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| 1 | Human ESC-derived expandable hepatic organoids enable therapeutic liver repopulation and pathophysiological modeling of alcoholic liver injury显示文摘We report the generation of human ESC-derived,expandable hepatic organoids(hEHOs)using our newly established method with wholly defined(serum-free,feeder free)media.The hEHOs stably maintain phenotypic features of bipotential liver stem/progenitor cells that can differentiate into functional hepatocytes or cholangiocytes.The hEHOs can expand for 20 passages enabling large scale expansion to cell numbers requisite for industry or clinical programs.The cells from hEHOs display remarkable repopulation capacity in injured livers of FRG mice following transplantation,and they differentiate in vivo into mature hepatocytes.If implanted into the epididymal fat pads of immune-deficient mice,they do not generate non-hepatic lineages and have no tendency to form teratomas.We further develop a derivative model by incorporating human fetal liver mesenchymal cells(hFLMCs)into the hEHOs,referred to as hFLMC/hEHO,which can model alcoholic liver disease-associated pathophysiologic changes,including oxidative stress generation,steatosis,inflammatory mediators release and fibrosis,under ethanol treatment.Our work demonstrates that the hEHOs have considerable potential to be a novel,ex vivo pathophysiological model for studying alcoholic liver disease as well as a promising cellular source for treating human liver diseases. | Shuyong Wang Xuan Wang Zuolong Tan Yuxin Su Juan Liu Mingyang Chang Fang Yan Jie Chen Tao Chen Chuanjiang Li Jie Hu Yunfang Wang | 2019 | Cell Research2019,29,12: | 20 |
| 2 | A Review of Printable Flexible and Stretchable Tactile Sensors显示文摘Flexible and stretchable tactile sensors that are printable,nonplanar,and dynamically morphing are emerging to enable proprioceptive interactions with the unstructured surrounding environment.Owing to its varied range of applications in the field of wearable electronics,soft robotics,human-machine interaction,and biomedical devices,it is required of these sensors to be flexible and stretchable conforming to the arbitrary surfaces of their stiff counterparts.The challenges in maintaining the fundamental features of these sensors,such as flexibility,sensitivity,repeatability,linearity,and durability,are tackled by the progress in the fabrication techniques and customization of the material properties.This review is aimed at summarizing the recent progress of rapid prototyping of sensors,printable material preparation,required printing properties,flexible and stretchable mechanisms,and promising applications and highlights challenges and opportunities in this research paradigm. | Kirthika Senthil Kumar Po-Yen Chen Hongliang Ren | 2019 | Research2019,,1: | 12 |
| 3 | Bright-field holography:cross-modality deep learning enables snapshot 3D imaging with bright-field contrast using a single hologram显示文摘Digital holographic microscopy enables the 3D reconstruction of volumetric samples from a single-snapshot hologram.However,unlike a conventional bright-field microscopy image,the quality of holographic reconstructions is compromised by interference fringes as a result of twin images and out-of-plane objects.Here,we demonstrate that cross-modality deep learning using a generative adversarial network(GAN)can endow holographic images of a sample volume with bright-field microscopy contrast,combining the volumetric imaging capability of holography with the speckle-and artifact-free image contrast of incoherent bright-field microscopy.We illustrate the performance of this“bright-field holography”method through the snapshot imaging of bioaerosols distributed in 3D,matching the artifact-free image contrast and axial sectioning performance of a high-NA bright-field microscope.This data-driven deep-learning-based imaging method bridges the contrast gap between coherent and incoherent imaging,and enables the snapshot 3D imaging of objects with bright-field contrast from a single hologram,benefiting from the wave-propagation framework of holography. | Yichen Wu Yilin Luo Gunvant Chaudhari Yair Rivenson Ayfer Calis Kevin de Haan Aydogan Ozcan | 2019 | Light(Science & Applications)2019,8,1: | 12 |
