a ferromagnetic thin plate in a transverse static magnetic field显示文摘An energy theory is proposed on the buckling of a ferromagnetic thin plate in a transverse static magnetic field. The analytic solution of critical field for plates is obtained by using variational method. It is shown that the critical magnetic field is not only influenced by the ratio of the thickness to the length, but also by the width, total length and the magnetic susceptibility of the specimen. Theoretical calculations agree with experiments reasonably. | Wentao Yang Hao Pan Dali Zheng Qigong Cai | 1998 | Chinese Science Bulletin1998,43,19: | 2 |
| 5 | Mapping QTLs for heading synchrony in a doubled haploid population of rice in two environments显示文摘Simultaneous heading of plants within the same rice variety, also refer to heading synchrony, is an important factor that affects simultaneous ripening of the variety. Understanding of the genetic basis of heading synchrony may contribute to molecular breeding of rice with simultaneous heading and ripening. In the present study, a doubled haploid (DH) population, derived from a cross between Chunjiang 06 and TN1 was used to analyze quantitative trait locus (QTL) for heading synchrony related traits, i.e., early heading date (EHD), late heading date (LHD), heading asynchrony (HAS), and tiller number (PN). A total of 19 QTLs for four traits distributed on nine chromosomes were detected in two environments. One QTL, qHAS-8 for HAS, explained 27.7% of the phenotypic variation, co-located with the QTLs for EHD and LHD, but it was only significant under long-day conditions in Hangzhou, China. The other three QTLs, qHAS-6, qHAS-9, and qHAS-10, were identified under short-day conditions in Hainan, China, each of which explained about 11% of the phenotypic variation. Two of them, qHAS-6 and qHAS-9, were co-located with the QTLs for EHD and LHD. Two QTLs, qPN-4 and qPN-5 for PN, were detected in Hangzhou, and qPN-5 was also detected in Hainan. However, none of them was co-located with QTLs for EHD, LHD, and HAS, suggesting that PN and HAS were controlled by different genetic factors. The results of this study can be useful in marker assisted breeding for improvement of heading synchrony. | Liangyong Ma Changdeng Yang Dali Zeng Jing Cai Ximing Li Zhijuan Ji Yingwu Xia Qian Qian Jinsong Bao | 2009 | Journal of Genetics and Genomics2009,36,5: | 2 |
| 6 | Callus induction and plant regeneration from shoot portions of mature emhryos of high tannin sorghum 显示文摘 | Tishu Cai Barbara Daly Larry Buder | 1989 | Plant Cell Tissue and Organ Culture1989,9,: | 1 |
| 7 | Callus in duction and plant regeneration from shoot portions of mature embryos of high tannin sorghum显示文摘 | Barbara Daly Larry Butler | 1989 | Plant Cell Tissue and Organ Culture1989,9,: | 1 |
| 8 | Single-dose AAV-based vaccine induces a high level of neutralizing antibodies against SARS-CoV-2 in rhesus macaques显示文摘Dear Editor,Coronavirus disease 2019(COVID-19)is a highly infectious respiratory disease that continues to pose a serious global public health emergency.The disease shows a high infection rate,long incubation period,and rapidly emerging variants,which have led to its rapid spread worldwide(Krammer 2020).Many vaccines have been developed for the control of severe acute respiratory syndrome coronavirus 2(SARS-CoV-2),the virus responsible for COVID-19,including vaccines based on messenger RNA(mRNA)(Polack et al.2020),viral vectors(Zhu et al.2020),recombinant proteins(Yang et al.2020),and inactivated SARS-CoV-2(Zhang et al.2021). | Dali Tong Mei Zhang Yunru Yang Han Xia Haiyang Tong Huajun Zhang Weihong Zeng Muziying Liu Yan Wu Huan Ma Xue Hu Weiyong Liu Yuan Cai Yanfeng Yao Yichuan Yao Kunpeng Liu Shifang Shan Yajuan Li Ge Gao Weiwei Guo Yun Peng Shaohong Chen Juhong Rao Jiaxuan Zhao Juan Min Qingjun Zhu Yanmin Zheng Lianxin Liu Chao Shan Kai Zhong Zilong Qiu Tengchuan Jin Sandra Chiu Zhiming Yuan Tian Xue | 2023 | Protein & Cell2023,14,1: | 0 |