Introduction: Advancements in robotic technology have revolutionized general surgery, with new platforms and continuous improvements enhancing surgical procedures. Our unit adopted the Da Vinci Si model in 2012 and later the X model for various abdominal surgeries. In early 2023, we integrated the Hugo RAS system by Medtronic into our practice following comprehensive training.
View Article and Find Full Text PDFBackground: Transarterial radioembolization (TARE) is used to treat primary and secondary malignancies in the liver that are not amenable to curative resection. Accumulating evidence demonstrates the efficacy and safety of TARE with yttrium-90 (Y), which is the most widely used radionuclide for TARE, and later with holmium-166 (Ho) for various indications. However, the safety and efficacy of Ho TARE in patients with intrahepatic cholangiocarcinoma (ICC) remains to be studied.
View Article and Find Full Text PDFConnexin proteins can form hexameric hemichannels and gap junctions that mediate paracrine and direct intercellular communication, respectively. Gap junction activity is crucial for the maintenance of hepatic homeostasis, while connexin hemichannels become particularly active in liver disease, such as hepatitis, fibrosis, cholestasis or even hepatocellular carcinoma. Channels consisting of connexin-like proteins named pannexins have been directly linked to liver inflammation and cell death.
View Article and Find Full Text PDFPurpose: Third-generation total ankle replacement (TAR) is an increasingly popular and effective treatment for end-stage osteoarthritis, yet identifying causes of failure remains challenging. We evaluated integrated bone SPECT/CT in recurrent pain after TAR by validating a standardized reporting scheme, identifying uptake patterns, and assessing diagnostic performance and impact on clinical management.
Patients And Methods: A total of 24 TARs in 16 patients with persistent or recurrent pain received integrated bone SPECT/CT using diagnostic CT settings.
Connexin proteins are the building blocks of hemichannels, which dock further between adjacent cells to form gap junctions. Gap junctions control the intercellular exchange of critical homeostasis regulators. By doing so, gap junctions control virtually all aspects of the hepatic life cycle.
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