Publications by authors named "Yueyi Wang"

Positive temperature coefficient (PTC) materials exhibit significant potential in thermal management due to their adaptive temperature regulation. However, current PTC materials are often constrained in the thermal regulation within the low-temperature range due to the high Curie temperatures. Achieving low Curie temperatures often requires small-molecule polymer matrices, which can compromise mechanical properties and lead to phase change material leakage.

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Objective: To find out the risk factors for respiratory distress syndrome in late preterm infants.

Methods: This was a retrospective study. A total of 1605 premature infants born in Maternity & Child Care Center of Qinhuangdao from January 2020 to June 2023 were selected as the research subjects.

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Background: Clinical studies on atrial fibrillation (AF) recurrence after catheter ablation in patients diagnosed with patent foramen ovale (PFO) and paroxysmal AF (PAF) are scarce. Here, we aimed to develop a nomogram model utilizing multimodal data for the risk stratification of AF recurrence following catheter ablation in individuals diagnosed with PFO and new-onset PAF.

Methods: Patients with PFO and PAF who underwent catheter ablation at the Renmin Hospital of Wuhan University from January 2018 to June 2020 were consecutively enrolled.

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Citrus polymethoxyflavones (PMFs) have considerable medicinal, health-promoting, and commercial importance. To provide a stable and reliable source of PMFs, an efficient process of large-scale preparation is warranted. Here, an extraction model for enriching PMFs from citrus fruits was proposed using an enzyme/acid-catalyzed hybrid hydrolysis approach.

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Polyunsaturated fatty acids (PUFAs) are dietary components participating in neurotransmission and cell signaling. Pollen is a source of PUFAs for honeybees, and disruptions in dietary PUFAs reduce the cognitive performance of honeybees. We reveal that gut bacteria of honeybees contribute to fatty acid metabolism, impacting reward learning.

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Article Synopsis
  • The study aimed to identify risk factors for neonatal respiratory distress syndrome (NRDS) in late preterm infants born between 34-36 weeks gestation at a specific maternity center.
  • Researchers analyzed data from 86 infants, finding that while birth weight and gestational age showed no significant difference between NRDS and non-NRDS groups, fetal gender, delivery mode, and factors like asphyxia were significant.
  • Key risk factors identified for NRDS included male gender, placental issues, intrauterine distress, premature rupture of membranes, and gestational diabetes, highlighting the need for enhanced monitoring and intervention for at-risk infants.
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  • This study examines the phase stability and properties of refractory high entropy alloys (RHEAs) at high temperatures using first-principles calculations.
  • It focuses on the TiMoNbX alloys (where X can be Cr or Ta), which maintain a stable body-centered cubic structure and shows strong alignment with experimental data from laser cladding.
  • The research also analyzes their thermophysical and mechanical traits, revealing these alloys are ductile with decreasing modulus and hardness at higher temperatures, while their nanoindentation hardness at room temperature is competitive with existing calculations.
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, a parasite that parasitizes and reproduces in the gut of honeybees, has become a serious threat to the global apiculture industry. RNA interference (RNAi) technology can be used to inhibit growth by targeting silencing the thioredoxin reductase (TrxR) in . However, suitable carriers are one of the reasons limiting the application of RNAi due to the easy degradation of dsRNA in honeybees.

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Mesenteric and omental adipose tissue (MOAT) communicates directly with the heart through the secretion of bioactive molecules and indirectly through afferent signaling to the central nervous system. Myocardial infarction (MI) may induce pathological alterations in MOAT, which further affects cardiac function. Our study revealed that MI induced significant MOAT transcriptional changes in genes related with signal transduction, including adiponectin (), neuropeptide Y (), and complement C3 (), potentially influencing afferent activity.

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Background And Objective: Disturbed autonomic nervous system (ANS) may promote inflammatory, immune, and oxidative stress responses, which may increase the risk of acute coronary events. S100β has been proposed as a biomarker of neuronal injury that would provide an insightful understanding of the crosstalk between the ANS, immune-inflammatory cells, and plaques that drive atherosclerosis. This study investigates the correlation between S100β, and functional coronary stenosis as determined by quantitative flow ratio (QFR).

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Carbon fiber (CF) is a potential microwave absorption (MA) material due to the strong dielectric loss. Nevertheless, owing to the high conductivity, poor impedance matching of carbon-based  materials results in limited MA performance. How to solve this problem and achieve excellent MA performance remains a principal challenge.

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Doxorubicin (Dox) poses a considerable threat to patients owing to its cardiotoxicity, thus limiting its clinical utility. Optimal cardioprotective intervention strategies are needed to suppress tumor growth but also minimize cardiac side effects. Here, we showed that tragus vagus nerve stimulation (tVNS) improved the imbalanced autonomic tone, ameliorated impaired cardiac function and fibrosis, attenuated myocyte apoptosis, and mitochondrial dysfunction compared to those in the Dox group.

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The peelable microwave absorption (MA) coating with reversible adhesion for stable presence on substrates and easy release without any residuals is highly desired in temporary electromagnetic protection, which can quickly enter and disengage the electromagnetic protection state according to the real-time changeable harsh surroundings. On the contrary, with the incorporation of abundant absorbent to achieve excellent MA ability, the tunable adhesion and sufficient cohesion are extremely challenging to fulfill the above requirement. The reported peelable coatings still have problems in controlling adhesion/cohesion strength and coating release, facing substantial residuals after peeling even using complex chemical modification or abundant additives.

