Literature DB >> 26994043

Cerebral haemodynamics during experimental intracranial hypertension.

Joseph Donnelly1, Marek Czosnyka1,2, Spencer Harland3, Georgios V Varsos1, Danilo Cardim1, Chiara Robba1, Xiuyun Liu1, Philip N Ainslie4, Peter Smielewski1.   

Abstract

Intracranial hypertension is a common final pathway in many acute neurological conditions. However, the cerebral haemodynamic response to acute intracranial hypertension is poorly understood. We assessed cerebral haemodynamics (arterial blood pressure, intracranial pressure, laser Doppler flowmetry, basilar artery Doppler flow velocity, and vascular wall tension) in 27 basilar artery-dependent rabbits during experimental (artificial CSF infusion) intracranial hypertension. From baseline (∼9 mmHg; SE 1.5) to moderate intracranial pressure (∼41 mmHg; SE 2.2), mean flow velocity remained unchanged (47 to 45 cm/s; p = 0.38), arterial blood pressure increased (88.8 to 94.2 mmHg; p < 0.01), whereas laser Doppler flowmetry and wall tension decreased (laser Doppler flowmetry 100 to 39.1% p < 0.001; wall tension 19.3 to 9.8 mmHg, p < 0.001). From moderate to high intracranial pressure (∼75 mmHg; SE 3.7), both mean flow velocity and laser Doppler flowmetry decreased (45 to 31.3 cm/s p < 0.001, laser Doppler flowmetry 39.1 to 13.3%, p < 0.001), arterial blood pressure increased still further (94.2 to 114.5 mmHg; p < 0.001), while wall tension was unchanged (9.7 to 9.6 mmHg; p = 0.35).This animal model of acute intracranial hypertension demonstrated two intracranial pressure-dependent cerebroprotective mechanisms: with moderate increases in intracranial pressure, wall tension decreased, and arterial blood pressure increased, while with severe increases in intracranial pressure, an arterial blood pressure increase predominated. Clinical monitoring of such phenomena could help individualise the management of neurocritical patients.

Entities:  

Keywords:  Intracranial hypertension; cerebral blood flow; cerebral haemodynamics; intracranial pressure; pressure reactivity; vascular function

Mesh:

Year:  2016        PMID: 26994043      PMCID: PMC5381462          DOI: 10.1177/0271678X16639060

Source DB:  PubMed          Journal:  J Cereb Blood Flow Metab        ISSN: 0271-678X            Impact factor:   6.200


  44 in total

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Journal:  Intensive Care Med       Date:  2014-08-20       Impact factor: 17.440

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4.  Compensatory-Reserve-Weighted Intracranial Pressure and Its Association with Outcome After Traumatic Brain Injury.

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7.  Using computerized tomography perfusion to measure cerebral hemodynamics following treatment of traumatic brain injury in rabbits.

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9.  Impaired cerebral compensatory reserve is associated with admission imaging characteristics of diffuse insult in traumatic brain injury.

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10.  Cerebral Blood Flow in Low Intracranial Pressure Headaches-What is Known?

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