Huiying Zhao
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As a journalist, you can create a free Muck Rack account to customize your profile, list your contact preferences, and upload a portfolio of your best work.Articles
Slow-wave sleep engages brainstem circuitry to prevent stress-induced anxiety
Keywords slow-wave sleep anxiety stress parafacial zone lateral parabrachial nucleus oval bed nucleus of the stria terminalis Get full text access Log in, subscribe or purchase for full access. References 1. Scammell, T.E. ∙ Arrigoni, E. ∙ Lipton, J.O. Neural Circuitry of Wakefulness and Sleep Neuron. 2017; 93:747-765 2. Liu, D. ∙ Dan, Y. A Motor Theory of Sleep-Wake Control: Arousal-Action Circuit Annu. Rev. Neurosci. 2019; 42:27-46 3. Tovote, P. ∙ Fadok, J.P. ∙ Lüthi, A.
A self-supervised electrocardiogram foundation model for empowering cardiovascular disease prediction and genetic factor discovery
Abstract Electrocardiogram (ECG) has been widely used in the diagnosis of cardiovascular disease (CVD). Current deep learning methods for CVD prediction using ECG often lack generalizability and interpretability, resulting in limited performance. Here, we have developed a self-supervised Electrocardiogram Large-scale Foundation Model (ECG-LFM) through pre-training over ten million 12-lead ECGs from multiple ECG datasets.
Epigenome-wide Mendelian randomization with multi-omics validation identifies epigenetic drivers of idiopathic pulmonary fibrosis
Abstract Idiopathic pulmonary fibrosis (IPF) is a complex disease without clear etiology or effective therapy. While DNA methylation has been implicated in IPF pathogenesis, the tissue-specific causal effects of the epigenetic factors on IPF remain undetermined. Here, we perform epigenome-wide Mendelian randomization using blood-based methylation quantitative trait loci of 420,509 CpG sites and genome-wide association study for IPF to elucidate the causal effects of the CpG sites on IPF.
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