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Published on: October 22, 2014
Microvascular narrowing and BP monitoring: A single centre observational study
Fariya Ali1, Mark Tacey1, Nick Lykopandis2
1The University of Melbourne Department of Medicine, Northern Health, Epping, Victoria, Australia.
Insights
Retinal arteriole narrowing may predict left ventricular hypertrophy (LVH) as accurately as blood pressure (BP) monitoring. This finding suggests microvascular calibre measurement could aid hypertension assessment.
Area of Science:
- Ophthalmology
- Cardiology
- Hypertension Research
Background:
- Inadequately controlled blood pressure (BP) affects half of hypertensive individuals due to ineffective monitoring methods.
- End-organ damage, including retinal microvascular abnormalities and left ventricular hypertrophy (LVH), is a critical complication of hypertension.
- Current BP monitoring methods have limitations in accurately assessing long-term BP control and predicting target organ damage.
Purpose of the Study:
- To investigate the relationship between clinic and ambulatory BP levels and end-organ damage (retinal microvascular abnormalities and LVH).
- To assess the predictive value of retinal microvascular calibre for LVH.
- To explore the potential of microvascular calibre measurement as a tool for hypertension assessment and monitoring.
Main Methods:
- A single-centre study involving 131 hypertensive individuals undergoing 24-hour ambulatory BP monitoring.
- Retinal images were analyzed for microvascular retinopathy and vessel calibre using a semi-automated method.
- Echocardiography was used to assess for left ventricular hypertrophy (LVH).
Main Results:
- All participants exhibited mild or moderate microvascular retinopathy.
- Retinal arteriole calibre was reduced in subjects with elevated mean 24-hour awake systolic BP (≥135 mm Hg) and in those with LVH.
- Retinal arteriole narrowing was found to be a significant predictor of LVH, with predictive accuracy comparable to clinic and ambulatory BP measurements.
Conclusions:
- Retinal arteriole narrowing may be an accurate and convenient indicator for predicting left ventricular hypertrophy (LVH) in hypertensive patients.
- Microvascular calibre measurement warrants further investigation for routine use in hypertension assessment and monitoring.
- This approach could offer a valuable adjunct to traditional BP monitoring for identifying individuals at risk of cardiovascular complications.
Introduction:
Half of all hypertensive individuals have inadequately-controlled BP because monitoring methods are ineffective. This single centre study examined consecutive subjects undergoing 24 hour BP measurements for clinic and ambulatory BP levels, and for end-organ damage (retinal microvascular abnormalities and left ventricular hypertrophy, LVH, > 1.1 cm). Retinal images were graded for microvascular retinopathy (Wong and Mitchell classification), and vessel calibre using a semiautomated method. Features were compared using chi-squared, Fisher's exact or the student's t test.
Methods:
One hundred and thirty-one individuals (59 male, 45.0%, mean age 61.7 ± 14.5 years) were studied. Ninety-nine (76.2%) had a clinic BP ≥ 140/90 mm Hg, 84 (64.6%) had a mean awake systolic BP ≥ 135 mm Hg, 100 (76.9%) had a mean sleeping systolic BP ≥ 120 mm Hg, and 100 (76.2%) had abnormal nocturnal BP dipping patterns. Sixty-nine individuals had undergone echocardiography and 23 (33.3%) had LVH.
Results:
All participants had a mild (88.5%) or moderate (11.5%) microvascular retinopathy. Moderate microvascular retinopathy was found in 86.7% of those with a mean awake systolic BP ≥135 mm Hg (p = 0.058) but was not associated with other abnormal BP measurements, abnormal dipping patterns or LVH. However retinal arteriole calibre was reduced in subjects with a mean 24 hour awake systolic BP ≥ 135 mm Hg (p = 0.05). Retinal arteriole calibre was smaller in subjects with LVH (128.1 ± 13.5 μm compared with 137.6 ± 14.1 μm in normals, p = 0.014). Venular calibre was also less in subjects with LVH (185.4 ± 24.6 μm compared with 203.0 ± 27.2 μm in normals, p = 0.016). Arteriole narrowing predicted an increased risk of LVH (AUC 0.69, 95%CI 0.55 to 0.83) that was comparable with 24 hour systolic BP ≥130 mm Hg (AUC 0.68, 95%CI 0.53 to 0.82) and mean awake systolic BP ≥135 mm Hg (AUC 0.68, 95%CI 0.54 to 0.83).
Conclusions:
This study suggests that retinal arteriole narrowing may be equally accurate in predicting LVH as any clinic or ambulatory BP measurement. The convenience and accuracy of microvascular calibre measurement mean that it should be investigated further for a role in routine hypertension assessment and monitoring.
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