| 4 | Electronic Skin from High-Throughput Fabrication of Intrinsically Stretchable Lead Zirconate Titanate Elastomer显示文摘Electronic skin made of thin,soft,stretchable devices that can mimic the human skin and reconstruct the tactile sensation and perception offers great opportunities for prosthesis sensing,robotics controlling,and human-machine interfaces.Advanced materials and mechanics engineering of thin film devices has proven to be an efficient route to enable and enhance flexibility and stretchability of various electronic skins;however,the density of devices is still low owing to the limitation in existing fabrication techniques.Here,we report a high-throughput one-step process to fabricate large tactile sensing arrays with a sensor density of 25 sensors/cm^(2) for electronic skin,where the sensors are based on intrinsically stretchable piezoelectric lead zirconate titanate(PZT)elastomer.The PZT elastomer sensor arrays with great uniformity and passive-driven manner enable highresolution tactile sensing,simplify the data acquisition process,and lower the manufacturing cost.The high-throughput fabrication process provides a general platform for integrating intrinsically stretchable materials into large area,high device density soft electronics for the next-generation electronic skin. | Yiming Liu Huanxi Zheng Ling Zhao Shiyuan Liu Kuanming Yao Dengfeng Li Chunki Yiu Shenghan Gao Raudel Avila Pakpong Chirarattananon Lingqian Chang Zuankai Wang Xian Huang Zhaoqian Xie Zhengbao Yang Xinge Yu | 2020 | Research2020,,1: | 11 |
| 5 | Acousto-optic modulation of photonic bound state in the continuum显示文摘Photonic bound states in the continuum(BICs)have recently been studied in various systems and have found wide applications in sensors,lasers,and filters.Applying BICs in photonic integrated circuits enables low-loss light guidance and routing in low-refractive-index waveguides on high-refractive-index substrates,which opens a new avenue for integrated photonics with functional single-crystal materials.Here,we demonstrate high-quality integrated lithium niobate microcavities inside which the photonic BIC modes circulate and further modulate these BIC modes acoustooptically by using piezoelectrically actuated surface acoustic waves at microwave frequencies.With a high acoustooptic modulation frequency,the acousto-optic coupling is well situated in the resolved-sideband regime.This leads to coherent coupling between microwave and optical photons,which is exhibited by the observed electro-acoustooptically induced transparency and absorption.Therefore,our devices serve as a paradigm for manipulating and controlling photonic BICs on a chip,which will enable many other applications of photonic BICs in the areas of microwave photonics and quantum information processing. | Zejie Yu Xiankai Sun | 2020 | Light(Science & Applications)2020,9,1: | 9 |
| 6 | Noninvasive Ultrasound Deep Brain Stimulation for the Treatment of Parkinson’s Disease Model Mouse显示文摘Modulating basal ganglia circuitry is of great signifcance in the improvement of motor function in Parkinson’s disease(PD).Here,for the frst time,we demonstrate that noninvasive ultrasound deep brain stimulation(UDBS)of the subthalamic nucleus(STN)or the globus pallidus(GP)improves motor behavior in a subacute mouse model of PD induced by 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine(MPTP).Immunohistochemical c-Fos protein expression confrms that there is a relatively high level of c-Fos expression in the STN-UDBS and GP-UDBS group compared with sham group(both p<0.05).Furthermore,STN-UDBS or GPUDBS signifcantly increases the latency to fall in the rotarod test on day 9(p<0.05)and decreases the time spent climbing down a vertical rod in the pole test on day 12(p<0.05).Moreover,our results reveal that STN-UDBS or GP-UDBS protects the dopamine(DA)neurons from MPTP neurotoxicity by downregulating Bax(p<0.001),upregulating Bcl-2(p<0.01),blocking cytochrome c(Cyt C)release from mitochondria(p<0.05),and reducing cleaved-caspase 3 activity(p<0.01)in the ipsilateral substantia nigra(SN).Additionally,the safety of ultrasound stimulation is characterized by hematoxylin and eosin(HE)and Nissl staining;no hemorrhage or tissue damage is detected.Tese data demonstrate that UDBS enables modulation of STN or GP neural activity and leads to neuroprotection in PD mice,potentially serving as a noninvasive strategy for the clinical treatment of PD. | Hui Zhou Lili Niu Long Meng Zhengrong Lin Junjie Zou Xiangxiang Xia Xiaowei Huang Wei Zhou Tianyuan Bian Hairong Zheng | 2019 | Research2019,,1: | 9 |
