Publications by authors named "S-M Han"

To evaluate the outcomes and predictive factors for fluid resolution following three loading injections of faricimab for neovascular age-related macular degeneration(AMD). This retrospective study included patients diagnosed with treatment-naïve neovascular AMD who received three monthly injections of faricimab. Changes in best-corrected visual acuity(BCVA) and central retinal thickness(CRT) following treatment were evaluated.

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Article Synopsis
  • The DSM-5 defines autism spectrum disorder (ASD) as a neurodevelopmental disorder characterized by social communication deficits and repetitive behaviors, with different prevalence rates reported globally (2.27% in the U.S. vs. 0.7% in China).
  • ASD-affected children often exhibit challenges in adaptive behaviors, which are essential skills for daily living and adapting to their environments.
  • Various assessments, including the Vineland Adaptive Behavior Scales (VABS) and the Adaptive Behavior Assessment System (ABAS), evaluate adaptive behaviors through multiple dimensions like communication, daily living skills, socialization, and motor skills.
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Images are extensively utilized in educational materials due to their efficacy in conveying complex concepts. However, unauthorized use of images frequently results in legal issues related to copyright infringement. To mitigate this problem, we introduce a dual-module system specifically designed for educators.

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Hydrogels used for flexible sensing usually require a good balance between mechanical strength and conductivity. In this study, polyvinyl alcohol/carboxymethyl cellulose/cellulose nanofibers (PVA/CMC/CNF) hydrogels with multi-hierarchical structures were firstly prepared by adjusting the CNF content. Then, PVA/CMC/CNF-xM with excellent mechanical properties and conductivity were prepared by cyclic freezing-thawing and sodium citrate/aluminium chloride (NaCit/AlCl) dual ions salt equilibrium methods.

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A tunable bifunctional metasurface absorber based on vanadium dioxide (VO) and photoconductive silicon (PSi) is proposed in a terahertz (THz) band. When the conductivities of VO () and PSi () are 10 S m and 1 × 10 S m, the designed absorber has a function of dual-broadband absorption. The absorptivity rate of over 90% is in the dual-broadband of 2.

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Purpose: To relate bone shape with anterior cruciate ligament (ACL) graft maturation, as evaluated by quantitative magnetic resonance imaging.

Methods: We retrospectively evaluated patients aged 18 to 60 years who underwent ACL reconstruction with a hamstring autograft with doubled semitendinosus and gracilis at our institution between 2018 and 2020 with isolated ACL injuries. All patients had a minimum follow-up period of 2 years.

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Thoracic endovascular aortic repair has become the first-line treatment modality for descending thoracic aortic diseases. Coverage of the aortic arch branches is often required to extend the proximal seal zones during thoracic endovascular aortic repair. The thoracic branch endoprosthesis (TBE) is the first US Food and Drug Administration-approved branched device for thoracic endovascular repair allowing for incorporation of the left subclavian artery.

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The Thoracoabdominal Multibranch Endoprosthesis (TAMBE) is a commercially available off-the-shelf four-vessel inner branched endograft for complex abdominal and thoracoabdominal aortic aneurysms. As post-dissection thoracoabdominal aortic aneurysms (PD-TAAAs) were excluded from the pivotal trials, there is paucity of data on the use of TAMBE in PD-TAAAs. Here, we present a case demonstrating the feasibility of TAMBE in conjunction with iliac branch endoprosthesis to repair PD-TAAAs, with focus on the deployment technique specific to PD-TAAAs.

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Background Breast nonmass lesions (NMLs) are observed at screening and diagnostic US. However, knowledge is limited on imaging features of NMLs at screening US. Purpose To identify features of NMLs at screening US that are suspicious for malignancy based on mammographic findings.

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Introduction: Multicancer detection tests (MCDs) are blood-based tests designed to detect multiple cancer types. It is currently unclear whether these cancer screening tests improve mortality. To understand awareness of MCDs among providers and patients, as well as explore how they perceive the benefits, harms, and acceptability of MCDs, we have undertaken a focus group study in primary care physicians (PCPs) and laypersons to explore knowledge, attitudes, and expectations of cancer screening using MCDs.

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Research and medical genomics require comprehensive, scalable methods for the discovery of novel disease targets, evolutionary drivers and genetic markers with clinical significance. This necessitates a framework to identify all types of variants independent of their size or location. Here we present DRAGEN, which uses multigenome mapping with pangenome references, hardware acceleration and machine learning-based variant detection to provide insights into individual genomes, with ~30 min of computation time from raw reads to variant detection.

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With the development of science and technology, wearable electronics are increasingly widely used in medical, environmental monitoring, and other fields. Thus, the demand for flexible electrodes is increasing. The two-dimensional material TiCT has attracted much attention in the manufacture of flexible electrodes due to its excellent mechanical and electrical properties.

