Publications by authors named "T S Shih"

Mosquito-borne diseases affect millions and cause numerous deaths annually. Effective vector control, which hinges on understanding their dispersal, is vital for reducing infection rates. Given the variability in study results, likely due to environmental and human factors, gathering local dispersal data is critical for targeted disease control.

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Article Synopsis
  • Manipulating fluid flow is crucial for advances in microfluidics, nanoengineering, and biomedicine, and can help address the global energy crisis by achieving zero-drag hydrodynamics.
  • The research tackles challenges posed by the D'Alembert paradox and unresolved Navier-Stokes equations, introducing a new type of hydrodynamic cloak that operates with isotropic and homogeneous viscosity.
  • Key findings highlight the importance of controlling vorticity for achieving zero-drag and hydrodynamic cloaking, challenging the notion that zero drag is impossible and offering insights beneficial for various technologies, including drug delivery systems.
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Introduction: The Hurley staging system is a grading system utilized to measure hidradenitis suppurativa (HS) severity. Teaching patients to grade the severity of HS may aid in the accuracy of self-reporting for research and clinical purposes. Thus, this study aimed to determine the utility of a Hurley stage learning module (HSLM) for participants to grade images of HS.

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  • - The insula is crucial for empathy and compassion, and removing it to treat drug-resistant epilepsy could potentially alter these feelings.
  • - A case study of a woman with epilepsy localized to the nondominant insula showed no changes in compassion levels after a novel compassion mapping test, which assessed her response to compassion-eliciting videos.
  • - Post-surgery evaluations confirmed that her compassion, along with related emotions like sadness and empathy, remained unchanged, suggesting that insular resection can be safely performed without affecting compassion.
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Quinoxaline and its derivatives exhibit a broad spectrum of biological activity, making them valuable for various therapeutic applications. However, most quinoxalines are synthetically produced due to their scarcity in nature. In this article, a series of unsymmetric benzils were synthesized and subsequently condensed with 1,2-diaminobenzene to produce unsymmetric quinoxalines.

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