| 7 | Reconfigurable systems for multifunctional electronics显示文摘Reconfigurable systems complement the existing efforts of miniaturizing integrated circuits to provide a new direction for the development of future electronics.Such systems can integrate low dimensional materials and metamaterials to enable functional transformation from the deformation to changes in multiple physical properties,including mechanical,electric,optical,and thermal.Capable of overcoming the mismatch in geometries and forms between rigid electronics and soft tissues,bio-integrated electronics enabled by reconfigurable systems can provide continuous monitoring of physiological signals.The new opportunities also extend beyond to human-computer interfaces,diagnostic/therapeutic platforms,and soft robotics.In the development of these systems,biomimicry has been a long lasting inspiration for the novel yet simple designs and technological innovations.As interdisciplinary research becomes evident in such development,collaboration across scientists and physicians from diverse backgrounds would be highly encouraged to tackle grand challenges in this field. | Jia Zhu Michael Dexheimer Huanyu Cheng | 2017 | npj Flexible Electronics2017,1,1: | 8 |
| 8 | Biochemical sensing in graphene-enhanced microfiber resonators with individual molecule sensitivity and selectivity显示文摘Photonic sensors that are able to detect and track biochemical molecules offer powerful tools for information acquisition in applications ranging from environmental analysis to medical diagnosis.The ultimate aim of biochemical sensing is to achieve both quantitative sensitivity and selectivity.As atomically thick films with remarkable optoelectronic tunability,graphene and its derived materials have shown unique potential as a chemically tunable platform for sensing,thus enabling significant performance enhancement,versatile functionalization and flexible device integration.Here,we demonstrate a partially reduced graphene oxide(prGO)inner-coated and fiber-calibrated Fabry-Perot dye resonator for biochemical detection.Versatile functionalization in the prGO film enables the intracavity fluorescent resonance energy transfer(FRET)to be chemically selective in the visible band.Moreover,by measuring the intermode interference via noise canceled beat notes and locked-in heterodyne detection with Hz-level precision,we achieved individual molecule sensitivity for dopamine,nicotine and single-strand DNA detection.This work combines atomic-layer nanoscience and high-resolution optoelectronics,providing a way toward high-performance biochemical sensors and systems. | Zhongxu Cao Baicheng Yao Chenye Qin Run Yang Yanhong Guo Yufeng Zhang Yu Wu Lei Bi Yuanfu Chen Zhenda Xie Gangding Peng Shu-Wei Huang Chee Wei Wong Yunjiang Rao | 2019 | Light(Science & Applications)2019,8,1: | 8 |
| 9 | GE 64排128层螺旋CT图像伪影故障维修1例显示文摘0引言GE 64排128层螺旋CT是一款高档容积CT(volume CT,VCT),具有扫描速度快、检查范围大、剂量低、应用新、视野大和图像分辨率高的特点[1]。但经较长时间运行或其他原因,也出现了一些故障。作者总结了在CT维修实践中遇到的1例由探测器造成伪影的故障,以供同行参考。1故障现象机器正常扫描时突然出现宽带高密度的环形伪影,如图1所示。重启机器扫描,图像伪影依然存在, | 马承华 胡昕 | 2015 | 医疗卫生装备2015,36,6: | 8 |
