supported by the Natural Science Foundation of China(NSFC)(Nos.62175027,62175030,62205053,and 62305054).
Exosomes are important cancer biomarkers,however,the accuracy of exosome detection is greatly reduced due to heterogeneity of each exosome.Detecting exosomes with a larger field-of-view(FOV)might be a good solution.Co...
cosupported by the National Natural Science Foundation of China(Nos.12072090 and 12302056);the Postdoctoral Fellowship Program of CPSF(No.GZC20233445);the Heilongjiang Postdoctoral Financial Assistance(No.LBH-Z23147).
In this work,we attempt to investigate a luring cooperative guidance strategy for three-player inducer–defender–attacker engagement with field-of-view(FOV)and overload constraints against an attacker with speed adva...
supported by the National Natural Science Foundation of China(62003021,62373304);Industry-University-Research Innovation Fund for Chinese Universities(2021ZYA02009);Shaanxi Qinchuangyuan High-level Innovation and Entrepreneurship Talent Project(OCYRCXM-2022-136);Shaanxi Association for Science and Technology Youth Talent Support Program(XXJS202218);the Fundamental Research Funds for the Central Universities(D5000210830).
In consideration of the field-of-view(FOV)angle con-straint,this study focuses on the guidance problem with impact time control.A deep reinforcement learning guidance method is given for the missile to obtain the desi...
supported by National Key R&D Program of China(grant no.2022YFC2404201);the Chinese Academy of Sciences Project for Young Scientists in Basic Research(grant no.YSBR067).
Conventional microscopes designed for submicron resolution in biological research are hindered by a limited field of view,typically around 1 mm.This restriction poses a challenge when attempting to simultaneously anal...
supported by the National Key Research and Development Program of China(2022YFB3901704);the Excellent Young Scientist Program of Zhejiang Provincial Natural Science Foundation of China(LR19D050001 and LQ23F050011);the Fundamental Research Funds for the Central Universities(2021XZZX019);the National Natural Science Foundation of China(NSFC)(62205289);the Scientific Research Foundation for Talent Introduction of Zhejiang University Ningbo Campus(20201203Z0175 and 20201203Z0177);the Ningbo Natural Science Foundation(2022J153 and 2022J154);the State Key Laboratory of Modern Optical Instrumentation Innovation Program;the Zhejiang University Global Partnership Fund.
Measuring the characteristics of seawater constituent is in great demand for studies of marine ecosystems and biogeochemistry.However,existing techniques based on remote sensing or in situ samplings present various tr...
In this paper,an integrated estimation guidance and control(IEGC)system is designed based on the command filtered backstepping approach for circular field-of-view(FOV)strapdown missiles.The threedimensional integrated...
Supported by National key research and development program of China,Tsinghua University Initiative Scientific Research Program,Tsinghua University Education Foundation,Tsinghua-Jiangyin Innovation Special Fund(TJISF).
Astrophysics and cosmology in the coming decades urgently need a large field-of-view(FOV),highly multiplexed spectroscopic survey telescope satisfying challenging image quality and stability requirements.The 6.5 m MUl...
BACKGROUND It has been reported that deep learning-based reconstruction(DLR)can reduce image noise and artifacts,thereby improving the signal-to-noise ratio and image sharpness.However,no previous studies have evaluat...
co-supported by the National Natural Science Foundation of China(Nos.42074013 and 41704006)。
This paper proposes a novel self-calibration method for a large-FoV(Field-of-View)camera using a real star image.First,based on the classic equisolid-angle projection model and polynomial distortion model,the inclinat...
The authors acknowledge the financial support of the Basic Science Research Program through the National Research Foundation(NRF-2020R1A2C1009480);the Ministry of Education of Korea and the Brain Pool Program funded by the Ministry of Science and ICT(NRF2022H1D3A2A01089675,NRF2020H1D3A2A02085884 and NRF-2020H1D3A2A02096147);This work was also supported by 2022 fostering project on Regional Characteri-zation Program through the INNOPOLIS funded by Minis-try of Science and ICT(2022-IT-RD-0209).
Natural photoreceptors enable color vision in humans,wherein the eyes detect colors and their corresponding intensities via cone and rod photoreceptors,respectively.Herein,we developed an artificial broadband photorec...