Publications by authors named "Lilian Wang"

Article Synopsis
  • * The HEAN/CNT composite exhibits impressive stability, maintaining operation for over 220 hours in zinc-air batteries and showing no performance loss after 20 hours of water electrolysis.
  • * Detailed investigation reveals the role of defect structures and electron interactions in HEAN/CNT's electrocatalytic performance, with findings suggesting new strategies for designing cost-effective multifunctional catalysts.
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Article Synopsis
  • Breast MRI can find things that regular mammograms and ultrasounds might miss, but it can show both benign (non-cancerous) and malignant (cancerous) signs that look similar.
  • *To check things found on MRI, doctors need to take samples of the tissue accurately, which is called a biopsy. Sometimes it's tricky because not all findings can be easily matched with other imaging tests.
  • *The article talks about ways to reduce mistakes during biopsies from MRI findings, like choosing the right method and making sure the doctors are careful so they can avoid missing cancer diagnoses.
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Aim: miR-141-5p expression in patients with Early Spontaneous Abortion (ESA) and its correlation with hormone levels during pregnancy were investigated.

Methods: A total of 70 pregnant women with ESA were selected as the research group, and 70 normal pregnant women who chose abortion for non-medical reasons were selected as the Con group. Serum β-HCG, Progesterone (P), and Estrogen (E2) were detected by enzyme-linked immunosorbent assay.

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Objective: To evaluate breast imaging fellowship program directors' perspectives on the virtual interview process.

Methods: A 20-question survey constructed by members of the Fellowship Match Committee of the Society of Breast Imaging was distributed to all 99 breast imaging program directors registered with the Society. An initial e-mail with a link to the survey was distributed on September 9, 2022, and the survey was closed on October 1, 2022.

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The radiologist's ability to effectively communicate with patients is crucial in breast imaging. Having to tell a patient that she or he requires a biopsy procedure or has a new diagnosis of breast cancer is both a challenging task and a daily reality for many practicing breast radiologists. Despite this, communication in breast imaging is often not formally taught in most training programs, leading many breast radiologists to obtain their skills through on-the-job experience.

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A FeCo/DA@NC catalyst with the well-defined FeCoN moiety is customized through a novel and ultrafast Joule heating technique. This catalyst demonstrates superior oxygen reduction reaction activity and stability in an alkaline environment. The power density and charge-discharge cycling of znic-air batteries driven by FeCo/DA@NC also surpass those of Pt/C catalyst.

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Lithium-sulfur (Li-S) batteries stand out for their high theoretical specific capacity and cost-effectiveness. However, the practical implementation of Li-S batteries is hindered by issues such as the shuttle effect, tardy redox kinetics, and dendrite growth. Herein, an appealingly designed covalent organic framework (COF) with bi-functional active sites of cyanide groups and polysulfide chains (COF-CN-S) is developed as cooperative functional promoters to simultaneously address dendrites and shuttle effect issues.

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The solution chemistry of the hydrolytic, early-transition-metal ions Ti and Sc represents a coordination chemistry challenge with important real-world implications, specifically in the context of Ti/Sc and Ti/Sc radiochemical separations. Unclear speciation of the solid and solution phases and tertiary mixtures of mineral acid, organic chelators, and solid supports are common confounds, necessitating tedious screening of multiple variables. Herein we describe how thermodynamic speciation data in solution informs the design of new solid-phase chelation approaches enabling separations of Ti and Sc.

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A novel type of covalent organic frameworks has been developed by assembling definite cobalt-nitrogen-carbon configurations onto carbon nanotubes using linkers that have varying electronic effects. This innovative approach has resulted in an efficient electrocatalyst for oxygen reduction, which is understood by a combination of in situ spectroelectrochemistry and the bond order theorem. The strong interaction between the electron-donating carbon nanotubes and the electron-accepting linker mitigates the trend of charge loss at cobalt sites, while inducing the generation of high spin state.

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Digital breast tomosynthesis (DBT) has led to increased detection of architectural distortion (AD). Management of patients with multiple areas of AD is not established. The purpose of this article is to compare pathologic outcomes between single and multiple areas of AD identified on DBT.

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The radiologists' role in axillary imaging in the setting of a suspicious breast mass is evolving in light of the Z0011 trial leading to expected practice variation. The purpose of our project was to generate a standardized algorithm guiding the utilization of axillary ultrasound in the setting of a highly suggestive or highly suspicious breast mass (BI-RADS 4C or 5) without a known cancer diagnosis. The algorithm was created with Z0011 practices in mind while reflecting the clinical preferences of our radiology and surgical teams.

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Background: Available data on influenza burden across Southeast Asia are largely limited to pediatric populations, with inconsistent findings.

