Bücher zum Thema „Presque accident“

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1

Chambers, R. S. A finite element analysis of a reactor pressure vessel during a severe accident. Washington, DC: Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1989.

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2

N, Gibson, Institution of Chemical Engineers (Great Britain). North Western Branch. und Institution of Chemical Engineers (Great Britain). Safety and Loss Prevention Group., Hrsg. Hazards from pressure: Exothermic reactions, unstable substances, pressure relief, and accidental discharge : a three-day symposium. Rugby, Warks: Institution of Chemical Engineers, 1987.

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3

United States. Chemical Safety and Hazard Investigation Board. NDK Crystal, Inc., Belvidere, IL: High-pressure vessel rupture, December 7, 2009, one public fatality, one public injury. Washington, DC: U.S. Chemical Safety and Hazard Investigation Board, 2013.

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4

Henry, Robert E. TMI-2: An event in accident management for light-water-moderated reactors. La Grange Park, Ill: American Nuclear Society, 2011.

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5

Board, United States National Transportation Safety. Over-pressure of Peoples Gas Light and Coke Company low-pressure distribution system, Chicago, Illinois, January 17, 1992. Washington, D.C: National Transportation Safety Board, 1993.

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6

United States. National Transportation Safety Board. Over-pressure of Peoples Gas Light and Coke Company low-pressure distribution system, Chicago, Illinois, January 17, 1992. Washington, D.C: National Transportation Safety Board, 1993.

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7

United States. National Transportation Safety Board. Over-pressure of Peoples Gas Light and Coke Company low-pressure distribution system, Chicago, Illinois, January 17, 1992. Washington, D.C: National Transportation Safety Board, 1993.

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8

Brennan, Paul. Blowback: An anecdotal look at pressure equipment and other harmless devices that can kill you! Columbus, OH: The National Board of Boiler and Pressure Vessel Inspectors, 2013.

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9

K, Bhandari S., Yoon K. K, Moinereau Dominique, American Society of Mechanical Engineers. Pressure Vessels and Piping Division. und Pressure Vessels and Piping Conference (2000 : Seattle, Wash.), Hrsg. Severe accidents and other topics in the RPV design, 2000: Presented at the 2000 ASME Pressure Vessels and Piping Conference, Seattle, Washington, July 23-27, 2000. New York: American Society of Mechanical Engineers, 2000.

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10

A, Dermenjian Artin, American Society of Mechanical Engineers. Pressure Vessels and Piping Division. und Pressure Vessels and Piping Conference (1996 : Montréal, Québec), Hrsg. Pressure vessels and piping design, analysis, and severe accidents: Presented at the 1996 ASME Pressure Vessels and Piping Conference, Montreal, Quebec, Canada, July 21-26, 1996. New York, N.Y: American Society of Mechanical Engineers, 1996.

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11

United States. Chemical Safety and Hazard Investigation Board. Pesticide chemical runaway reaction pressure vessel explosion: (two killed, eight injured). [Washington, D.C.]: U.S. Chemical Safety and Hazard Investigation Board, 2011.

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12

R, Copus E., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research. und Sandia National Laboratories, Hrsg. Core-concrete interactions using molten urania with zirconium on a limestone concrete basemat: The SURC-1 experiment. Washington, DC: Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1989.

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13

Ikonen, Kari. Large inelastic deformation analysis of steel pressure vessels at high temperature. Espoo [Finland]: Technical Research Centre of Finland, 2001.

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14

K, Bhandari S., American Society of Mechanical Engineers. Pressure Vessels and Piping Division. und Pressure Vessels and Piping Conference (1998 San Diego, Calif.), Hrsg. Severe accidents and topics in the NESC project: Presented at the 1998 ASME/JSME Joint Pressure Vessels and Piping Conference, San Diego, California, July 26-30, 1998. New York: American Society of Mechanical Engineers, 1998.

