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Showing 1–50 of 5034 results
Advanced filters: Author: H. Q. Wang Clear advanced filters
  • The authors demonstrate a miniature apposition compound eye, integrating 1027 ommatidia in a 1.5 mm^2 surface area, for integrated perception of vision and smell. The platform serves as a wide-angle, close-range obstacle avoidance detector and visual and olfactory monitoring device.

    • Jiachuang Wang
    • Shuai Wei
    • Tiger H. Tao
    ResearchOpen Access
    Nature Communications
    P: 1-12
  • The CMS Collaboration reports the measurement of the spin, parity, and charge conjugation properties of all-charm tetraquarks, exotic fleeting particles formed in proton–proton collisions at the Large Hadron Collider.

    • A. Hayrapetyan
    • V. Makarenko
    • A. Snigirev
    ResearchOpen Access
    Nature
    Volume: 648, P: 58-63
  • Donahue et al. show that ageing is associated with changes in ER morphology. ER-phagy drives age-associated ER remodelling through tissue-specific factors.

    • Eric K. F. Donahue
    • Nathaniel L. Hepowit
    • Kristopher Burkewitz
    ResearchOpen Access
    Nature Cell Biology
    P: 1-16
  • Identifying jets originating from heavy quarks plays a fundamental role in hadronic collider experiments. In this work, the ATLAS Collaboration describes and tests a transformer-based neural network architecture for jet flavour tagging based on low-level input and physics-inspired constraints.

    • G. Aad
    • E. Aakvaag
    • L. Zwalinski
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-22
  • Quantum error mitigation refers to techniques that reduce, rather than correct, errors in quantum computing. Here the authors demonstrate zero-noise extrapolation applied to quantum error correction circuits on superconducting processors, effectively reducing logical errors and advancing early fault-tolerant quantum computing.

    • Aosai Zhang
    • Haipeng Xie
    • H. Wang
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-7
  • The quark structure of the f0(980) hadron is still unknown after 50 years of its discovery. Here, the CMS Collaboration reports a measurement of the elliptic flow of the f0(980) state in proton-lead collisions at a nucleon-nucleon centre-of-mass energy of 8.16 TeV, providing strong evidence that the state is an ordinary meson.

    • A. Hayrapetyan
    • A. Tumasyan
    • A. Zhokin
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-19
  • Photonic time crystals (PTCs) have unveiled unusual band structures and phenomena due to temporal modulation of optical properties. Here, the authors address non-Hermitian features of PTCs within a purely Hermitian Hamiltonian description, bridging classical and quantum approaches.

    • X. Y. Li
    • H. P. Zhang
    • X.-L. Wang
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-9
  • Generation of orbital currents in a non-magnetic material can be useful to build efficient orbitronic devices. Now, the interplay of chiral phonons and electrons is shown to produce orbital currents in α-quartz.

    • Yoji Nabei
    • Cong Yang
    • Dali Sun
    Research
    Nature Physics
    P: 1-7
  • Here, the authors develop AMPLiT a tool for screening antimicrobial peptides in metagenomic datasets, and apply it to human coprolite metagenomes, finding that Segatella copri, an ancient prevalent human gut bacterium declined in modern populations, harbors unexplored antimicrobial reservoir, offering an alternative approach against modern pathogenic infections.

    • Sizhe Chen
    • Yue Yuan
    • Qi Su
    ResearchOpen Access
    Nature Communications
    P: 1-12
  • An outstanding question about the iron-based superconductors has been whether or not their magnetic characteristics are dominated by itinerant or localized magnetic moments. Absolute measurements and calculations of the magnetic response of undoped and Ni-doped BaFe2As2 indicate the latter.

    • Mengshu Liu
    • Leland W. Harriger
    • Pengcheng Dai
    Research
    Nature Physics
    Volume: 8, P: 376-381
  • Cystine levels in pancreatic ductal adenocarcinoma (PDAC) tumour microenvironment are deficient, despite its crucial role for cancer cell maintenance. Here, the authors show that adaptation to cystine limitation stress promotes PDAC growth through induces metabolic reprogramming to promote PDAC tumor growth, while conferring a vulnerability in lipid metabolism targetable by lomitapide.

