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门诊心力衰竭管理中的血流动力学监测设备

Hemodynamic Monitoring Devices in the Management of Outpatient Heart Failure.

作者信息

Lundgren Scott W, Garvin Robert P, Abraham William T

机构信息

Division of Cardiovascular Medicine, University of Nebraska Medical Center, Omaha, Nebraska.

Division of Cardiovascular Medicine, The Ohio State University, Columbus, Ohio.

出版信息

J Soc Cardiovasc Angiogr Interv. 2023 Dec 4;2(6Part B):101186. doi: 10.1016/j.jscai.2023.101186. eCollection 2023 Nov-Dec.

Abstract

The prevalence of heart failure continues to increase throughout the world. This rise in diagnoses corresponds with high rates of hospitalization, patient and caregiver fatigue, and ever-increasing economic costs. While numerous investigations have been undertaken in the past looking into remote monitoring or telemedicine strategies, they were unable to show an improvement in clinical outcomes with use. Invasive hemodynamic monitoring in the ambulatory setting has been an area of focus for the last several decades as a possible proactive strategy aiding in the evaluation and management of the heart failure population. Several large, randomized trials have not only shown the safety of a pulmonary artery pressure sensor in the heart failure population but have also confirmed the efficacy of pulmonary artery pressure-guided heart failure management in reducing rates of heart failure hospitalizations. Additional novel implantable devices are in various stages of development and clinical investigation and aim to further help aid in the management of this complex patient population. Future strategies are emerging and include the increased development of wearable devices as well as novel technologies to assess hemodynamics and volume status.

摘要

心力衰竭的患病率在全球范围内持续上升。诊断率的上升伴随着高住院率、患者及照料者的疲劳,以及不断增加的经济成本。尽管过去已经进行了大量关于远程监测或远程医疗策略的研究,但这些研究未能显示使用这些策略能改善临床结局。在过去几十年里,门诊环境中的有创血流动力学监测一直是一个重点领域,作为一种可能的主动策略,有助于对心力衰竭人群进行评估和管理。几项大型随机试验不仅证明了肺动脉压力传感器在心力衰竭人群中的安全性,还证实了肺动脉压力引导下的心力衰竭管理在降低心力衰竭住院率方面的有效性。其他新型植入式设备正处于不同的研发和临床研究阶段,旨在进一步帮助管理这一复杂的患者群体。未来的策略正在涌现,包括可穿戴设备以及评估血流动力学和容量状态的新技术的更多开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a92/11307516/fd853416459e/ga1.jpg

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