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1

Ando, Samon. Head-wave diffraction pressure computer program HEWDIP. Dartmouth, N.S: Defence Research Establishment Atlantic, 1990.

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2

International Symposium on Intracranial Pressure (6th 1985 Glasgow). Intracranial pressure 6. Berlin: Springer-Verlag, 1986.

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3

Convertino, Victor A. Responses to LBNP in men with varying profiles of strength and aerobic capacity: implications for flight crews. Kennedy Space Center: John F. Kennedy Space Center, 1993.

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4

Korth, G. E. Metallographic and hardness examinations of TMI-2 lower pressure vessel head samples. Washington, DC: Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1994.

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5

Honeyman, Rex P. Pressure head fluctuations of the Fox Hills-Hell Creek aquifer in McKenzie County, North Dakota. [Bismarck, N.D.]: North Dakota State Water Commission, 2007.

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6

Honeyman, Rex P. Pressure head fluctuations of the Fox Hills-Hell Creek aquifer in the Knife River Basin, North Dakota. [Bismarck, N.D.]: North Dakota State Water Commission, 2007.

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7

Honeyman, Rex P. Pressure head fluctuations of the Fox Hills-Hell Creek aquifer in Billings, Golden Valley, and Slope Counties, North Dakota. [Bismarck, N.D.]: North Dakota State Water Commission, 2007.

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8

Sihera, Elaine. Heads under pressure. Marlow: Impact Connections, 1989.

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9

Fundamentals of heat exchanger and pressure vessel technology. Washington: Hemisphere Pub. Corp., 1986.

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10

Hendricks, Robert C. Two-phase flows and heat transfer within systems with ambient pressure above the thermodynamic critical pressure. [Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1986.

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11

Hendricks, Robert C. Two-phase flows and heat transfer within systems with ambient pressure above the thermodynamic critical pressure. [Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1986.

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12

Hendricks, Robert C. Two-phase flows and heat transfer within systems with ambient pressure above the thermodynamic critical pressure. [Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1986.

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13

Gupta, J. P. Working with heat exchangers: Questions and answers. New York: Hemisphere Pub. Co., 1990.

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14

Jean-Pierre, Maury. Heat and cold. New York: Barron's, 1989.

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15

Saibaba, N. Microstructural studies of heat treated Zr-2.5 Nb alloy for pressure tube applications. Mumbai: Bhabha Atomic Research Centre, 2010.

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16

Barnes-Svarney, Patricia L. Born of heat and pressure: Mountains and metamorphic rocks. Hillside, N.J., U.S.A: Enslow Publishers, 1991.

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17

Dokos, Dimitrios. Predicting heat transfer in cooling channels for pressure die casting. Manchester: UMIST, 1995.

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18

Saha, Sujoy Kumar, i Gian Piero Celata. Heat Transfer and Pressure Drop in Flow Boiling in Microchannels. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-20285-3.

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19

Zheng, Jinyang, i Keming Li. New Theory and Design of Ellipsoidal Heads for Pressure Vessels. Singapore: Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-0467-6.

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20

Kortz, Sebastian. Zum Einfluss der Stickstoffdissoziation auf die Wechselwirkung zwischen Stosswellen in Hochenthalpiestromungen. Koln, Germany: DLR, 1993.

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21

Kumakawa, Akinaga. Characteristics of heat transfer to nickel plated chamber walls of high pressure rocket combustors. Tokyo: National Aerospace Laboratory, 1991.

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22

Pressure, Vessels and Piping Conference (2001 Atlanta Ga ). Pressure vessel and piping design and analysis, 2001: Presented at the 2001 ASME Pressure Vessels and Piping Conference, Atlanta, Georgia, July 22-26, 2001. New York, N.Y: American Society of Mechanical Engineers, 2001.

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23

Pavese, Franco. Modern Gas-Based Temperature and Pressure Measurements. Wyd. 2. Boston, MA: Springer US, 2013.

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24

Nie, Xiu-Rong. Optimisation strategies for heat exchanger network design considering pressure drop aspects. Manchester: UMIST, 1998.

