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Home blood pressure measurement as a screening tool for hypertension in a web-based worksite health promotion
Maurice A J Niessen1, Niels V van der Hoeven2, Bert-Jan H van den Born3
11 NIPED Research Foundation, Amsterdam, The Netherlands.
Insights
A single home blood pressure measurement (HBPM) duplicate reading can accurately determine hypertension status in most individuals. This simplifies screening, though some may still require the full HBPM series.
Area of Science:
- Cardiovascular Health
- Preventive Medicine
- Occupational Health
Background:
- Current guidelines recommend at least 12 home blood pressure measurements (HBPM).
- Reducing the number of measurements is desirable for screening purposes.
- This study investigated reduced HBPM protocols for hypertension screening in a workplace setting.
Purpose of the Study:
- To derive and validate cut-off values for determining hypertension status after a single duplicate HBPM reading.
- To assess the feasibility of using reduced HBPM for hypertension screening in a working population.
Main Methods:
- Utilized data from 945 employees in a web-based worksite health promotion program.
- Collected six duplicate home measurements over three consecutive days.
- Employed multivariate logistic regression and receiver operating characteristic analysis to derive cut-off values.
Main Results:
- Derived upper (≥150/≥95 mmHg) and lower (<135/<80 mmHg) cut-off values for hypertension after one duplicate reading.
- Hypertension status was determined in 62.5% of participants with acceptable accuracy (1.1% false positive, 4.7% false negative).
- Performance was consistent across cardiometabolic risk levels but less accurate in those with a history of hypertension.
Conclusions:
- A single duplicate HBPM reading is sufficient for accurate hypertension screening in a significant portion of the working population.
- This approach can streamline hypertension screening, although the full HBPM series remains necessary for a subset of individuals.
- Home blood pressure measurement serves as a reliable screening tool for hypertension in occupational settings.
Background:
Guidelines on home blood pressure measurement (HBPM) recommend taking at least 12 measurements. For screening purposes, however, it is preferred to reduce this number. We therefore derived and validated cut-off values to determine hypertension status after the first duplicate reading of a HBPM series in a web-based worksite health promotion programme.
Method:
Nine hundred forty-five employees were included in the derivation and 528 in the validation cohort, which was divided into a normal (n = 297) and increased cardiometabolic risk subgroup (n = 231), and a subgroup with a history of hypertension (n = 98). Six duplicate home measurements were collected during three consecutive days. Systolic and diastolic readings at the first duplicate measurement were used as predictors for hypertension in a multivariate logistic model. Cut-off values were determined using receiver operating characteristics analysis.
Results:
Upper (≥ 150 or ≥ 95 mmHg) and lower limit (<135 and <80 mmHg) cut-off values were derived to confirm or reject presence of hypertension after one duplicate reading. The area under the curve was 0.94 (standard error 0.01, 95% confidence interval 0.93-0.95). In 62.5% of participants, hypertension status was determined, with 1.1% false positive and 4.7% false negatives. Performance was similar in participants with high and low cardiometabolic risk, but worse in participants with a history of hypertension (10.4% false negatives).
Conclusion:
One duplicate home reading is sufficient to accurately assess hypertension status in 62.5% of participants, leaving 37.5% in which the whole HBPM series needs to be completed. HBPM can thus be reliably used as screening tool for hypertension in a working population.
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