Randhay Ashveer, Eldehni Mohamed Tarek, Selby Nicholas M
Centre for Kidney Research and Innovation, School of Medicine, University of Nottingham, Nottingham, UK.
Department of Renal Medicine, Royal Derby Hospital, Derby, UK.
Semin Dial. 2025 Jan-Feb;38(1):62-70. doi: 10.1111/sdi.13185. Epub 2023 Nov 23.
A number of systems of feedback control during dialysis have been developed, which have the shared characteristic of prospectively measuring physiological parameters and then automatically altering dialysis parameters in real time according to a pre-specified dialysis prescription. These include feedback systems aimed at reducing intradialytic hypotension based on relative blood volume monitoring linked to adjustments in ultrafiltration and dialysate conductivity, and blood temperature monitoring linked to alterations in dialysate temperature. Feedback systems also exist that manipulate sodium balance during dialysis by assessing and adjusting dialysate conductivity. In this review article, we discuss the rationale for automated feedback systems during dialysis, describe how the different feedback systems work, and provide a review of the current evidence on their clinical effectiveness.
已经开发出多种透析期间的反馈控制系统,这些系统的共同特点是前瞻性地测量生理参数,然后根据预先指定的透析处方实时自动改变透析参数。这些系统包括基于与超滤和透析液电导率调整相关的相对血容量监测来降低透析中低血压的反馈系统,以及与透析液温度改变相关的血液温度监测系统。也存在通过评估和调整透析液电导率来控制透析期间钠平衡的反馈系统。在这篇综述文章中,我们讨论透析期间自动反馈系统的基本原理,描述不同反馈系统的工作方式,并对其临床有效性的现有证据进行综述。