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15

Briot, Laurent. La France des faits-divers: Histoires insolites de la presse régionale. Paris: Flammarion, 2010.

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16

Singer, Eleanor. Reporting on risk: How the mass media portray accidents, diseases, disasters, and other hazards. New York: Russell Sage Foundation, 1993.

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17

Ambroise-Rendu, Anne-Claude. Petits récits des désordres ordinaires: Les faits divers dans la presse française, de la IIIe République à la Grande guerre. Paris: Seli Arslan, 2004.

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18

Ambroise-Rendu, Anne-Claude. Petits récits des désordres ordinaires: Les faits divers dans la presse française des débuts de la IIIe République à la Grande Guerre. Paris: Seli Arslan, 2004.

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19

U.S. Nuclear Regulatory Commission. Division of Safety Issue Resolution, Hrsg. Regulatory analysis for the resolution of generic issue 94, "additional low-temperature overpressure protection for light-water reactors". Washington, DC: Division of Safety Issue Resolution, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1989.

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20

Kropp, Paul. Playing chicken. Stourbridge: Robinswood, 2007.

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21

Pressure, Vessels and Piping Conference (1995 Honolulu Hawaii). Service experience, structural integrity, severe accidents, and erosion in nuclear and fossil plants: Presented at the 1995 Joint ASME/JSME Pressure Vessels and Piping Conference, Honolulu, Hawaii, July 23-27, 1995. New York, N.Y: American Society of Mechanical Engineers, 1995.

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22

Stampler, Ann Redisch. Where it began. New York: Simon Pulse, 2012.

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23

Wheeler-Toppen, Jodi. Things that fizz and bubble: Fun projects for curious kids. Mankato, Minn: Capstone Press, 2011.

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24

Etingoff, Kim. Gunman on campus. Broomall: Mason Crest, an imprint of National Highlights, 2015.

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25

Masel, Walters Lynne, Wilkins Lee und Walters Tim, Hrsg. Bad tidings: Communication and catastrophe. Hillsdale, N.J: L. Erlbaum, 1989.

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26

I, Rotberg Robert, und Weiss Thomas George, Hrsg. From massacres to genocide: The media, public policy, and humanitarian crises. Washington, D.C: Brookings Institution, 1996.

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27

Fisher, Nikki. Under Pressure (Accident!). Bloomsbury Publishing PLC, 1995.

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28

Engineer, Institution of Chemical. Hazards from Pressure: Exothermic Reactions, Unstable Substances, Pressure Relief and Accidental Discharge. Pergamon Pr, 1987.

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29

Core-concrete interactions using molten UO₂ with zirconium on a basaltic basemat: The SURC-2 experiment. Washington, DC: Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1989.

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30

Assessment of the hydrogen external tank pressure decay anomaly on space transportation system (STS) 51-L. [Washington, DC]: National Aeronautics and Space Administration, 1989.

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31

Core-concrete interactions using molten urania with zirconium on a limestone concrete basemat: The SURC-1 experiment. Supt. of Docs., U.S. G.P.O. [distributor], 1992.

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32

Alonso, A., und C. Gonz<160>lez. Modelling the Chemical Behaviour of Tellurium Species in the Reactor Pressure Vessel and the Reactor Cooling System Under Severe Accident Conditions. European Communities / Union (EUR-OP/OOPEC/OPOCE), 1991.

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33

Ferioli, Simona, und Lori Shutter. Normal anatomy and physiology of the brain. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199600830.003.0219.

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An understanding of the normal anatomy of the brain is essential to the diagnosis of a number of conditions that may be encountered in patients in the intensive care unit (ICU). Common structural cerebral conditions causing patients to be admitted to the ICU include cerebral trauma (traumatic brain injury), cerebrovascular accidents (both ischaemic and haemorrhagic), and infections. Cerebral conditions with a structural basis occurring after admission to the ICU are not as common as functional abnormalities, such as delirium, and peripheral complications, such as critical illness neuropathy and myopathy. An understanding of brain physiology, in particular factors that control or influence intracranial pressure (ICP) and cerebral blood flow (CBF) underpin much of the theory behind the management of acute brain injuries and syndromes.
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34

Lheureux, Philippe, und Marc Van Nuffelen. Management of benzodiazepine poisoning. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199600830.003.0320.

