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Titlebook: Intracranial Pressure VI; Proceedings of the S J. D. Miller,G. M. Teasdale,A. D. Mendelow Conference proceedings 1986 Springer-Verlag Berli

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书目名称Intracranial Pressure VI
副标题Proceedings of the S
编辑J. D. Miller,G. M. Teasdale,A. D. Mendelow
视频videohttp://file.papertrans.cn/474/473152/473152.mp4
图书封面Titlebook: Intracranial Pressure VI; Proceedings of the S J. D. Miller,G. M. Teasdale,A. D. Mendelow Conference proceedings 1986 Springer-Verlag Berli
描述A quarter of a century has elapsed since Nils Lundberg published his thesis "Continuous Recording and Control of Ventricular Fluid Pressure In Neurosurgical Practice". This publication, more than any other, propelled continuous monitoring of intracranial pressure from the status of a research tool to become an integral part of neurosurgical intensive care, with wide application in the management of patients with head injuries, intracranial haemorrhage, brain tumours and disorders of the CSF circulation. At the same time, experimental studies by Langfitt and others stimulated investigations of the relationships between intracranial pressure and cerebral blood flow, intracranial pressure volume relationships and studies of the formation and absorption of CSF. By 1972, Mario Brock had realised the extent of the interest in intracranial pressure research and organised the First International Symposium on Intracranial Pressure in Hanover in that year. This was the start of a series of highly successful meetings, subsequently held in Lund (1974), Groningen (1976), Williamsburg (1979) and Tokyo (1982), the proceed­ ings of which have been published as a uniform series of books. In each of
出版日期Conference proceedings 1986
关键词anesthesia; aneurysm; blood; brain; brain tumor; care; cerebral ischemia; clinical application; head; head in
版次1
doihttps://doi.org/10.1007/978-3-642-70971-5
isbn_softcover978-3-642-70973-9
isbn_ebook978-3-642-70971-5
copyrightSpringer-Verlag Berlin Heidelberg 1986
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G. M. Teasdale,A. D. Mendelow,S. Galbraithtrons traveling through so-called electron lenses, deflection systems, and so on. Instead of considering the shape of the electron trajectories, or ray paths, as caused directly by accelerations due to electric and magnetic forces, the trajectories may be imagined to be the result of refractions of
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A. Marmarou,A. L. Maset,J. D. Ward,R. J. Moulton,H. A. Lutz,G. L. Clifton,D. P. Beckeror EBWD investigations was given at the beginning of this chapter. Following that, characteristics, technical requirements and manufacturing methods of feeding wires used for EBWD technology are proposed and discussed. After that, the main technical features of typical EBWD deposits, namely burn los
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T. Hashimoto,L. H. Pitts,L. Pogliani,H. M. Bartkowskis is because their electrical and magnetic properties show a variety, depending on the constituent elements. Among them, MnSi has been studied most extensively and revealed to be a helical magnet whose Néel temperature T. is 29 K [4]. According to the neutron diffraction experiments performed by ISH
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D. I. Graham,A. E. Lawrence,J. H. Adams,D. Doyle,D. R. McLellanetic moment, the Fermi surface and the cohesive energy of transition metals. Despite its great success, however, the band theory cannot account for physical phenomena such as the Curie-Weiss susceptibility, the persistence of local moments above the Curie temperature and the large magnetic entropy.
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emperature; namely; configuration interaction (CI) and many-body perturbation theory. The second of these approaches applied to molecules has been dealt with in the review by Wilson (1981). Therefore that ground will not be covered in this chapter. However, there has been much progress using the so-
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