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Research ArticleSpine Imaging and Spine Image-Guided Interventions
Open Access

Assessment of Craniospinal Pressure-Volume Indices

A. Wåhlin, K. Ambarki, R. Birgander, N. Alperin, J. Malm and A. Eklund
American Journal of Neuroradiology October 2010, 31 (9) 1645-1650; DOI: https://doi.org/10.3174/ajnr.A2166
A. Wåhlin
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K. Ambarki
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R. Birgander
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N. Alperin
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J. Malm
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A. Eklund
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Abstract

BACKGROUND AND PURPOSE: The PVICC of the craniospinal compartment defines the shape of the pressure-volume curve and determines the damping of cyclic arterial pulsations. Despite no reports of direct measurements of the PVICC among healthy elderly, it is believed that a change away from adequate accommodation of cardiac-related pulsations may be a pathophysiologic mechanism seen in neurodegenerative disorders such as Alzheimer disease and idiopathic normal pressure hydrocephalus. In this study, blood and CSF flow measurements are combined with lumbar CSF infusion measurements to assess the craniospinal PVICC and its distribution of cranial and spinal compartments in healthy elderly.

MATERIALS AND METHODS: Thirty-seven healthy elderly were included (60–82 years of age). The cyclic arterial volume change and the resulting shift of CSF to the spinal compartment were quantified by PC-MR imaging. In addition, each subject underwent a lumbar CSF infusion test in which the magnitude of cardiac-related pulsations in intracranial pressure was quantified. Finally, the PVI was calculated by using a mathematic model.

RESULTS: After excluding 2 extreme values, the craniospinal PVICC was calculated to a mean of 9.8 ± 2.7 mL and the estimated average 95% confidence interval of individual measurements was ± 9%. The average intracranial and spinal contributions to the overall compliance were 65% and 35% respectively (n = 35).

CONCLUSIONS: Combining lumbar CSF infusion and PC-MR imaging proved feasible and robust for assessment of the craniospinal PVICC. This study produced normative values and showed that the major compensatory contribution was located intracranially.

Abbreviations

ECG
electrocardiogram
ΔICP
intracranial pulse pressure magnitude
ΔPVICC
relative width of the 95% confidence interval of the calculated PVICC
ΔRPPC
width of the 95% confidence interval of the calculated RPPC
ΔVART
arterial volume change
ΔVbolus
volume infused in a lumbar CSF bolus infusion test
ΔVIC
volume accommodated by the intracranial compartment
ΔVSC
volume displaced to the spinal compartment
ICP
intracranial pressure
ICPend
ICP after lumbar CSF bolus infusion test
ICPstart
ICP before lumbar CSF bolus infusion test
P1 and P0
pressure constants
PC-MR imaging
phase contrast MR imaging
PVI
pressure-volume index
PVIbolus
PVI of the craniospinal cavity estimated from a lumbar CSF bolus infusion test
PVICC
PVI of the craniospinal cavity
PVIIC
PVI of the intracranial compartment
PVISC
PVI of the spinal compartment
RPPC
relative pulse-pressure coefficient
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American Journal of Neuroradiology: 31 (9)
American Journal of Neuroradiology
Vol. 31, Issue 9
1 Oct 2010
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Cite this article
A. Wåhlin, K. Ambarki, R. Birgander, N. Alperin, J. Malm, A. Eklund
Assessment of Craniospinal Pressure-Volume Indices
American Journal of Neuroradiology Oct 2010, 31 (9) 1645-1650; DOI: 10.3174/ajnr.A2166

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Assessment of Craniospinal Pressure-Volume Indices
A. Wåhlin, K. Ambarki, R. Birgander, N. Alperin, J. Malm, A. Eklund
American Journal of Neuroradiology Oct 2010, 31 (9) 1645-1650; DOI: 10.3174/ajnr.A2166
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