| 10 | Malus-metasurface-assisted polarization multiplexing显示文摘Polarization optics plays a pivotal role in diffractive,refractive,and emerging flat optics,and has been widely employed in contemporary optical industries and daily life.Advanced polarization manipulation leads to robust control of the polarization direction of light.Nevertheless,polarization control has been studied largely independent of the phase or intensity of light.Here,we propose and experimentally validate a Malus-metasurface-assisted paradigm to enable simultaneous and independent control of the intensity and phase properties of light simply by polarization modulation.The orientation degeneracy of the classical Malus’s law implies a new degree of freedom and enables us to establish a one-to-many mapping strategy for designing anisotropic plasmonic nanostructures to engineer the Pancharatnam–Berry phase profile,while keeping the continuous intensity modulation unchanged.The proposed Malus metadevice can thus generate a near-field greyscale pattern,and project an independent far-field holographic image using an ultrathin and single-sized metasurface.This concept opens up distinct dimensions for conventional polarization optics,which allows one to merge the functionality of phase manipulation into an amplitudemanipulation-assisted optical component to form a multifunctional nano-optical device without increasing the complexity of the nanostructures.It can empower advanced applications in information multiplexing and encryption,anti-counterfeiting,dual-channel display for virtual/augmented reality,and many other related fields. | Liangui Deng Juan Deng Zhiqiang Guan Jin Tao Yang Chen Yan Yang Daxiao Zhang Jibo Tang Zhongyang Li Zile Li Shaohua Yu Guoxing Zheng Hongxing Xu Cheng-Wei Qiu Shuang Zhang | 2020 | Light(Science & Applications)2020,9,1: | 7 |
| 11 | The transcription factor OpWRKY2 positively regulates the biosynthesis of the anticancer drug camptothecin in Ophiorrhiza pumila显示文摘The limited bioavailability of plant-derived natural products with anticancer activity poses major challenges to the pharmaceutical industry.An example of this is camptothecin,a monoterpene indole alkaloid with potent anticancer activity that is extracted at very low concentrations from woody plants.Recently,camptothecin biosynthesis has been shown to become biotechnologically amenable in hairy-root systems of the natural producer Ophiorrhiza pumila.Here,time-course expression and metabolite analyses were performed to identify novel transcriptional regulators of camptothecin biosynthesis in O.pumila.It is shown here that camptothecin production increased over cultivation time and that the expression pattern of the WRKY transcription factor encoding gene OpWRKY2 is closely correlated with camptothecin accumulation.Overexpression of OpWRKY2 led to a more than three-fold increase in camptothecin levels.Accordingly,silencing of OpWRKY2 correlated with decreased camptothecin levels in the plant.Further detailed molecular characterization by electrophoretic mobility shift,yeast one-hybrid and dual-luciferase assays showed that OpWRKY2 directly binds and activates the central camptothecin pathway gene OpTDC.Taken together,the results of this study demonstrate that OpWRKY2 acts as a direct positive regulator of camptothecin biosynthesis.As such,a feasible strategy for the over-accumulation of camptothecin in a biotechnologically amenable system is presented. | Xiaolong Hao Chenhong Xie Qingyan Ruan Xichen Zhang Chao Wu Bing Han Jun Qian Wei Zhou Hans-Wilhelm Nutzmann Guoyin Kai | 2021 | Horticulture Research2021,8,1: | 7 |
| 12 | Erratum to: Sn^(4+) precursor enables 12.4% efficient kesterite solar cell from DMSO solution with open circuit voltage deficit below 0.30 V (vol 64, issue 1, page 52, 2021)显示文摘In the version of the article originally published in volume 64,issue 1,2021 of Sci China Mater(2021,64(1):52–60,https://doi.org/10.1007/s40843-020-1408-x),the chemical formula of Sn(DMSO)_(4)Cl_(4)(page 54,8^(th) line in the left column;page 56,4^(th) and 6^(th) lines from the bottom of left column and in Equations(6 and 7)in the right column)was miswritten.The correct formula should be as below:SN(DMSO)_(2)CL_(4). | Yuancai Gong Yifan Zhang Erin Jedlicka Rajiv Giridharagopal James A.Clark Weibo Yan Chuanyou Niu Ruichan Qiu Jingjing Jiang Shaotang Yu Sanping Wu Hugh W.Hillhouse David S.Ginger Wei Huang Hao Xin | 2021 | Science China Materials2021,64,5: | 7 |