Methods: We conducted a multicenter, hospital-based active surveillance study of adults in Malaysia with community-acquired pneumonia (CAP), acute exacerbation of chronic obstructive pulmonary disease (AECOPD) and acute exacerbation of asthma (AEBA), who had influenza-like illness ≤10 days before hospitalization. We estimated the rate of laboratory-confirmed influenza and associated complications over 13 months (July 2018-August 2019) and described the distribution of causative influenza strains.

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Objective: The A6702 multisite trial confirmed that apparent diffusion coefficient (ADC) measures can improve breast MRI accuracy and reduce unnecessary biopsies, but also found that technical issues rendered many lesions non-evaluable on diffusion-weighted imaging (DWI). This secondary analysis investigated factors affecting lesion evaluability and impact on diagnostic performance.

Methods: The A6702 protocol was IRB-approved at 10 institutions; participants provided informed consent.

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The sensitivity of mammography is more limited in patients with dense breasts and some patients at higher risk for breast cancer. Patients with intermediate or high risk for breast cancer may begin screening earlier and benefit from supplemental screening techniques beyond standard 2-dimensional mammography. A patient's individual risk factors for developing breast cancer, their breast density, and the evidence supporting specific modalities for a given clinical scenario help to determine the need for supplemental screening and the modality chosen.

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Background The Eastern Cooperative Oncology Group and American College of Radiology Imaging Network Cancer Research Group A6702 multicenter trial helped confirm the potential of diffusion-weighted MRI for improving differential diagnosis of suspicious breast abnormalities and reducing unnecessary biopsies. A prespecified secondary objective was to explore the relative value of different approaches for quantitative assessment of lesions at diffusion-weighted MRI. Purpose To determine whether alternate calculations of apparent diffusion coefficient (ADC) can help further improve diagnostic performance versus mean ADC values alone for analysis of suspicious breast lesions at MRI.

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Magnetic nanomaterials were functionalized with dopamine hydrochloride as the functional reagent to afford a core-shell-type FeO modified with polydopamine (FeO@PDA) composite, which was used for the adsorption of cadmium ions from an aqueous solution. In addition, the effects of environmental factors on the adsorption capacity were investigated. Furthermore, the adsorption kinetics, isotherm, and thermodynamics of the adsorbents were discussed.

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Digital breast tomosynthesis (DBT) is rapidly becoming the standard of care for breast cancer screening. Implementing DBT into practice is relatively straightforward. However, there are important elements of the transition that one must consider to facilitate this process.

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Purpose: Conventional breast MRI is highly sensitive for cancer detection but prompts some false positives. We performed a prospective, multicenter study to determine whether apparent diffusion coefficients (ADCs) from diffusion-weighted imaging (DWI) can decrease MRI false positives. A total of 107 women with MRI-detected BI-RADS 3, 4, or 5 lesions were enrolled from March 2014 to April 2015.

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Purpose: Digital breast tomosynthesis (DBT) has been shown to increase conspicuity of some mammographic findings, particularly architectural distortion (AD). The purpose of this retrospective study was to determine the positive predictive value of AD on diagnostic DBT, and evaluate associations between AD characteristics and histopathologic outcomes.

Methods: This IRB-approved, HIPAA-compliant study included diagnostic DBT exams performed between 1/2014 and 12/2015 that demonstrated AD.

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Purpose: The current standard of care for women diagnosed with early stage breast cancer is breast-conserving surgery (BCS) followed by external beam radiation therapy, commonly delivered over 3-6 weeks. As an alternative, select patients can undergo intra-operative radiation therapy (IORT) at the time of BCT. This technique delivers a single fraction of radiation at the time of surgery, enabling patients to undergo both surgery and radiation in a single session.

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To evaluate the MR appearance of noncalcified ductal carcinoma in situ (DCIS), with comparison to calcified DCIS. A retrospective, IRB-approved review of all DCIS diagnosed via MR biopsy between 2007 and 2011 was performed. DCIS was categorized as noncalcified based on the absence of calcifications on mammography and specimen radiography.

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Breast MR imaging is the most sensitive modality for breast cancer detection. This high sensitivity has led to widespread adoption of this technique, particularly in screening women at elevated risk for breast cancer. Despite its high sensitivity, standard breast MR imaging protocols are limited by moderate specificity and relative higher cost, longer examination time, longer interpretation time, and lower availability compared with mammography and ultrasound.

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This paper concerns multiphase piecewise smooth image segmentation with intensity inhomogeneities. Traditional methods based on the Mumford-Shah (MS) model require solving complicated diffusion equations evolving in irregular subdomains, leading to significant difficulties in efficient and accurate segmentation, especially in multiphase scenarios. In this paper, we propose a general framework to modify the MS model by using smoothing operators that can avoid the complicated implementation and inaccurate segmentation of traditional approaches.

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