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Predialysis Central Arterial Waveform and Blood Pressure Changes During Hemodialysis

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Journal Sci Rep
Specialty Science
Date 2024 Oct 29
PMID 39468136
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Abstract

To investigate the predictive value of the central arterial waveform for intradialytic blood pressure (BP) change, a total of 152 hemodialysis patients (mean age 68 years) on a thrice-weekly hemodialysis schedule were enrolled, and at both the first and second session of the week, BP and central arterial waveform were measured every 30 min during hemodialysis. In both sessions, a 1-standard deviation increase in baseline subendocardial viability ratio (SEVR), an index of subendocardial perfusion, as well as in baseline systolic BP (SBP) was an independent predictor of maximum SBP decrease ≥ 30 mmHg during hemodialysis. When divided into four groups based on the respective median level of SEVR in the SBP ≥ median and SBP < median groups, intradialytic SBP change was different among the subgroups. Multiple logistic regression analysis revealed that, compared with the SBP < median; low SEVR group, the SBP < median; high SEVR group had lower risk, and the SBP ≥ median; low SEVR group had higher risk of SBP decrease ≥ 30 mmHg, but the risk did not differ from that in the SBP ≥ median; high SEVR group. Predialysis subendocardial perfusion evaluated by SEVR was associated with the maximum intradialytic BP decrease, and evaluation of the central arterial waveform could be used as complementary screening for intradialytic BP change.

References
1.
Hayashi K, Yamamoto T, Takahara A, Shirai K . Clinical assessment of arterial stiffness with cardio-ankle vascular index: theory and applications. J Hypertens. 2015; 33(9):1742-57. DOI: 10.1097/HJH.0000000000000651. View

2.
Mitchelmore A, Stoner L, Lambrick D, Jobson S, Faulkner J . Reliability of oscillometric central blood pressure and central systolic loading in individuals over 50 years: Effects of posture and fasting. Atherosclerosis. 2018; 269:79-85. DOI: 10.1016/j.atherosclerosis.2017.12.030. View

3.
Gotzmann M, Hogeweg M, Seibert F, Rohn B, Bergbauer M, Babel N . Accuracy of fully automated oscillometric central aortic blood pressure measurement techniques. J Hypertens. 2019; 38(2):235-242. DOI: 10.1097/HJH.0000000000002237. View

4.
SARNOFF S, Braunwald E, WELCH Jr G, CASE R, STAINSBY W, Macruz R . Hemodynamic determinants of oxygen consumption of the heart with special reference to the tension-time index. Am J Physiol. 1958; 192(1):148-56. DOI: 10.1152/ajplegacy.1957.192.1.148. View

5.
Fokkema D, Vanteeffelen J, Dekker S, Vergroesen I, Reitsma J, Spaan J . Diastolic time fraction as a determinant of subendocardial perfusion. Am J Physiol Heart Circ Physiol. 2004; 288(5):H2450-6. DOI: 10.1152/ajpheart.00790.2004. View