| 13 | Computational neuroscience:a frontier of the 21^st century显示文摘THEORY IN NEUROSCIENCE The human brain is a biological organ,weighing about three pounds or 1.4 kg,that determines our behaviors,thoughts,emotions and consciousness.Although comprising only 2%of the total body weight,the brain consumes about 20%of the oxygen entering the body.With the expensive energy demand,the brain enables us to perceive and act upon the external world,as well as reflect on our internal thoughts and feelings. | Xiao-Jing Wang Hailan Hu Chengcheng Huang Henry Kennedy Chengyu Tony Li Nikos Logothetis Zhong-Lin Lu Qingming Luo Mu-ming Poo Doris Tsao Si Wu Zhaohui Wu Xu Zhang Douglas Zhou | 2020 | National Science Review2020,7,9: | 4 |
| 14 | A High-Throughput Phenotyping System Using Machine Vision to Quantify Severity of Grapevine Powdery Mildew显示文摘Powdery mildews present specific challenges to phenotyping systems that are based on imaging.Having previously developed lowthroughput,quantitative microscopy approaches for phenotyping resistance to Erysiphe necator on thousands of grape leaf disk samples for genetic analysis,here we developed automated imaging and analysis methods for E.necator severity on leaf disks.By pairing a 46-megapixel CMOS sensor camera,a long-working distance lens providing 3.5×magnification,X-Y sample positioning,and Z-axis focusing movement,the system captured 78%of the area of a 1-cm diameter leaf disk in 3 to 10 focus-stacked images within 13.5 to 26 seconds.Each image pixel represented 1.44 m2 of the leaf disk.A convolutional neural network(CNN)based on GoogLeNet determined the presence or absence of E.necator hyphae in approximately 800 subimages per leaf disk as an assessment of severity,with a training validation accuracy of 94.3%.For an independent image set the CNN was in agreement with human experts for 89.3%to 91.7%of subimages.This live-imaging approach was nondestructive,and a repeated measures time course of infection showed differentiation among susceptible,moderate,and resistant samples.Processing over one thousand samples per day with good accuracy,the system can assess host resistance,chemical or biological efficacy,or other phenotypic responses of grapevine to E.necator.In addition,new CNNs could be readily developed for phenotyping within diverse pathosystems or for diverse traits amenable to leaf disk assays. | Andrew Bierman Tim LaPlumm Lance Cadle-Davidson David Gadoury Dani Martinez Surya Sapkota Mark Rea | 2019 | Plant Phenomics2019,1,1: | 4 |
| 15 | Corrigendum to“Site directed mutagenesis as a precision tool to enable synthetic biology with engineered modular polyketide synthases”[Synth Syst Biotechnol 5(2)(2020)62–80]显示文摘The authors regret that following the publication of the original article,the authors noticed that some of the structures in Fig.10 were incorrect.Below is the corrected figure. | Erin E.Drufva Elijah G.Hix Constance B.Bailey | 2020 | Synthetic and Systems Biotechnology2020,5,4: | 4 |
| 16 | Transparent inorganic multicolour displays enabled by zinc-based electrochromic devices显示文摘Electrochromic displays have been the subject of extensive research as a promising colour display technology.The current state-of-the-art inorganic multicolour electrochromic displays utilize nanocavity structures that sacrifice transparency and thus limit their diverse applications.Herein,we demonstrate a transparent inorganic multicolour display platform based on Zn-based electrochromic devices.These devices enable independent operation of top and bottom electrochromic electrodes,thus providing additional configuration flexibility of the devices through the utilization of dual electrochromic layers under the same or different colour states.Zn-sodium vanadium oxide(Zn-SVO)electrochromic displays were assembled by sandwiching Zn between two SVO electrodes,and they could be reversibly switched between multiple colours(orange,amber,yellow,brown,chartreuse and green)while preserving a high optical transparency.These Zn-SVO electrochromic displays represent the most colourful transparent inorganic-based electrochromic displays to date.In addition,the Zn-SVO electrochromic displays possess an open-circuit potential(OCP)of 1.56 V,which enables a self-colouration behaviour and compelling energy retrieval functionality.This study presents a new concept integrating high transparency and high energy efficiency for inorganic multicolour displays. | Wu Zhang Haizeng Li William W.Yu Abdulhakem Y.Elezzabi | 2020 | Light(Science & Applications)2020,9,1: | 4 |
