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http://dx.doi.org/10.1016/j.vgie.2024.09.004DOI Listing

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The lateral line system enables fishes and aquatic-stage amphibians to detect local water movement via mechanosensory hair cells in neuromasts, and many species to detect weak electric fields via electroreceptors (modified hair cells) in ampullary organs. Both neuromasts and ampullary organs develop from lateral line placodes, but the molecular mechanisms underpinning ampullary organ formation are understudied relative to neuromasts. This is because the ancestral lineages of zebrafish (teleosts) and (frogs) independently lost electroreception.

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Background: The information on the clinicopathologic/outcome differences between ampullary adenocarcinoma (AC) and pancreatic adenocarcinoma (PC) has been conflicting to the extent that it still is questioned whether ACs need to be recognized separately from PCs.

Methods: The characteristics of 413 ACs were compared with those of 547 PCs.

Results: The ACs had a better prognosis than the PCs (5-year survival, 57 % vs 23 %; p < 0.

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  • * A case study details a 40-year-old male with painless jaundice and dizziness, diagnosed with stage III intestinal-type periampullary adenocarcinoma after imaging and the Whipple procedure.
  • * The report emphasizes the need for tailored treatment options based on tumor type, discussing clinical symptoms, pathogenesis, and current therapies for managing this cancer.
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Background: Ampullary adenomas are lesions at the duodenum's major papilla commonly associated with familial adenomatous polyposis (FAP) but may also occur sporadically. Historically, ampullary adenomas were removed surgically, however endoscopic resection has become the preferred method of resection. Most of the literature on management of ampullary adenomas are small single-center retrospective reviews.

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