The shape of attention: How cognitive goals sculpt cortical representation of speech.

Kavli Affiliate: Mounya Elhilali | Authors: Moïra-Phoebé Huet and Mounya Elhilali | Summary: Perception requires more than passive sensing—it involves prioritizing the features most relevant to ongoing cognitive goals, a process guided by selective attention. A central question is whether attention operates by enhancing all features of a selected target, or by optimizing neural encoding […]


Continue.. The shape of attention: How cognitive goals sculpt cortical representation of speech.

Hebb’s Vision: The Structural Underpinnings of Hebbian Assemblie

Kavli Affiliate: Reza Abbasi Asl | Authors: Julian A Wagner-Carena, Sai Kate, Trevor Riordan, Reza Abbasi-Asl, Joe Aman, Adam Amster, Agnes L Bodor, Derrick Brittain, JoAnn Buchanan, Michael A Buice, Daniel J Bumbarger, Forrest Collman, Nuno Macarico da Costa, Daniel J Denman, Saskia EJ de Vries, Emily Joyce, Dan Kapner, Chase W King, Josh D […]


Continue.. Hebb’s Vision: The Structural Underpinnings of Hebbian Assemblie

GABAergic signaling by VIP interneurons gates running-dependent visual recovery in the adult brain

Kavli Affiliate: Michael Stryker | Authors: Anna Lebedeva, Friedrich Kling, Benjamin Rakela, Michael P Stryker and Yujiao Jennifer Sun | Summary: Experience-dependent plasticity in the adult visual cortex is enhanced by locomotion, a process mediated by vasoactive intestinal peptide (VIP)-expressing interneurons. While VIP interneurons are known to signal through both Gamma-aminobutyric acid (GABA) and VIP […]


Continue.. GABAergic signaling by VIP interneurons gates running-dependent visual recovery in the adult brain

A Framework for Spontaneous Brillouin Noise: Unveiling Fundamental Limits in Brillouin Metrology

Kavli Affiliate: Long Zhang | First 5 Authors: Simeng Jin, Shuai Yao, Zhisheng Yang, Zixuan Du, Xiaobin Hong | Summary: Spontaneous Brillouin scattering (SpBS) provides a non-contact tool for probing the mechanical and thermodynamic properties of materials, enabling important applications such as distributed optical fiber sensing and high-resolution Brillouin microscopy. Achieving metrological precision in these […]


Continue.. A Framework for Spontaneous Brillouin Noise: Unveiling Fundamental Limits in Brillouin Metrology

Universal Biological Sequence Reranking for Improved De Novo Peptide Sequencing

Kavli Affiliate: Xiang Zhang | First 5 Authors: Zijie Qiu, Jiaqi Wei, Xiang Zhang, Sheng Xu, Kai Zou | Summary: De novo peptide sequencing is a critical task in proteomics. However, the performance of current deep learning-based methods is limited by the inherent complexity of mass spectrometry data and the heterogeneous distribution of noise signals, […]


Continue.. Universal Biological Sequence Reranking for Improved De Novo Peptide Sequencing

DECT-based Space-Squeeze Method for Multi-Class Classification of Metastatic Lymph Nodes in Breast Cancer

Kavli Affiliate: Xiang Zhang | First 5 Authors: Hai Jiang, Chushan Zheng, Jiawei Pan, Yuanpin Zhou, Qiongting Liu | Summary: Background: Accurate assessment of metastatic burden in axillary lymph nodes is crucial for guiding breast cancer treatment decisions, yet conventional imaging modalities struggle to differentiate metastatic burden levels and capture comprehensive lymph node characteristics. This […]


Continue.. DECT-based Space-Squeeze Method for Multi-Class Classification of Metastatic Lymph Nodes in Breast Cancer

SUFFICIENT: A scan-specific unsupervised deep learning framework for high-resolution 3D isotropic fetal brain MRI reconstruction

Kavli Affiliate: Li Xin Li | First 5 Authors: Jiangjie Wu, Lixuan Chen, Zhenghao Li, Xin Li, Saban Ozturk | Summary: High-quality 3D fetal brain MRI reconstruction from motion-corrupted 2D slices is crucial for clinical diagnosis. Reliable slice-to-volume registration (SVR)-based motion correction and super-resolution reconstruction (SRR) methods are essential. Deep learning (DL) has demonstrated potential […]


Continue.. SUFFICIENT: A scan-specific unsupervised deep learning framework for high-resolution 3D isotropic fetal brain MRI reconstruction