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25

Murray, Paul William. Flow and pressure drop on the shellside of cylindrical heat exchangers. Birmingham: Aston University. Department of Chemical Engineering and applied Chemistry, 1988.

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26

Han, J. C. Local heat/mass transfer and pressure drop in a two-pass rib-roughened channel for turbine airfoil cooling. [Washington, D.C.]: National Aeronautics and Space Administration, 1988.

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27

Ando, Samon. Wave-induced pressures on ships at high forward speeds in head seas. Dartmouth, N.S: Defence Research Establishment Atlantic, 1992.

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28

Jankovsky, Robert S. High-area-ratio rocket nozzle at high combustion chamber pressure--experimental and analytical validation. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 1999.

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29

Pressure, Vessels and Piping Conference (1990 Nashville Tenn ). Transient thermal hydraulics and resulting loads on vessel and piping systems, 1990: Presented at the 1990 Pressure Vessels and Piping Conference, Nashville, Tennessee, June 17-21, 1990. New York, N.Y: American Society of Mechanical Engineers, 1990.

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30

Pressure Vessels and Piping Conference (1989 Honolulu, Hawaii). Transient thermal-hydraulics in vessel and piping systems: Presented at the 1989 ASME Pressure Vessels and Piping Conference--JSME co-sponsorship, Honolulu, Hawaii, July 23-27, 1989. New York, N.Y: American Society of Mechanical Engineers, 1989.

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31

Abdulagatov, I. M., A. I. Abdulagatov i Gennadiĭ Vladimirovich Stepanov. Isochoric heat capacity of fluids and fluid mixtures in the critical and supercritical regions: Experiment and theory. Hauppauge, N.Y: Nova Science Publishers, 2011.

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32

Merrow, JL. Pressure Head. Riptide Publishing, 2017.

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33

Miller, J. D., G. M. Teasdale, J. O. Rowan, S. L. Galbraith i A. D. Mendelow. Intracranial Pressure VI (International Symposium on Intracranial Pressure//Intracranial Pressure). Springer-Verlag, 1986.

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34

E, Pugh C., Raney S. J, International Atomic Energy Agency, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering Technology i Oak Ridge National Laboratory, red. Proceedings of the IAEA Specialists' Meeting on Cracking in LWR RPV Head Penetrations: Held at ASTM headquarters, Philadelphia, Pennsylvania, May 2-3, 1995. Washington, DC: Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1996.

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35

O’Neal, M. Angela. Ringing in the Ears and Pain in the Head. Redaktor Angela O’Neal. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780190609917.003.0015.

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The case illustrates the classic clinical features of a low-pressure headache. The pathophysiology results from the loss of cerebrospinal fluid (CSF). This causes sagging of the brain, stretching of the bridging veins, and venodilatation. The clinical history is of a headache that is worse in the upright position and remits when the patient is supine. Due to the connection of the perilymphatic fluid and CSF, postural tinnitus is a frequent symptom. Risk factors for low-pressure headache include those that are patient-specific: female sex, low body mass index, prior history of a low-pressure headache, and an underlying headache disorder. Operator-specific factors that decrease the risk of a postdural puncture headache (PDPH) include greater operator experience and the use of a smaller-gauge, non-cutting lumbar puncture needle. The best treatment for low-pressure headache is a blood patch with resolution in over 90% of low-pressure headaches.
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36

Relationship of Protective Mask Seal Pressure to Fit Factor and Head Harness Strap Stretch. Storming Media, 1999.

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37

Was That a Balloon or Did Your Head Just Pop?: Lettin' the Air Out of Popularity Bubbles & Peer Fear (Johnson, Kevin, Early Teen Devotionals.). Bethany House Publishers, 1999.

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38

Stockman, A. Signal analysis of physiological control: An investigation of blood pressure control and intracranial pressure in man with clinical applications for hypertensive, skin burns and head injured patients. Bradford, 1987.

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39

Center, Goddard Space Flight, red. Building satellites is easier. Greenbelt, Md: National Aeronautics and Space Administration, Goddard Space Flight Center, 1996.