    • Yunzhan Li
    • Zekun Li
    • Shengyu Yang
    ResearchOpen Access
    Nature Communications
    P: 1-21
  • The magnitude of the increase in global river flow between 1980 and 2014 is 13.6% lower than Earth system models estimate and is expected to be 9.3% lower in the future, according to an analysis of emerging constraints on the components of the water cycle.

    • Yongqiang Zhang
    • Günter Blöschl
    • Changming Liu
    Research
    Nature Geoscience
    P: 1-6
  • Electrochemical CO reduction to multi-carbon products offers a carbon-negative approach to produce chemicals, but the intricate reaction pathways lead to a broad spectrum of products. Now it has been shown that alkali cations alter the mechanistic pathways that govern the reaction selectivity involved in the formation of hydrocarbons versus oxygenates.

    • Weiyan Ni
    • Yongxiang Liang
    • Edward H. Sargent
    Research
    Nature Chemistry
    P: 1-8
  • How neuron-level interactions produce complex cognitive behavior remains unclear. Here, the authors develop a brain circuit mechanistic model based on physiological computation, that uncovers an unexpected neural code, subsequently validated by empirical data.

    • Anand Pathak
    • Scott L. Brincat
    • Richard Granger
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-21
  • Quantum low-density parity-check error correction codes are anticipated to deliver high performance, but require long-range qubit–qubit interactions. Two of these error correction codes have now been successfully implemented on a superconducting device.

    • Ke Wang
    • Zhide Lu
    • Dong-Ling Deng
    Research
    Nature Physics
    P: 1-7
  • Researchers studied the blood-based metabolome of over 23,000 people from ten ethnically diverse cohorts. They identified 235 metabolites associated with future risk of type 2 diabetes (T2D). By integrating genetic and modifiable lifestyle factors, their findings provide insights into T2D mechanisms and could improve risk prediction and inform precision prevention.

    • Jun Li
    • Jie Hu
    • Qibin Qi
    ResearchOpen Access
    Nature Medicine
    P: 1-11
  • Here, the authors identify distinct, autism-specific diet microbiome interactions, showing how unhealthy diets and synthetic emulsifiers drive dysbiosis. The findings pave the way for microbiome-aware dietary strategies for autism.

    • Yuqi Wu
    • Oscar Wong
    • Siew C. Ng
    ResearchOpen Access
    Nature Communications
    P: 1-14
  • Tokamak walls suffer erosion from steady and bursty heat loads. Here, the authors demonstrate that optimizing 3D magnetic field and cooling gas injection can tame destructive plasma bursts while enabling cooler, safer exhaust conditions.

    • Q. M. Hu
    • H. Q. Wang
    • C. Ye
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-12
  • A label-free, DNA-based proximity ligation assay that uses ligatable staple pairs enables the longitudinal quantification of DNA origami structural stability dynamics in vivo, with single-helix resolution for both wireframe and lattice designs.

    • Yang Wang
    • Iris Rocamonde-Lago
    • Björn Högberg
    ResearchOpen Access
    Nature Nanotechnology
    P: 1-9
  • Bioactivity-guided isolation of specialized metabolites is an iterative process. Here, the authors demonstrate a native metabolomics approach that allows for fast screening of complex metabolite extracts against a protein of interest and simultaneous structure annotation.

    • Raphael Reher
    • Allegra T. Aron
    • Daniel Petras
    ResearchOpen Access
    Nature Communications
    Volume: 13, P: 1-12
  • CLASSIC is a high-throughput genetic profiling platform that combines long- and short-read next-generation-sequencing modalities to quantitatively assess pools of constructs of arbitrary length containing diverse genetic part compositions.

    • Kshitij Rai
    • Ronan W. O’Connell
    • Caleb J. Bashor
    Research
    Nature
    P: 1-10
  • Two-dimensional metal halide perovskites exhibit diverse structures, but tuning their intralayer structure is challenging. Now, ammonium-terminated bidentate linkers have been used to develop 2D perovskites. These materials exhibit superior thermal resistance and improved photovoltaic performance compared with their Ruddlesden–Popper and Dion–Jacobson counterparts.

    • Chenjian Lin
    • Yuanhao Tang
    • Letian Dou
    Research
    Nature Chemistry
    P: 1-8
  • While the photoreceptor outer segments in the bird outer retina have access to oxygen, the inner retina operates under chronic anoxia, supported by anaerobic glycolysis in the retinal neurons.

