Department of Anesthesiology, Shaoxing People's Hospital (Shaoxing Hospital, Zhejiang University School of Medicine), Shaoxing, 312000 Zhejiang Province, China.
Oxid Med Cell Longev. 2022 Jul 11;2022:5916040. doi: 10.1155/2022/5916040. eCollection 2022.
Blood pressure (BP) is a basic determinant for organ blood flow supply. Insufficient blood supply will cause tissue hypoxia, provoke cellular oxidative stress, and to some extent lead to organ injury. Perioperative BP is labile and dynamic, and intraoperative hypotension is common. It is unclear whether there is a causal relationship between intraoperative hypotension and organ injury. However, hypotension surely compromises perfusion and causes harm to some extent. Because the harm threshold remains unknown, various guidelines for intraoperative BP management have been proposed. With the pending definitions from robust randomized trials, it is reasonable to consider observational analyses suggesting that mean arterial pressures below 65 mmHg sustained for more than 15 minutes are associated with myocardial and renal injury. Advances in machine learning and artificial intelligence may facilitate the management of hemodynamics globally, including fluid administration, rather than BP alone. The previous mounting studies concentrated on associations between BP targets and adverse complications, whereas few studies were concerned about how to treat and multiple factors for decision-making. Hence, in this narrative review, we discussed the way of BP measurement and current knowledge about baseline BP extracting for surgical patients, highlighted the decision-making process for BP management with a view to providing pragmatic guidance for BP treatment in the clinical settings, and evaluated the merits of an automated blood control system in predicting hypotension.
血压(BP)是器官血液供应的基本决定因素。供血不足会导致组织缺氧,引发细胞氧化应激,在一定程度上导致器官损伤。围手术期血压不稳定且动态变化,术中低血压较为常见。术中低血压与器官损伤之间是否存在因果关系尚不清楚。然而,低血压肯定会影响灌注,并在一定程度上造成伤害。由于伤害阈值仍不清楚,因此提出了各种术中血压管理指南。在等待来自强有力的随机试验的定义的同时,考虑到观察性分析表明,平均动脉压持续低于 65mmHg 超过 15 分钟与心肌和肾脏损伤相关,这是合理的。机器学习和人工智能的进步可能会促进包括输液在内的整体血流动力学管理,而不仅仅是血压。之前的大量研究集中在血压目标与不良并发症之间的关联上,而很少有研究关注如何治疗和决策的多种因素。因此,在这篇叙述性综述中,我们讨论了 BP 测量方法和当前关于手术患者基础 BP 提取的知识,强调了 BP 管理的决策过程,以期为临床环境中的 BP 治疗提供实用指导,并评估自动血液控制系统在预测低血压方面的优点。