J Craniofac Surg
December 2024
Background: The ethical discourse regarding the delivery of global surgical care has increased in the 21st century. The aims of this manuscript are to explore the differences in ethical domains in the global cleft surgical literature discussed by authors from high-income countries versus lower-middle-income countries and to elucidate changes in ethical discussions over the last decade.
Methods: A thematic coding analysis was completed using NVivo 12 qualitative data analysis software.
Overcoming resistance to therapy is a major challenge in castration-resistant prostate cancer (CRPC). Lineage plasticity towards a neuroendocrine phenotype enables CRPC to adapt and survive targeted therapies. However, the molecular mechanisms of epigenetic reprogramming during this process are still poorly understood.
View Article and Find Full Text PDFTherapeutic resistance to androgen receptor (AR)-targeting agents remains a significant clinical problem during the treatment of prostate cancer, with the incidence rate of resistant disease increasing as more men are treated with next-generation AR-targeted therapies. Lineage plasticity and progression to neuroendocrine prostate cancer (NEPC) are mechanisms by which prostate tumors lose dependence on androgen signaling and escape treatment. Although many known genetic alterations can predispose tumors to acquiring the NEPC phenotype, it remains unclear what, if any, drivers are essential to this progression.
View Article and Find Full Text PDFAims: This study aims to describe a new method that may be used as a supplement to evaluate humeral rotational alignment during intramedullary nail (IMN) insertion using the profile of the perpendicular peak of the greater tuberosity and its relation to the transepicondylar axis. We called this angle the greater tuberosity version angle (GTVA).
Methods: This study analyzed 506 cadaveric humeri of adult patients.
Symmetry breaking has been shown to reveal interesting phenomena in physical systems. A notable example is the fundamental work of Otto Stern and Walther Gerlach [Stern and Zerlach, Z. Physik9, 349 (1922)10.
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