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Annotation:
The wide use of benzodiazepines is associated with some inconveniences and are most frequently implicated in acute self-poisoning and accidental poisoning in children. Some of them are recognized as submission drugs, used to commit date rape or robbery. Prolonged use of a benzodiazepine leads to dependence, with a risk of developing a life-threatening withdrawal syndrome. Overdose has usually a good prognosis—most patients recover well with careful observation and prevention of complications, although care should be taken with elderly people, and patients with chronic obstructive pulmonary disease or liver dysfunction. Fast-acting agents and co-ingestion of other central nervous system depressants may be present greater risk. Early administration of activated charcoal in patients able to protect their airway is only needed if there are co-ingestants. Flumazenil may help confirm the diagnosis, improve alertness, and prevent the need for respiratory support in some patients, especially after accidental poisoning in children. Contraindications include patients on long-term treatment and/or dependent on benzodiazepines, or those who have simultaneously ingested proconvulsant or prodysrhythmic substances or at risk of increased intracranial pressure.
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35

Quebec) Pressure Vessels and Piping Conference (1996 : Montreal. Pressure Vessels and Piping Design, Analysis and Severe Accidents: Presented at the 1996 Asme Pressure Vessels and Piping Conference, Montreal, Quebec, ... July 21-26, 1996 (Pvp (Series), Vol. 331.). American Society of Mechanical Engineers, 1996.

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36

Singer, Eleanor, und Phyliss M. Endreny. Reporting on Risk: How the Mass Media Portray Accidents, Diseases, Other Hazards. Russell Sage Foundation, 1993.

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37

Paterson, Steve R. Service Experience, Structural Integrity, Severe Accidents, and Erosion in Nuclear and Fossil Plants: Presented at the 1995 Joint Asme/Jsme Pressure V (Pvp). American Society of Mechanical Engineers, 1995.

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38

Moore, Richard D. High Blood Pressure Solution: A Scientifically Proven Program for Preventing Strokes and Heart Disease. Inner Traditions International, Limited, 2001.

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39

Moore, Richard D., und Ph.D., Richard, D. Moore M.D. The High Blood Pressure Solution: A Scientifically Proven Program for Preventing Strokes and Heart Disease. Healing Arts Press, 2001.

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40

Stampler, Ann Redisch. Where It Began. Simon Pulse, 2013.

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41

Calif.) Pressure Vessels and Piping Conference (1998 San Diego. Severe Accidents and Topics in the Nesc Project: Presented at the 1998 Asme/Jsme Joint Pressure Vessels and Piping Conference, San Diego, California, July 26-30, 1998 (P V P). Amer Society of Mechanical, 1998.

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42

Fensch, Thomas. Associated Press Coverage of a Major Disaster: The Crash of Delta Flight 1141. Taylor & Francis Group, 2015.

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43

Fensch, Thomas. Associated Press Coverage of a Major Disaster: The Crash of Delta Flight 1141. Taylor & Francis Group, 2017.

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44

Paech, Michael J., und Patchareya Nivatpumin. Postdural puncture headache. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780198713333.003.0027.