| 17 | Smart Microneedles for Therapy and Diagnosis显示文摘Microneedles represent a cutting-edge and idea-inspiring technology in biomedical engineering,which have attracted increasing attention of scientific researchers and medical staffs.Over the past decades,numerous great achievements have been made.The fabrication process of microneedles has been simplified and becomes more precise,easy-to-operate,and reusable.Besides,microneedles with various features have been developed and the microneedle materials have greatly expanded.In recent years,efforts have been focused on generating smart microneedles by endowing them with intriguing functions such as adhesion ability,responsiveness,and controllable drug release.Such improvements enable the microneedles to take an important step in practical applications including household drug delivery devices,wearable biosensors,biomedical assays,cell culture,and microfluidic chip analysis.In this review,the fabrication strategies,distinctive properties,and typical applications of the smart microneedles are discussed.Recent accomplishments,remaining challenges,and future prospects are also presented. | Xiaoxuan Zhang Yuetong Wang Junjie Chi Yuanjin Zhao | 2020 | Research2020,,1: | 4 |
| 18 | Thoughts on Design for Intelligent Manufacturing显示文摘1.Introduction Given the emergence of intelligent manufacturing capabilities,we may wonder whether design for manufacturing(DFM)practices should be reconceptualized to take advantage of these capabilities.And,if so,what should design for intelligent manufacturing(DFIM)be?The integration of cloud computing,data analytics,artificial intelligence(AI),and the Internet of Things(IoT)with advanced manufacturing technologies has enabled the emergence of what has been called new-generation intelligent manufacturing[1].Such new-generation intelligent manufacturing capabilities will enable transformational new products and services with unprecedented levels of quality,responsiveness,and efficiency. | David W.Rosen | 2019 | Engineering2019,5,4: | 4 |
| 19 | Machine learning enables polymer cloud-point engineering via inverse design显示文摘Inverse design is an outstanding challenge in disordered systems with multiple length scales such as polymers,particularly when designing polymers with desired phase behavior.Here we demonstrate high-accuracy tuning of poly(2-oxazoline)cloud point via machine learning.With a design space of four repeating units and a range of molecular masses,we achieve an accuracy of 4℃ root mean squared error(RMSE)in a temperature range of 24–90℃,employing gradient boosting with decision trees.The RMSE is>3x better than linear and polynomial regression.We perform inverse design via particle-swarm optimization,predicting and synthesizing 17 polymers with constrained design at 4 target cloud points from 37 to 80℃.Our approach challenges the status quo in polymer design with a machine learning algorithm,that is capable of fast and systematic discovery of new polymers. | Jatin N.Kumar Qianxiao Li Karen Y.T.Tang Tonio Buonassisi Anibal L.Gonzalez-Oyarce Jun Ye | 2019 | npj Computational Materials2019,,1: | 4 |
| 20 | Efficient training of ANN potentials by including atomic forces via Taylor expansion and application to water and a transition-metal oxide显示文摘Artificial neural network(ANN)potentials enable the efficient large-scale atomistic modeling of complex materials with near firstprinciples accuracy.For molecular dynamics simulations,accurate energies and interatomic forces are a prerequisite,but training ANN potentials simultaneously on energies and forces from electronic structure calculations is computationally demanding.Here,we introduce an efficient alternative method for the training of ANN potentials on energy and force information,based on an extrapolation of the total energy via a Taylor expansion.By translating the force information to approximate energies,the quadratic scaling with the number of atoms exhibited by conventional force-training methods can be avoided,which enables the training on reference datasets containing complex atomic structures. | April M.Cooper Johannes Kästner Alexander Urban Nongnuch Artrith | 2020 | npj Computational Materials2020,,1: | 3 |