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Blood pressure reduction cut-points for orthostatic hypotension in stroke survivors using a sit-up test: a multicentre cross-sectional study
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Objective:
The sit-up test is used to assess orthostatic hypotension in stroke survivors who cannot stand independently without using a tilt table. However, no study has identified the optimal cut-points for orthostatic hypotension using the test. Therefore, this study aimed to examine the decrease in SBP and DBP during the sit-up test to detect orthostatic hypotension in individuals with stroke.
Methods:
Thirty-eight individuals with stroke, recruited from three convalescent rehabilitation hospitals, underwent the sit-up and head-up tilt tests. Systolic and diastolic orthostatic hypotension was defined as a decrease of at least 20 and 10 mmHg in the SBP and DBP, respectively, during the head-up tilt test. The receiver operator characteristic curve with the Youden Index was used to identify the optimal cut-points.
Results:
Eight and three participants showed systolic and diastolic orthostatic hypotension, respectively. The optimal cut-points for orthostatic hypotension using the sit-up test were a decrease of 10 mmHg in SBP [sensitivity = 87.5% (95% confidence interval: 47.4–99.7), specificity = 96.7% (82.8–99.9)] and 5 mmHg in DBP [sensitivity = 100.0% (29.2–100.0), specificity = 88.6% (73.3–96.8)].
Conclusion:
Compared with the conventional cut-points, smaller cut-points of a decrease in SBP and DBP may be better to identify orthostatic hypotension in individuals with stroke using the sit-up test. The findings of this study may provide valuable information for the clinical application of the sit-up test.
Ovid Technologies (Wolters Kluwer Health)
Title: Blood pressure reduction cut-points for orthostatic hypotension in stroke survivors using a sit-up test: a multicentre cross-sectional study
Description:
Objective:
The sit-up test is used to assess orthostatic hypotension in stroke survivors who cannot stand independently without using a tilt table.
However, no study has identified the optimal cut-points for orthostatic hypotension using the test.
Therefore, this study aimed to examine the decrease in SBP and DBP during the sit-up test to detect orthostatic hypotension in individuals with stroke.
Methods:
Thirty-eight individuals with stroke, recruited from three convalescent rehabilitation hospitals, underwent the sit-up and head-up tilt tests.
Systolic and diastolic orthostatic hypotension was defined as a decrease of at least 20 and 10 mmHg in the SBP and DBP, respectively, during the head-up tilt test.
The receiver operator characteristic curve with the Youden Index was used to identify the optimal cut-points.
Results:
Eight and three participants showed systolic and diastolic orthostatic hypotension, respectively.
The optimal cut-points for orthostatic hypotension using the sit-up test were a decrease of 10 mmHg in SBP [sensitivity = 87.
5% (95% confidence interval: 47.
4–99.
7), specificity = 96.
7% (82.
8–99.
9)] and 5 mmHg in DBP [sensitivity = 100.
0% (29.
2–100.
0), specificity = 88.
6% (73.
3–96.
8)].
Conclusion:
Compared with the conventional cut-points, smaller cut-points of a decrease in SBP and DBP may be better to identify orthostatic hypotension in individuals with stroke using the sit-up test.
The findings of this study may provide valuable information for the clinical application of the sit-up test.
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