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1.
LGBT Health ; 2024 Apr 08.
Article in English | MEDLINE | ID: mdl-38593408

ABSTRACT

Purpose: Sexual minority men (SMM) experience intimate partner violence (IPV) at disproportionately high rates. The objective of this article was to identify the experiences of SMM and health care providers on how social identity impacts IPV. Methods: SMM participants (N = 23) were recruited from online community settings and a lesbian, gay, bisexual, transgender, queer, and others (LGBTQ+) organization in Los Angeles; providers (N = 10) were recruited from LGBTQ+ organizations. Semistructured interviews were audio recorded and transcribed verbatim. An applied thematic analysis approach was implemented to create memos, inductively generate a codebook, apply codes to the transcripts, and identify key themes in data. Results: Three main themes were identified. The first theme was weaponizing social identity to control a partner, which had three subthemes: (1) immigration status, race/ethnicity, and skin color, (2) threatening to "out" the partner's sexual orientation, and (3) abusing power inequity. Men who perpetrated IPV often used minority identities or undisclosed sexuality to leverage power over their partner. The second theme was use of IPV to establish masculinity, by exerting power over the more "feminine" partner. The third theme was internalized homophobia as a root cause of IPV, which details how internalized homophobia was often expressed in violent outbursts toward partners. Conclusion: These findings highlight how IPV among SMM can be influenced by social and sexual identity. Future research must consider socially constructed power structures and the multiple identities of SMM when developing interventions to address IPV in this population.

2.
Nano Lett ; 23(22): 10228-10235, 2023 Nov 22.
Article in English | MEDLINE | ID: mdl-37930320

ABSTRACT

Achieving pure single-photon emission is essential for a range of quantum technologies, from quantum computing to quantum key distribution to quantum metrology. Among solid-state quantum emitters, colloidal lead halide perovskite (LHP) nanocrystals (NCs) have attracted considerable interest due to their structural and optical properties, which make them attractive candidates for single-photon sources (SPSs). However, their practical utilization has been hampered by environment-induced instabilities. In this study, we fabricate and characterize in a systematic manner Zn-treated CsPbBr3 colloidal NCs obtained through Zn2+ ion doping at the Pb-site, demonstrating improved stability under dilution and illumination. The doped NCs exhibit high single-photon purity, reduced blinking on a submillisecond time scale, and stability of the bright state even at excitation powers well above saturation. Our findings highlight the potential of this synthesis approach to optimize the performance of LHP-based SPSs, opening up interesting prospects for their integration into nanophotonic systems for quantum technology applications.

3.
J Cardiovasc Echogr ; 28(4): 207-217, 2018.
Article in English | MEDLINE | ID: mdl-30746324

ABSTRACT

Mitral valve prolapse is generally a benign condition characterized by fibromyxomatous changes of the mitral leaflet with displacement into the left atrium and late-systolic regurgitation. Although it is an old clinical entity, it still arouses perplexity in diagnosis and clinical management. Complications, such as mitral regurgitation (MR), atrial fibrillation, congestive heart failure, endocarditis, ventricular arrhythmias, and sudden cardiac death (SCD), have been reported. A large proportion of the overall causes of SCD in young competitive athletes is explained by mitral valve prolapse. Recent studies have shown the fibrosis of the papillary muscles and inferobasal left ventricular wall in mitral valve prolapse, suggesting a possible origin of ventricular fatal arrhythmias. Athletes with mitral valve prolapse and MR should undergo annual evaluations including physical examination, echocardiogram, and exercise stress testing to evaluate the cardiovascular risks of competitive sports and obtain the eligibility. In this setting, multimodality imaging techniques - echocardiography, cardiac magnetic resonance, and cardiac computed tomography - should provide a broad spectrum of information, from diagnosis to clinical management of the major clinical profiles of the disease.

4.
World J Radiol ; 6(7): 486-92, 2014 Jul 28.
Article in English | MEDLINE | ID: mdl-25071889

ABSTRACT

Cardiotoxicity as a result of cancer treatment is a novel and serious public health issue that has a significant impact on a cancer patient's management and outcome. The coexistence of cancer and cardiac disease in the same patient is more common because of aging population and improvements in the efficacy of antitumor agents. Left ventricular dysfunction is the most typical manifestation and can lead to heart failure. Left ventricular ejection fraction measurement by echocardiography and multigated radionuclide angiography is the most common diagnostic approach to detect cardiac damage, but it identifies a late manifestation of myocardial injury. Early non-invasive imaging techniques are needed for the diagnosis and monitoring of cardiotoxic effects. Although echocardiography and cardiac magnetic resonance are the most commonly used imaging techniques for cardiotoxicity assessment, greater attention is focused on new nuclear cardiologic techniques, which can identify high-risk patients in the early stage and visualize the pathophysiologic process at the tissue level before clinical manifestation. The aim of this review is to summarize the role of nuclear imaging techniques in the non-invasive detection of myocardial damage related to antineoplastic therapy at the reversible stage, focusing on the current role and future perspectives of nuclear imaging techniques and molecular radiotracers in detection and monitoring of cardiotoxicity.

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