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Mast cells (MCs) are important intermediates between the nervous and immune systems. The cardiac autonomic nervous system (CANS) crucially modulates cardiac electrophysiology and arrhythmogenesis, but whether and how MC-CANS neuroimmune interaction influences arrhythmia remain unclear. Our clinical data showed a close relationship between serum levels of MC markers and CANS activity, and then we use mast cell stabilizers (MCSs) to alter this MC-CANS communication.

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Background: Neural remodeling in the left stellate ganglion (LSG), as mediated by neuroimmune reactions, promotes cardiac sympathetic nerve activity (SNA) and thus increases the incidence of ventricular arrhythmias (VAs). Interleukin-6 (IL-6) is an important factor of the neuroimmune interaction.

Objective: The present study explored the effects of IL-6 on LSG hyperactivity and the incidence of VAs.

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Article Synopsis
  • The study investigates the role of interleukin-10 (IL-10) in regulating the cardiac autonomic nervous system (CANS) and its potential to reduce ischemia-induced ventricular arrhythmia (VA) by acting on the cardiac sympathetic ganglion (CSG).
  • Using a genetic approach with adeno-associated virus (AAV), researchers achieved chronic overproduction of IL-10, which resulted in decreased sympathetic nerve activity and improved heart rate variability.
  • The findings indicate that chronic IL-10 overexpression can remodel cardiac sympathetic nerves and suppress VA following myocardial infarction (MI), suggesting its potential as a neuroimmunotherapy for patients at risk of MI-induced VAs.
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Background: The advantages of multimodal digitally transformed mobile health management for patients diagnosed with mild to moderate hypertension are not yet established.

Objective: We aim to evaluate the therapeutic benefits of a novel WeChat-based multimodal digital transforming management model in mobile health blood pressure (BP) management.

Methods: This randomized controlled clinical trial included 175 individuals with new-onset mild to moderate hypertension who were admitted to our center between September and October 2022.

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Psychological stress has been recognized as a contributing factor to worsened prognosis in patients with cardiac failure following myocardial infarction (MI). Although the ventrolateral part of the ventromedial hypothalamus (VMHVL) has been implicated in emotional distress, its involvement in post-MI cardiac dysfunction remains largely unexplored. This study was designed to investigate the effect of the VMHVL activation in the MI rat model and its underlying mechanisms.

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  • * Traditional methods for coating CNTs with Ni nanoparticles are complex and limit their practical use, prompting the need for simpler techniques.
  • * The research introduces polyvinylpyrrolidone (PVP) to achieve uniform Ni nanoparticle distribution on CNTs, resulting in composites with impressive MA performance, showing a minimum reflection loss of -39.5 dB and a bandwidth of 5.2 GHz at a 1.15 mm thickness.
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The coexistence of spin-orbit coupling and piezoelectricity in a single material may have potential application in multifunctional devices, including spintronics, nanorobotics and piezotronics. Spin-orbit coupling provides a new means to manipulate electron's spin without an additional external magnetic field, while piezoelectricity refers to the interplay between mechanical stresses and electric polarization. Using first-principles calculations, the structural, electronic, optical, spin, and piezoelectric properties of the Janus GeXY (X ≠ Y = P, As, Sb, and Bi) monolayers were systematically investigated.

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TiMoNbX (X = Cr, Ta, Zr) RHEA coatings were fabricated on TC4 titanium alloy substrate using laser cladding technology. The microstructure and corrosion resistance of the RHEA were studied by XRD, SEM and an electrochemical workstation. The results show that the TiMoNb series RHEA coating was composed of a columnar dendrite (BCC) phase, a rod-like second phase, a needle-like structure and equiaxed dendrite, but the TiMoNbZr RHEA coating showed high-density defects, similar to those in TC4 titanium alloy, which were composed of small non-equiaxed dendrites and lamellar α'(Ti).

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Polyimide (PI) foam with excellent microwave absorption (MA) performance and desirable compressive strength is highly critical and in demand in the structural MA components. Although the satisfactory MA performance of the present PI-based MA foams has been achieved by employing diverse methods, the relatively low compressive strength (∼KPa) restricted them from use as structural MA foams in practical application. Herein, isocyanate acid was introduced to the backbone of PI resin, which not only increased the PI backbone polarity and strength as rigid chain segment, but also served as a self-foaming component.

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Article Synopsis
  • Emotional stress raises the risk of ischemic cardiovascular diseases by increasing sympathetic outflow, leading to more severe myocardial ischemia-reperfusion (I/R) injury.
  • Researchers activated the ventromedial hypothalamus (VMH) to induce emotional stress, which resulted in heightened sympathetic activity, increased blood pressure, and worsened heart injury.
  • The study found that emotional stress triggers upregulation of inflammatory markers through the TLR7/MyD88/IRF5 signaling pathway, and targeting this pathway can help reduce the injury caused by stress.
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Magnetic clusters on an insulating substrate are potential candidates for spin-based quantum devices. Here we investigate the geometric, electronic, and magnetic structures of small Ti and Cr clusters, from dimers to pentamers, adsorbed on a single-layer hexagonal boron nitride (h-BN) sheet within the framework of density functional theory. The stable adsorption configurations of the Ti clusters and Cr clusters composed of the same number of atoms are found to be totally different from each other.

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Autonomic imbalance is an important characteristic of patients after myocardial infarction (MI) and adversely contributes to post-MI cardiac remodeling and ventricular arrhythmias (VAs). A previous study proved that optogenetic modulation could precisely inhibit cardiac sympathetic hyperactivity and prevent acute ischemia-induced VAs. Here, a wireless self-powered optogenetic modulation system is introduced, which achieves long-term precise cardiac neuromodulation in ambulatory canines.

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