Nuclear mechanical properties are inherently scale‐dependent, arising from a hierarchical architecture that spans DNA, chromatin, the nuclear envelope, and condensates. Experimental techniques and theoretical models are integrated into a cohesive multiscale framework linking nanoscale structural features to organelle‐level mechanical behavior.
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A Nonlinear Error Compensation Method for Heterodyne Interferometry Based on Self-Supervised Physics-Informed Neural Networks with Frequency-Domain Priors. [PDF]
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Altered salience network structure-function integration underlies the decline in cognitive flexibility during aging. [PDF]
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Capillary Electrophoresis With Amperometric Detection for Neurotransmitter Analysis: Principles, Electrode Materials, Methodologies, and Applications. [PDF]
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Multimodal PCSC Sensors for Real-Time Temperature and Force Detection Using LRTNet. [PDF]
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Beyond aggregate volume-Accelerometer-derived activity phenotypes reveal a decoupling of lean mass and function: A cross-sectional study. [PDF]
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Enhanced Structural Decoupling and Spatiotemporal Evolution of Thermal-Mass Coupling in LaNi<sub>5</sub>-Based Solid-State Hydrogen Storage Reactors. [PDF]
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