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Impact of Clinic-Based Blood Pressure Approaches on Blood Pressure Measurement
Stephen P Juraschek1, Anthony Ishak2, Kenneth J Mukamal1
1Department of Medicine, Beth Israel Deaconess Medical Center, Boston, Massachusetts, USA.
Insights
Automated office blood pressure (AOBP) measurements more accurately reflect true blood pressure (BP) than manual readings. This study supports using AOBP for improved hypertension diagnosis and management in clinical settings.
Area of Science:
- Cardiology
- Hypertension Research
- Clinical Measurement
Background:
- Clinic-based blood pressure (BP) measurements are crucial for healthcare quality but often inaccurate.
- Guidelines recommend automated office blood pressure (AOBP) devices to enhance BP assessment accuracy.
Purpose of the Study:
- To compare the accuracy of AOBP and manual BP measurements against 24-hour ambulatory blood pressure monitoring (ABPM).
- To evaluate the impact of different BP measurement methods on hypertension prevalence estimation.
Main Methods:
- 103 hypertension clinic patients underwent 3-day evaluation including ABPM, manual BP, and AOBP.
- Measurements were compared to average wake-time systolic BP (SBP) and diastolic BP (DBP) from ABPM.
Main Results:
- Manual BP measurements were significantly higher than ABPM (SBP diff: 5.5 mm Hg, DBP diff: 2.7 mm Hg).
- AOBP measurements showed no significant difference from ABPM (SBP diff: 1.6 mm Hg, DBP diff: -0.5 mm Hg).
- AOBP more accurately estimated hypertension prevalence (31.1%) compared to manual BP (49.5%) versus ABPM (27.2%).
Conclusions:
- Unattended AOBP provides more precise BP estimation than manual measurements.
- AOBP improves the accuracy of diagnosing stage 2 and uncontrolled hypertension.
- Findings support AOBP adoption for reliable clinic-based BP assessments as per guidelines.
Background:
Clinic-based blood pressure (BP) is a closely-tracked metric of health care quality, but is prone to inaccuracy and measurement imprecision. Recent guidelines have advocated for automated office blood pressure (AOBP) devices to improve clinic-based BP assessments.
Methods:
Patients from a single hypertension clinic underwent a 3-day evaluation that included a 24-hour ambulatory blood pressure monitoring (ABPM), 2 manual clinic-based BP measurements (over 2 visits), and an unattended AOBP measurement (single visit). All measurements were compared to the average wake-time systolic BP (SBP) and diastolic BP (DBP) from ABPM.
Results:
Among 103 patients (mean age 57.3 ± 14.8 years, 51% women, 29% black) the average wake-time SBP was 131.3 ± 12.3 mm Hg and DBP was 78.3 ± 9.2 mm Hg. The average of 2 manual BPs was significantly higher than wake-time ABPM with mean differences of 5.5 mm Hg (P < 0.001) for SBP and 2.7 mm Hg (P = 0.002) for DBP. In contrast, the averages of the last 2 AOBP measurements did not significantly differ from ABPM with mean differences of 1.6 mm Hg (P = 0.21) for SBP and -0.5 mm Hg (P = 0.62) for DBP. The estimated prevalence of SBP ≥ 140 or DBP ≥ 90 mm Hg based on wake-time ABPM was 27.2% vs. 49.5% based on the average of 2 manual measurements (difference 22.3%; P < 0.001) and 31.1% based on the average of the last 2 AOBP measurements (difference 3.9%; P = 0.57).
Conclusions:
A single visit, unattended AOBP more precisely estimated BP and the prevalence of stage 2 and uncontrolled hypertension than even the average of 2 manual clinic visits, supporting guideline recommendations to use AOBP for clinic-based BP measurements.
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