Publications by authors named "G F Tomaselli"

Purpose: This study explores how corporate social responsibility (CSR) and artificial intelligence (AI) can be combined in the healthcare industry during the post-COVID-19 recovery phase. The aim is to showcase how this fusion can help tackle healthcare inequalities, enhance accessibility and support long-term sustainability.

Design/methodology/approach: Adopting a viewpoint approach, the study leverages existing literature and case studies to analyze the intersection of CSR and AI.

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Article Synopsis
  • This study looks at how well doctors can predict sudden cardiac death after someone has a heart attack using a measurement called left ventricular ejection fraction (LVEF).
  • They combined information from over 140,000 heart attack patients to see if LVEF alone is good enough for deciding who should get a heart device called a defibrillator.
  • The results showed that LVEF didn't do a great job at predicting sudden cardiac death, which means doctors need better ways to tell who is at risk.
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Superradiant clouds of ultralight bosons can leave an imprint on the gravitational waveform of black hole binaries through "ionization" and "resonances." We study the sequence of resonances as the binary evolves and show that there are only two possible outcomes, each with a distinct imprint on the waveform. If the cloud and the binary are nearly counterrotating, then the cloud survives in its original state until it enters the sensitivity band of future gravitational wave detectors, such as the Laser Interferometer Space Antenna.

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Article Synopsis
  • The LIVE-LQTS study aimed to investigate whether vigorous exercise increases the risk of ventricular arrhythmias in individuals with congenital long QT syndrome (LQTS) by tracking participants' activity and health events over three years.
  • Among 1,413 participants, 52% engaged in vigorous exercise, and the study found similar rates of serious cardiac events (2.6% in vigorous exercisers vs. 2.7% in non-vigorous) suggesting that vigorous exercise may not significantly increase risk for these individuals.
  • The results had a hazard ratio of 0.97, indicating that vigorous exercisers experienced similar or potentially lower rates of adverse events than those who did not exercise vigorously, providing insight into safe exercise practices for LQ
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Voltage gated Na channels (Na) are essential for excitation of tissues. Mutations in Nas cause a spectrum of human disease from autism and epilepsy to cardiac arrhythmias to skeletal myotonias. The carboxyl termini (CT) of Na channels are hotspots for disease-causing mutations and are richly invested with protein interaction sites.

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