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Postdural puncture headache (PDPH) may follow either deliberate or unintentional (accidental) penetration of the interdigitating meninges, the dura and arachnoid mater. It is one of the most common and clinically important complications of regional anaesthesia and analgesia in the obstetric population. The headache develops as a consequence of cerebrospinal fluid loss, low intracranial pressure and cerebrovascular changes in the upright position and can prove debilitating. The diagnosis is clinical, making thorough assessment and regular review all the more important, to revise treatment plans, exclude rare serious pathology such as subdural haematoma, and avoid misdiagnosis. This chapter reviews the pathophysiology, incidence, risk factors (needle, technical and patient related), features, natural history, diagnosis, and management of PDPH. High level evidence supports prevention by using small gauge, non-cutting spinal needles, but other preventative strategies against either unintentional dural puncture or PDPH are poorly supported. The absent or poor efficacy of measures such as bed rest, hydration, cerebral vasoconstrictor therapy, epidural or intrathecal saline injection, intrathecal catheter placement or prophylactic epidural blood patch, is noted. Validation of better evidence supporting epidural morphine or intravenous cosyntropin is required. Symptomatic treatment of PDPH is also unreliable. Very limited evidence that requires substantiation supports a modest benefit from caffeine, gabapentinoids or intravenous hydrocortisone. The intervention of epidural blood patch is highly likely to relieve post-spinal PDPH, but only completely resolves epidural needle-induced PDPH in 30–50% of cases. Much detail about EBP remains undetermined, but delayed intervention and injection of approximately 20 mL of autologous blood appear appropriate.
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45

Especificaciones técnicas de la OMS para dispositivos automáticos de medición de la presión arterial no invasivos y con brazalete. Organización Panamericana de la Salud, 2020. http://dx.doi.org/10.37774/9789275323052.

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La hipertension es el principal factor de riesgo modificable de algunas enfermedades graves como las enfermedades cardiovasculares (accidentes cerebrovasculares y cardiopatías isquémicas), la preeclampsia y la eclampsia (una causa muy importante de muerte en las embarazadas, así como de retraso del crecimiento fetal y mortinatos) y la enfermedad renal crónica. A nivel mundial, más de mil millones de personas tienen hipertensión, y la prevalencia es mayor en los países de ingresos bajos y medianos. La medición exacta de la presión arterial es esencial para detectar y tratar adecuadamente a las personas con hipertensión, un trastorno que constituye un asesino silencioso que causa pocos síntomas. La falta de acceso a dispositivos de determinación de la presión arterial exactos y asequibles constituye un obstáculo importante para una atención médica adecuada, en particular en los entornos de recursos escasos. La medición manual está siendo reemplazada gradualmente por la medición automatizada debido a los problemas ambientales derivados del mercurio, la falta de calibración y las mediciones incorrectas de los dispositivos aneroides en la práctica clínica, así como por la exactitud uniforme superior que ofrecen los dispositivos automáticos validados. Sin embargo, con frecuencia existe cierta preocupación respecto a la exactitud de los dispositivos automatizados que no se han validado. Este documento actualiza la orientación de la OMS sobre dispositivos de medición de la presión arterial del 2005. También responde a la preocupación existente por la carencia de dispositivos exactos y de buena calidad, especialmente en los países de ingresos bajos y medianos mediante una consulta técnica y examen de expertos. Versión oficial en español de la obra original en inglés: WHO technical specifications for automated non-invasive blood pressure measuring devices with cuff. © World Health Organization, 2020 ISBN 978-92-4-000266-1 (print version)
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46

Brown, Alexander James. Anti-Nuclear Protest in Post-Fukushima Tokyo: Power Struggles. Taylor & Francis Group, 2018.

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47

Brown, Alexander James. Anti-Nuclear Protest in Post-Fukushima Tokyo: Power Struggles. Taylor & Francis Group, 2018.

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48

Brown, Alexander James. Anti-Nuclear Protest in Post-Fukushima Tokyo: Power Struggles. Taylor & Francis Group, 2018.

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49

Japanese Media and the Intelligentsia after Fukushima. Taylor & Francis Group, 2022.

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50

Wilkins, Lee, Tim Walters und Lynne Masel-Walters. Bad Tidings: Communication and Catastrophe. Taylor & Francis Group, 2018.

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