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The thoracoabdominal multibranch endoprosthesis is a commercially available off-the-shelf four-vessel inner branched endograft for complex abdominal and thoracoabdominal aortic aneurysms. Type IIIb endoleak owing to fabric tear of fenestrated branched endovascular repair (FBEVAR) can be challenging, often requiring relining FBEVAR. Here, we present a case where thoracoabdominal multibranch endoprosthesis was used to reline the previous physician modified FBEVAR in a patient with a 10-cm extent IV thoracoabdominal aortic aneurysm distal to the previous open extent I thoracoabdominal aortic aneurysm repair.

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The design of polyelectrolyte hydrogel with unique tensile and adhesive properties which can be applied across disciplines has gradually become a popular trend. However, the phenomenon of global warming and the emergence of extreme weather, it still faces some urgent problems that should be solved, such as the optimal utilization of polyelectrolyte hydrogel across a wide range of temperatures. Herein, a wide temperature sensitivity and conductivity hydrogel based on sodium alginate, acrylamide and N-isopropylacrylamide was constructed, which exhibited excellent adhesion and temperature conductivity.

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Utilizing the thermogalvanic effect, flexible thermoelectric materials present a compelling avenue for converting heat into electricity, especially in the context of wearable electronics. However, prolonged usage is hampered by the limitation imposed on the thermoelectric device's operational time due to the evaporation of moisture. Deep eutectic solvents (DESs) offer a promising solution for low-moisture gel fabrication.

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This report details a hybrid approach for treatment of abdominal aortic aneurysm in a patient with Marfan syndrome (MFS). A 34-year-old patient with MFS and prior open thoracoabdominal aortic aneurysm repair underwent bilateral common iliac artery interposition graft repair and endovascular aortic repair. The bifurcated stent graft was implanted into the previous thoracoabdominal graft proximally and iliac interposition grafts distally.

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Background There are insufficient data comparing resorbable microspheres (RMs) with permanent trisacryl gelatin microspheres (TAGMs) for uterine artery embolization (UAE). Purpose To compare therapeutic efficacy and clinical outcomes in participants with symptomatic fibroids after UAE with RMs or TAGMs. Materials and Methods This randomized controlled trial included participants undergoing UAE for symptomatic fibroids at a single institution (from May 2021 to May 2023).

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Soil organic matter serves as a crucial indicator for soil quality. Albic soil, characterized by a barrier layer, exhibits limitations in organic matter content, which can adversely affect crop growth and development. To elucidate the impact of deep mixing of various organic materials on the redistribution of organic matter in the surface soil of albic soil could provide theoretical and technical insights for establishing suitable plough layers for albic soil in Northeast China.

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Energy correlators that describe energy-weighted distances between two or three particles in a hadronic jet are measured using an event sample of sqrt[s]=13  TeV proton-proton collisions collected by the CMS experiment and corresponding to an integrated luminosity of 36.3  fb^{-1}. The measured distributions are consistent with the trends in the simulation that reveal two key features of the strong interaction: confinement and asymptotic freedom.

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is a highly nutritious marine microalga that has various applications in aquaculture and biotechnology. However, the effects of extract (TLE) on osteoarthritis (OA) pathogenesis remain unexplored. In this study, we aimed to determine the effects of TLE on OA development.

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Chitosan-based hydrogels, as natural high-molecular-weight flexible materials, are widely utilized due to their outstanding properties. In this research, we developed a one-pot method for synthesizing a novel PVA/CS@PPy-PDA conductive hydrogel and explored the internal bonding patterns through molecular dynamics simulations. By adding PPy-PDA nanoparticles into a hydrogel matrix, an interpenetrating conductive network established successfully.

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The Hulunbuir region, known for its diverse terrain and rich wildlife, is a hotspot for various natural epidemic diseases. Between 2021 and 2023, we collected 885 wild rodent samples from this area, representing three families, seven genera, and eleven species. Metagenomic analysis identified three complete nucleic acid sequences from the S, M, and L segments of the family, which were closely related to the Khabarovsk virus.

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Biomass-encapsulated liquid metals (LMs) composite gels have aroused tremendous attention as epidermal smart materials due to their biocompatibility and sustainability. However, they can still not simultaneously possess toughness, adhesion, and recoverability. In this work, the tough, sticky, and recyclable protein-encapsulated LMs organogels (GLM) are fabricated through the micro-interfacial stabilization of LMs by lignin and the following preparation of food-making inspired gels.

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Article Synopsis
  • Implantable neural devices that record neuron activity offer insights into brain functioning but face challenges during vigorous activities due to brain deformation.* -
  • Effective neural devices need a combination of low modulus, low interfacial impedance, and high electrical conductivity, which currently contradict each other in existing materials.* -
  • A new soft fiber neural device, designed like an axon, successfully tracks individual neurons in active animals by using a conductive gel fiber, achieving optimal properties for stable performance in challenging conditions.*
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Article Synopsis
  • * A new method is introduced that combines organic and inorganic materials to create hydrogels with better performance, achieving high conductivity (2000 S/m), large stretchability (200%), and excellent electrochemical capabilities.
  • * The resulting elastic supercapacitors demonstrate impressive energy storage metrics, and can power luminescent systems without extra energy, paving the way for innovative designs in wearable electronics.
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