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40

I, Grigorʹev A., i Ames Research Center, red. Joint U.S./U.S.S.R. study: Comparison of effects of horizontal and head-down bed rest. Washington, D.C: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Division, 1990.

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41

I, Grigorʹev A., i Ames Research Center, red. Joint U.S./U.S.S.R. study: Comparison of effects of horizontal and head-down bed rest. Washington, D.C: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Division, 1990.

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42

Joint U.S./U.S.S.R. study: Comparison of effects of horizontal and head-down bed rest. Washington, D.C: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Division, 1990.

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43

Harley, Kim, i Sue Jones. Neurological and spinal surgery. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199642663.003.0023.

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Neurological assessment is performed on admission for surgery, as a routine part of medical examination. This is done to diagnose whether symptoms of illness in the patient are due to neurological conditions and, if so, where in the nervous system the pathological lesions are located. Hydrocephalus is either an acute or chronic condition whereby the cerebrospinal fluid pressure rises, causing symptoms of raised intracranial pressure. Patients at risk of raised intracranial pressure should be nursed by staff trained and experienced in neurological assessment using the Glasgow coma scale. This chapter looks at neurological assessment, raised intracranial pressure, head injuries, and brain and spinal tumours. This chapter also discusses the management of subarachnoid haemorrhage, cerebral aneurysm, arteriovenous malformations, and epilepsy. Finally, the chapter provides an overview of degenerative diseases of the spine and peripheral nerve injury.
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44

Blazeck, Alice Maus. THE EFFECTS ON HEART RATE, HEART RHYTHM, AND ARTERIAL BLOOD PRESSURE OF THREE PROCEDURES USED BY ACUTE MYOCARDIAL INFARCTION PATIENTS TO MOVE TO THE HEAD OF THE BED. 1987.

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45

Healthiest You Ever 365 Ways To Lose Weight Build Strength Boost Your Bmi Lower Your Blood Pressure Increase Your Stamina Improve Your Cholesterol Levels And Energize From Head To Toe. Adams Media Corporation, 2011.

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46

Reynolds, Susan, Meera Lester, Murdoc Khaleghi i Brett Aved. Healthiest You Ever: 365 Ways to Lose Weight, Build Strength, Boost Your BMI, Lower Your Blood Pressure, Increase Your Stamina, Improve Your Cholesterol Levels, and Energize from Head to Toe! Adams Media Corporation, 2011.

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47

Gupta, J. P. Fundamentals of heat exchanger and pressure vessel technology. Springer, 1985.

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48

Thomas, Keller, red. Under pressure: Cooking sous vide. New York, NY: Workman Pub. Company, 2008.

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49

P, Gupta J., red. Working with heat exchangers. Hemisphere, 1990.

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50

Gibson, Alistair A., i Peter J. D. Andrews. Management of traumatic brain injury. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199600830.003.0343.

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Traumatic brain injury (TBI) is a leading cause of death and disability worldwide and although young male adults are at particular risk, it affects all ages. TBI often occurs in the presence of significant extracranial injuries and immediate management focuses on the ABCs—airway with cervical spine control, breathing, and circulation. Best outcomes are achieved by management in centres that can offer comprehensive neurological critical care and appropriate management for extracranial injuries. If patients require transfer from an admitting hospital to a specialist centre, the transfer must be carried out by an appropriately skilled and equipped transport team. The focus of specific TBI management is on the avoidance of secondary injury to the brain. The principles of management are to avoid hypotension and hypoxia, control intracranial pressure and maintain cerebral perfusion pressure above 60 mmHg. Management of increased intracranial pressure is generally by a stepwise approach starting with sedation and analgesia, lung protective mechanical ventilation to normocarbia in a 30° head-up position, maintenance of oxygenation, and blood pressure. Additional measures include paralysis with a neuromuscular blocking agent, CSF drainage via an external ventricular drain, osmolar therapy with mannitol or hypertonic saline, and moderate hypothermia. Refractory intracranial hypertension may be treated surgically with decompressive craniectomy or medically with high dose barbiturate sedation. General supportive measures include provision of adequate nutrition preferably by the enteral route, thromboembolism prophylaxis, skin and bowel care, and management of all extracranial injuries.
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