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Intracranial pressure waveform in patients with essential hypertension
Matheus Martins da Costa1, Ana Luiza Lima Sousa1, Mikaelle Costa Correia1
1Hypertension League-Cardiovascular Section and Health Sciences Post Graduation Program, Federal University of Goias, Goiânia, Brazil.
Insights
Hypertension significantly increases intracranial hypertension risk, especially in women over 65. This study highlights the need to monitor intracranial pressure in hypertensive patients to understand brain protection mechanisms.
Area of Science:
- Neurology
- Cardiology
- Biomedical Engineering
Background:
- Essential hypertension is strongly linked to cerebrovascular diseases.
- The precise mechanisms underlying this association remain poorly understood.
- Investigating intracranial pressure dynamics offers insight into hypertension's neurological impact.
Purpose of the Study:
- To assess intracranial pressure waveforms in patients with long-term essential hypertension.
- To utilize the non-invasive brain4care (b4c) device for intracranial pressure evaluation.
- To identify potential correlations between hypertension and intracranial pressure abnormalities.
Main Methods:
- A cross-sectional study involving 391 hypertensive patients.
- Non-invasive intracranial pressure monitoring using the brain4care device measuring skull bone displacements.
- Analysis of P2/P1 ratio and Time to Peak (TTP) to assess intracranial pressure and compliance.
Main Results:
- 45.6% of hypertensive patients exhibited intracranial hypertension (ICHT), with a P2/P1 ratio ≥1.2.
- Intracranial compliance disturbance was observed in 32.7% of patients.
- Females (50.3%) and individuals over 65 showed a higher prevalence of ICHT.
Conclusions:
- A high prevalence of intracranial hypertension exists in long-term hypertensive patients, particularly women over 65.
- These findings underscore the importance of evaluating intracranial pressure in hypertensive individuals.
- The study raises questions about the efficacy of cerebral autoregulation and vascular barriers in protecting the brain under hypertensive conditions.
Background:
There is a strong association between hypertension and cerebrovascular diseases, but most of the mechanistic bases to justify this correlation remains misunderstood.
Objective:
To evaluate intracranial pressure waveform in long-term essential hypertensive patients with a non-invasive device, brain4care (b4c).
Methods:
Cross-sectional study in patients with hypertension. Office blood pressure was measured with an automatic oscillometric device. Intracranial pressure evaluation was acquired through a strain sensor that could detect and monitor nanometric skull bone displacements for each cardiac cycle. Under normal physiological conditions, P1 is greater than P2, and the normal P2/P1 ratio is <1. Time to peak (TTP) is the measurement in seconds of the beginning of waveform inscription until P1 and normal values are <0.20 s. The cut-off points ≥1.2 and ≥0.25 s were used to define intracranial hypertension (ICHT).
Results:
391 consecutive patients were evaluated (75% female, mean age 64.3 ± 12.0 years). Mean value of P2/P1 ratio was 1.18 ± 0.25 and TTP 0.18 ± 0.63 s The obtained P2/P1 ratios were divided in three categories according to results of previous studies of normalcy (<1.0), intracranial compliance disturbance (1.0-1.19) and ICHT (≥1.2). Normal intracranial pressure was observed in 21.7% of patients, intracranial compliance disturbance in 32.7% and intracranial hypertension in 45.6%. Females showed a higher prevalence of ICHT (50.3%).
Conclusion:
The prevalence of 45.6% intra-cranial hypertension in patients with long-term hypertension, particularly in women, and in those over 65 years old, emphasizes the importance of evaluate intracranial pressure behaviour in these patients and raise a question concerning the real ability of cerebral autoregulation and vascular barriers to protect the brain.
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