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Titlebook: Neurosurgical Applications of Transcranial Doppler Sonography; Albrecht G. Harders Book 1986 Springer-Verlag/Wien 1986 Bypass.aneurysm.ang

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發(fā)表于 2025-3-21 17:41:13 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Neurosurgical Applications of Transcranial Doppler Sonography
編輯Albrecht G. Harders
視頻videohttp://file.papertrans.cn/665/664539/664539.mp4
圖書封面Titlebook: Neurosurgical Applications of Transcranial Doppler Sonography;  Albrecht G. Harders Book 1986 Springer-Verlag/Wien 1986 Bypass.aneurysm.ang
描述In 1981, the Norwegian physiologist and cyberneticist, Rune Aaslid, developed a device which made it possible to apply the transcranial Doppler sonographic technique in man. In 1983, Dr. Albrecht Harders took on the project of working out a clinically practicable method that would allow atraumatic measurements to be made of the blood flow velocity in the large branches ofthe circle of Willis. The technique has now become a competitor of the conventional methods of measuring the intracranial hemodynamics, including angiography and the xenon method of cerebral blood flow measurement. Harders proceeded from the assumption that the measurement of the blood flow velocity is more relevant for clinical diagnoses than the usual volume flow measurements. He stresses the very valuable application of the technique in detecting cerebral vasospasm before and after aneurysm surgery. The changes in the blood flow velocities measured by transcranial Doppler sonography in the individual vessel segments of the circle of Willis are interpreted with respect to the various factors that can effect such changes (collateral circulation in the circle of Willis, diameter of the vessel, vascular resistance,
出版日期Book 1986
關(guān)鍵詞Bypass; aneurysm; angiography; arteries; brain; hemodynamics; sonography; surgery; ultrasound; Ultrasonograph
版次1
doihttps://doi.org/10.1007/978-3-7091-8868-2
isbn_softcover978-3-211-81938-8
isbn_ebook978-3-7091-8868-2
copyrightSpringer-Verlag/Wien 1986
The information of publication is updating

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Hemodynamic Principles, and at the end of the tube, r = the radius, π = the viscosity of the blood, η= a constant, and L = the length of the tube. The volume flow I = volume per time (t) and the volume is the product of the cross-section of the tube Q and the length.
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Prinicples of Ultrasound Doppler Sonography,source and receiver approach each other and decreases as they move apart. This physical principle became known as the Doppler effect. Details of the life and work of Doppler have been presented elsewhere by Eden [53].
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Blood Flow Velocity Changes Under Physiological Deviations,n 20–30 years of age than in the group of persons between 60 and 70 years of age: in the MCA (3.5) there was a 20% reduction, in the MCA (4.5) 10%, in the ICA 10%, in the Al 20%, in the P1 15%, and in the basilar artery 25%.
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Introduction,odynamics include angiography, regional cerebral blood flow measurements with the .Xenon method, and the timeconsuming positron emission tomography. Angiography remained the sole method of confirming cerebral vasospasm and subarachnoid hemorrhage after Ecker and Riemenschneider [52, 53] first reported their results of this application.
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