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Updated: Dec 7, 2025

Long-Term Continuous Measurement of Renal Blood Flow in Conscious Rats
Published on: February 8, 2022
Cerebral blood flow regulation in end-stage kidney disease
Justin D Sprick1,2, Joe R Nocera2,3,4, Ihab Hajjar5
1Division of Renal Medicine, Department of Medicine, Emory University Department of Medicine, Atlanta, Georgia.
Insights
Patients with chronic kidney disease (CKD) and end-stage kidney disease (ESKD) face higher risks of brain issues. Hemodialysis (HD) can reduce cerebral blood flow, potentially causing brain stunning, with compensatory mechanisms needing further study.
Area of Science:
- Nephrology
- Neurology
- Physiology
Background:
- Chronic kidney disease (CKD) and end-stage kidney disease (ESKD) increase risks of cerebrovascular disease and cognitive dysfunction.
- Hemodialysis (HD) in ESKD patients can stress cerebral vasculature due to rapid physiological changes.
- Anemia in ESKD patients contributes to decreased cerebral oxygen delivery, despite resting hyperperfusion.
Purpose of the Study:
- To review the regulation of cerebral blood flow (CBF) in CKD and ESKD.
- To examine how cerebral oxygenation is affected during HD.
- To explore the role of compensatory cerebrovascular mechanisms during HD.
Main Methods:
- Review of existing literature on CBF regulation in CKD/ESKD patients undergoing HD.
- Analysis of factors influencing intradialytic CBF reductions.
- Discussion of potential compensatory mechanisms like cerebral autoregulation and CO2 reactivity.
Main Results:
- ESKD patients exhibit reduced cerebral oxygen delivery and declining cerebral oxygenation during HD, risking cerebral ischemia.
- Intradialytic CBF reduction is linked to decreased cerebral perfusion pressure, influenced by ultrafiltration and blood pressure.
- Compensatory cerebrovascular regulatory mechanisms during HD are not well understood.
Conclusions:
- Cerebral oxygenation may be compromised during HD in ESKD patients.
- Further research is needed to understand alterations in cerebrovascular regulation in CKD/ESKD and during HD.
- Investigating how regulatory mechanisms modulate intradialytic CBF declines is crucial for future work.
Abstract:
Patients with chronic kidney disease (CKD) and end-stage kidney disease (ESKD) experience an increased risk of cerebrovascular disease and cognitive dysfunction. Hemodialysis (HD), a major modality of renal replacement therapy in ESKD, can cause rapid changes in blood pressure, osmolality, and acid-base balance that collectively present a unique stress to the cerebral vasculature. This review presents an update regarding cerebral blood flow (CBF) regulation in CKD and ESKD and how the maintenance of cerebral oxygenation may be compromised during HD. Patients with ESKD exhibit decreased cerebral oxygen delivery due to anemia, despite cerebral hyperperfusion at rest. Cerebral oxygenation further declines during HD due to reductions in CBF, and this may induce cerebral ischemia or "stunning." Intradialytic reductions in CBF are driven by decreases in cerebral perfusion pressure that may be partially opposed by bicarbonate shifts during dialysis. Intradialytic reductions in CBF have been related to several variables that are routinely measured in clinical practice including ultrafiltration rate and blood pressure. However, the role of compensatory cerebrovascular regulatory mechanisms during HD remains relatively unexplored. In particular, cerebral autoregulation can oppose reductions in CBF driven by reductions in systemic blood pressure, while cerebrovascular reactivity to CO2 may attenuate intradialytic reductions in CBF through promoting cerebral vasodilation. However, whether these mechanisms are effective in ESKD and during HD remain relatively unexplored. Important areas for future work include investigating potential alterations in cerebrovascular regulation in CKD and ESKD and how key regulatory mechanisms are engaged and integrated during HD to modulate intradialytic declines in CBF.
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