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  • 1
    In: Interactive CardioVascular and Thoracic Surgery, Oxford University Press (OUP), Vol. 34, No. 2 ( 2022-01-18), p. 297-306
    Abstract: We evaluated 4384 procedures performed between 1957 and 2018, collected in the National Register for Congenital Heart Defects, conducted on 997 patients with 1823 pulmonary valve replacements (PVRs), including 226 implanted via catheter [transcatheter valve (TCV)]. Main study targets are as follows: TCV benefit, valve type durability, decade-wise treatment changes and procedure frequencies over the lifetime of a PVR patient. METHODS We studied TCV impact on surgical valve replacement (via Kaplan–Meier); pulmonary valve type-specific performance (Kaplan–Meier and Cox regressions with age group as stratification or ordinary variable); procedure interval changes over the decades (Kaplan–Meier); procedure load, i.e. frequency of any procedure/surgical PVR/interventional or surgical PVR by patient age (multistate analyses). RESULTS TCV performance was equivalent to surgical PVRs and extended durability significantly. Homografts were most durable; Contegras lasted comparably less in older; and Hancock devices lasted less in younger patients. Matrix P-valves showed poorer performance. Age group stratification improves the precision of valve-specific explantation hazard estimations. The current median interval between procedures is 2.6 years; it became significantly shorter in most age groups below 40 years. At 30 years, 80% of patients had undergone ≥3 procedures, 20% ≥3 surgical PVRs and 42% ≥3 surgical or interventional PVRs. CONCLUSIONS TCVs doubled freedom from explantation of conventional valves. Homografts’ age group-specific explantation hazard ratio was lowest; Matrix P’s hazard ratio was highest. Age-stratified Cox regressions improve the precision of prosthesis durability evaluations. The median time between procedures for PVR patients shortened significantly to 2.6 years. At 30 years, 42% had ≥3 PVRs.
    Type of Medium: Online Resource
    ISSN: 1569-9285
    Language: English
    Publisher: Oxford University Press (OUP)
    Publication Date: 2022
    detail.hit.zdb_id: 2096257-5
    detail.hit.zdb_id: 3167862-2
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  • 2
    In: Microscopy and Microanalysis, Oxford University Press (OUP), Vol. 4, No. 3 ( 1998-06), p. 226-234
    Abstract: Design rules are described here for high-temperature straining stages for transmission electron microscopy. Temperatures above 1000°C can be attained by electron bombardment of the specimen grips. Thermal equilibrium can be reached in a short time by carrying off the heat by water cooling. Some applications of this stage are described. Ferroelastic deformation was observed at 1150°C in t′ and partially stabilized zirconia, which changes the microstructure for successive dislocation plasticity. In the oxide-dispersion-strengthened alloy INCOLOY MA 956, dislocations are impeded by oxide particles and move smoothly between the particles. At high temperatures, both the resting and traveling times control the average dislocation velocity. In MoSi 2 single crystals of a soft orientation, dislocations with 1/2〈111〉 Burgers vectors are created in localized sources and move on {110} planes in a viscous manner. The dislocations in Al-Pd-Mn single quasicrystals are oriented in preferred crystallographic directions and move in a viscous way as well. On the basis of in situ observations, conclusions are drawn for interpreting macroscopic deformation behavior at high temperatures.
    Type of Medium: Online Resource
    ISSN: 1431-9276 , 1435-8115
    Language: English
    Publisher: Oxford University Press (OUP)
    Publication Date: 1998
    detail.hit.zdb_id: 1481716-0
    SSG: 11
    SSG: 12
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