
Lin Zhong
Articles
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Jan 10, 2025 |
biorxiv.org | Marius Pachitariu |Lin Zhong |Alexa Gracias |Amanda Minisi
AbstractArtificial neural networks learn faster if they are initialized well. Good initializations can generate high-dimensional macroscopic dynamics with long timescales. It is not known if biological neural networks have similar properties. Here we show that the eigenvalue spectrum and dynamical properties of large-scale neural recordings in mice (two-photon and electrophysiology) are similar to those produced by linear dynamics governed by a random symmetric matrix that is critically normalized.
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Nov 13, 2024 |
tandfonline.com | Bowen Xu |Hongye Li |Hongping Chen |Lin Zhong
AbstractObjective Atherosclerosis(AS) is a vascular disease characterized by the development of plaque in the arteries, and atrial fibrillation (AF) is a common heart arrhythmia. These two conditions share several risk factors in common, such as aging, diabetes, obesity, and hypertension. Ferroptosis is a new mode of non-apoptotic cell death that plays a key role in cardiomyocyte death and has been associated with a variety of cardiac diseases.
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Oct 29, 2024 |
mdpi.com | Lin Zhong |Wenjun Sun |Shaohua Zhang |Qianjie Liu
1. IntroductionSuspension systems have a crucial impact on vehicle handling stability, driving safety, and ride comfort [1]. Depending on the form of control, suspension systems are categorized into three main types: passive suspension, active suspension, and semi-active suspension [2]. Passive suspensions are unable to adapt to changes in body parameters and driving conditions because the damping and stiffness coefficients are fixed to certain values.
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Oct 27, 2024 |
biorxiv.org | Lin Zhong |Siyuan Zhang |Qiwei Li |Guanghua Xiao
AbstractT cells are the central players in antitumor immunity, and effective tumor killing depends on their ability to infiltrate into the tumor microenvironment (TME) while maintaining normal cytotoxicity. However, late-stage tumors develop immunosuppressive mechanisms that impede T cell movement and induce exhaustion. Investigating T cell migration in human tumors in vivo could provide novel insights into tumor immune escape, although it remains a challenging task.
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Oct 16, 2024 |
nature.com | Carsen Stringer |Lin Zhong |Atika Syeda
AbstractNeurophysiology has long progressed through exploratory experiments and chance discoveries. Anecdotes abound of researchers listening to spikes in real time and noticing patterns of activity related to ongoing stimuli or behaviors. With the advent of large-scale recordings, such close observation of data has become difficult.
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