    • Christian Damsgaard
    • Mia Viuf Skøtt
    • Jens Randel Nyengaard
    Research
    Nature
    P: 1-7
  • UTe2 is a proposed intrinsic topological superconductor, but its quasiparticle surface band has not yet been visualized. Now this is achieved using quasiparticle interference imaging, revealing the symmetry of the superconducting order parameter.

    • Shuqiu Wang
    • Kuanysh Zhussupbekov
    • Qiangqiang Gu
    ResearchOpen Access
    Nature Physics
    Volume: 21, P: 1555-1562
  • MedHELM, an extensible evaluation framework including a new taxonomy for classifying medical tasks and a benchmark of many datasets across these categories, enables the evaluation of large language models on real-world clinical tasks.

    • Suhana Bedi
    • Hejie Cui
    • Nigam H. Shah
    Research
    Nature Medicine
    P: 1-9
  • Sebaceous tumours are a rare skin tumour which have highly variable outcomes. Here, the authors analyse tumours from 222 patients to identify genomic mutations to assess the molecular portrait of the spectrum of tumours.

    • I. Ferreira
    • O. M. Rueda
    • D. J. Adams
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-18
  • Spatial transcriptomics technologies are still too restrictive for widespread clinical use, and methods that have been designed to bridge them with histopathology carry important limitations. Here, the authors develop MISO, a deep learning framework that allows inferring tissue spatial organisation and gene expression with near single-cell resolution from histopathology images.

    • Benoît Schmauch
    • Loïc Herpin
    • Eric Y. Durand
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-17
  • Polymer thin films that emit and absorb circularly polarised light are promising in achieving important technological advances, but the origin of the large chiroptical effects in such films has remained elusive. Here the authors demonstrate that in non-aligned polymer thin films, large chiroptical effects are caused by magneto-electric coupling, not structural chirality as previously assumed.

    • Jessica Wade
    • James N. Hilfiker
    • Matthew J. Fuchter
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-11
  • Exai-1, a cell-free RNA foundation model that integrates sequence, structure and expression features, advances liquid biopsy diagnostics by denoising noisy data, augmenting limited datasets and improving the generalizability of cancer detection models.

    • Mehran Karimzadeh
    • Aiden M. Sababi
    • Hani Goodarzi
    ResearchOpen Access
    Nature Machine Intelligence
    Volume: 7, P: 1927-1938
  • An intestinal organoid model recapitulates human microfold (M) cell function and transcriptomic profiling and biochemical assays demonstrate that M cells uptake and present antigens to the immune system via the class II major histocompatibility complex.

    • Daisong Wang
    • Sangho Lim
    • Hans Clevers
    ResearchOpen Access
    Nature
    P: 1-10
  • The authors uncover a direct, BAI1-dependent, role for C1q in the control of neural stem cell proliferation and quiescence via MDM2–p53 and p32, a complement cascade-independent mechanism of C1q action that has implications for central nervous system health and disease.

    • Katja M. Piltti
    • Anita Lakatos
    • Aileen J. Anderson
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-18
  • The 4D Nucleome Project demonstrates the use of genomic assays and computational methods to measure genome folding and then predict genomic structure from DNA sequence, facilitating the discovery of potential effects of genetic variants, including variants associated with disease, on genome structure and function.

    • Job Dekker
    • Betul Akgol Oksuz
    • Feng Yue
    ResearchOpen Access
    Nature
    Volume: 649, P: 759-776
  • A new artificial intelligence model, DeepSeek-R1, is introduced, demonstrating that the reasoning abilities of large language models can be incentivized through pure reinforcement learning, removing the need for human-annotated demonstrations.

    • Daya Guo
    • Dejian Yang
    • Zhen Zhang
    ResearchOpen Access
    Nature
    Volume: 645, P: 633-638
  • Stable and robust topological edge modes are observed at finite temperatures in an array of 100 programmable superconducting qubits because of emergent symmetries present in the prethermal regime of this system.

    • Feitong Jin
    • Si Jiang
    • Dong-Ling Deng
    ResearchOpen Access
    Nature
    Volume: 645, P: 626-632
  • The MiDAC complex regulates gene expression through histone deacetylation. Here, the authors identify a recurrent MIDEAS mutation that disrupts an auto-inhibitory loop, elevating deacetylase activity and causing a multisystem developmental disorder.

    • Louise Fairall
    • Kristupas Sirvydis
    • John WR Schwabe
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-14