13 research outputs found

    The 4550\u2002\uc5 band system of glyoxal. III. Vibration-rotational analyses for 11 bands of C2D2O2

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    Rotational analyses have been carried out for 11 bands of the 1Au\u20131Ag (\u3c0*\u2013n) transition of glyoxal-d2 in absorption. Approximately 13\u2002000 lines have been assigned, and rotational and vibrational constants determined by computer methods. The following vibrational frequencies have been determined: \u3bd2\u2032\u2002=\u20021394.42\u2002cm 121, \u3bd4\u2032\u2002=\u2002866.52\u2002cm 121, \u3bd5\u2032\u2002=\u2002499.04\u2002cm 121, \u3bd7\u2032\u2002=\u2002217.36\u2002cm 121, \u3bd5\u2033\u2002=\u2002537.29\u2002cm 121, and \u3bd7\u2033\u2002=\u2002117.98\u2002cm 121. The bands are relatively free from perturbations with the exception of a Coriolis interaction involving the torsional vibration \u3bd7(au) and the C\u2014C=O bending vibration \u3bd12(bu).Peer reviewed: YesNRC publication: Ye

    Long QT syndrome-associated mutations in intrauterine fetal death

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    Importance: Intrauterine fetal death or stillbirth occurs in approximately 1 out of every 160 pregnancies and accounts for 50% of all perinatal deaths. Postmortem evaluation fails to elucidate an underlying cause in many cases. Long QT syndrome (LQTS) may contribute to this problem. Objective: To determine the spectrum and prevalence of mutations in the 3 most common LQTS susceptible genes (KCNQ1, KCNH2, and SCN5A) for a cohort of unexplained cases. Design, Setting, and Patients: In this case series, retrospective postmortem genetic testing was conducted on a convenience sample of 91 unexplained intrauterine fetal deaths (mean [SD] estimated gestational age at fetal death, 26.3 [8.7] weeks) that were collected from 2006-2012 by the Mayo Clinic, Rochester, Minnesota, or the Fondazione IRCCS Policlinico San Matteo, Pavia, Italy. More than 1300 ostensibly healthy individuals served as controls. In addition, publicly available exome databases were assessed for the general population frequency of identified genetic variants. Main Outcomes and Measures: Comprehensive mutational analyses of KCNQ1 (KV7.1, LQTS type 1), KCNH2 (HERG/KV11.1, LQTS type 2), and SCN5A (NaV1.5, LQTS type 3) were performed using denaturing high-performance liquid chromatography and direct DNA sequencing on genomic DNA extracted from decedent tissue. Functional analyses of novel mutations were performed using heterologous expression and patch-clamp recording. Results: The 3 putative LQTS susceptibility missense mutations (KCNQ1, p.A283T; KCNQ1, p.R397W; and KCNH2[1b], p.R25W), with a heterozygous frequency of less than 0.05% in more than 10 000 publicly available exomes and absent in more than 1000 ethnically similar control patients, were discovered in 3 intrauterine fetal deaths (3.3% [95% CI, 0.68%-9.3%]). Both K V7.1-A283T (16-week male) and KV7.1-R397W (16-week female) mutations were associated with marked KV7.1 loss-of-function consistent with in utero LQTS type 1, whereas the HERG1b-R25W mutation (33.2-week male) exhibited a loss of function consistent with in utero LQTS type 2. In addition, 5 intrauterine fetal deaths hosted SCN5A rare nonsynonymous genetic variants (p.T220I, p.R1193Q, involving 2 cases, and p.P2006A, involving 2 cases) that conferred in vitro electrophysiological characteristics consistent with potentially pro-arrhythmic phenotypes. Conclusions and Relevance: In this molecular genetic evaluation of 91 cases of intrauterine fetal death, missense mutations associated with LQTS susceptibility were discovered in 3 cases (3.3%) and overall, genetic variants leading to dysfunctional LQTS-associated ion channels in vitro were discovered in 8 cases (8.8%). These preliminary findings may provide insights into mechanisms of some cases of stillbirth

    Radiation Toxicity

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    Quality Management in the ICU: Understanding the Process and Improving the Art

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