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ICP and CBF Regulation: A new Hypothesis to Explain the “Windkessel” Phenomenon

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Intracranial Pressure and Brain Biochemical Monitoring

Part of the book series: Acta Neurochirurgica Supplements ((NEUROCHIRURGICA,volume 81))

Summary

The brain tamponade represents the final condition of a progressive intracranial pressure (ICP) increase up to values close to arterial blood pressure (BP) producing a reverberating flow pattern in the cerebral arteries with no net flow. This finding implies intracranial volume changes, therefore a full application of the Monro-Kellie doctrine is impossible. To resolve this contradiction, in eight pigs a reversible condition of brain tamponade was produced by infusing saline into a cerebral ventricle. The following parameters were measured: BP in the common carotid artery, ICP by the same needle utilised for the infusion, arterial and venous blood flow velocity (BFV) at, respectively, internal carotid artery (ICA) and sagittal sinus (SS) site by ultrasound technique.

When ICP approached carotid BP values, reverberating BFV waves both at ICA and SS site were simultaneously observed. The arterial and venous reverberating waves appeared to be almost exactly superimposable, with a delay of about 40 msec. This synchronism between the pulsatile arterial and venous BFV indicates that the residual pulsation, still occurring at the arterial proximal level, is compensated by a passive compression-distension of the SS with no blood volume (that is net flow) crossing the intracranial vasculature.

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References

  1. Aaslid R, Newell DW, Stooss R, Sorteberg W, Lindegaard K-F (1991) Assessment of cerebral autoregulation dynamics from simultaneous arterial and venous transcranial doppler recordings in humans. Stroke 22: 1148–1154

    Article  PubMed  CAS  Google Scholar 

  2. Anile C, Rinaldi A, Mangiola A, Amante P, Palma P, Maira G, Delia Corte F, Calimici R and Ferraresi A (1993) Biomechanical regulation of cerebral blood flow. In: Avezaat CJJ, van Eijnd-hoven JHM, Maas AIR and Tans JThJ (eds) Intracranial pressure VIII. Springer, Berlin Heidelberg New York Tokyo, pp 265–268

    Google Scholar 

  3. Hassler W, Steinmetz H, Pirschel J (1989) Transcranial doppler study of intracranial circulatory arrest. J Neurosurg 71: 195–201

    Article  PubMed  CAS  Google Scholar 

  4. Lindegaard K-F, Grip A, Nornes H (1980) Precerebral hemodynamics in brain tamponade. Part 2: experimental studies. Neuro-chirurgia (Stuttg) 23: 187–196

    CAS  Google Scholar 

  5. Rosner MJ (1986) The vasodilatory cascade and intracranial pressure. In: Miller JD, Teasdale GM, Rowan JD, Galbraith SL, Mendelow AD (eds) Intracranial pressure VI. Springer, Berlin Heidelberg New York Tokyo, pp 137–141

    Google Scholar 

  6. Shapiro HM, Langfitt TW, Weinstein JD (1966) Compression of cerebral vessels by intracranial hypertension. II. Morphological evidence for collapse of vessels. Acta Neurochir (Wien) 12: 223–233

    Article  Google Scholar 

  7. Starling EH (1912) Principles of human physiology. J A Churchill, London

    Google Scholar 

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© 2002 Springer-Verlag

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Carmelo, A., Ficola, A., Fravolini, M.L., La Cava, M., Maira, G., Mangiola, A. (2002). ICP and CBF Regulation: A new Hypothesis to Explain the “Windkessel” Phenomenon. In: Czosnyka, M., Pickard, J.D., Kirkpatrick, P.J., Smielewski, P., Hutchinson, P. (eds) Intracranial Pressure and Brain Biochemical Monitoring. Acta Neurochirurgica Supplements, vol 81. Springer, Vienna. https://doi.org/10.1007/978-3-7091-6738-0_29

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  • DOI: https://doi.org/10.1007/978-3-7091-6738-0_29

  • Publisher Name: Springer, Vienna

  • Print ISBN: 978-3-7091-7397-8

  • Online ISBN: 978-3-7091-6738-0

  • eBook Packages: Springer Book Archive

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