Publications by authors named "Gabrielle Meli"

Popliteal artery rupture is a rare but life-threatening complication of total knee arthroplasty. In order to prevent dangerous outcomes, such as amputation or death, immediate vascular intervention is needed. This case highlights the importance of intraoperative vigilance and prompt action to mitigate these risks.

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Over the last century, collaboration between clinical neuropsychologists and neurosurgeons has advanced the state of the science in both disciplines. These advances have provided the field of neuropsychology with many opportunities for innovation in the care of patients prior to, during, and following neurosurgical intervention. Beyond giving a general overview of how present-day advances in technology are being applied in the practice of neuropsychology within a neurological surgery department, this article outlines new developments that are currently unfolding.

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Clinical neuropsychology has been a valuable asset to neurologic surgery, contributing to lateralization and localization of pathologic brain tissue, identification of eloquent cortex, and evaluation of postoperative neuropsychological functioning. Moreover, neuropsychologists provide empirically driven interventions aimed at supporting preparation and/or recovery of neurosurgery patients. Nonetheless, several challenges may limit the reliability, validity, and generalizability of the assessment data obtained and reduce the usefulness of other neuropsychological services provided.

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The formation of 2-substituted benzo[b]furan ions in the electron ionization (EI) mass spectra of a series of 6-alkyl- and 6-aryldibenzo(d,f)(1,3)dioxepines has been studied by means of exact mass measurements and multiple-stage mass spectrometry conditions using an ion trap mass spectrometer. The proposed mechanism of formation of benzo[b]furan ions requires the formation of a spirocyclic cyclohexadienone system, which undergoes elimination of a cyclopentadienone molecule. A parallel with the chemical conversion of arylmethyl-substituted dibenzo(d,f)(1,3)dioxepines into an analogous spirocyclic system was also underlined.

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