心脏起搏器技术在并发症处理方面的最新进展综述。

Q3 Dentistry
Megan Lowe, Lily Nguyen, Dhiman J Patel
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引用次数: 0

摘要

全球每年植入起搏器的总数持续增长,并帮助心律失常患者提高生活质量和降低死亡率。第一个植入式起搏器出现在1965年,其特点是体积大、电池寿命短和单一起搏模式。创新带来了现代起搏器:一个更小的系统,电池寿命和容量得到了提高,领先技术也得到了创新。某些心律失常情况也可能符合无导线起搏器植入的条件,从而消除了导线可能出现的并发症。不良事件可分为急性(穿孔、导线移位、感染)和长期(导线骨折、装置感染、绝缘故障)。10%的患者会出现传统的长期导线并发症,而6.7%的无导线起搏器会出现与设备相关的不良反应。此外,心脏起搏器植入可改善所有年龄组的生活质量。大型心脏康复研究已经证明了运动在减少起搏器植入引起的身体并发症方面的有效性。在检查的三项随机对照试验中,与对照组相比,干预组的所有试验都报告了运动的一些益处。以下综述旨在讨论临床医生可能使用的多种起搏器选项、并发症、管理过程,以及该领域先前研究中产生的创新路径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review of the Recent Advances of Cardiac Pacemaker Technology in Handling Complications.

The total number of annual pacemaker implantations continues to grow globally, and help patients with heart rhythm disorders with an improved quality of life and reduced mortality. The first implantable pacemakers appeared in 1965, characterized by their bulkiness, short battery life, and a single pacing mode. Innovation led to the modern pacemaker: a smaller system with improved battery life and capacity, and innovation in lead technology. Certain arrhythmia conditions may also qualify for leadless pacemaker implantation, thus eliminating the spectrum of complications that could occur with leads. Adverse events can be divided into acute (perforation, lead dislodgement, infection) and long-term (lead fractures, device infection, insulation failure). Traditional long-term complications with leads occur in 10% of patients, compared with device-related adverse effects observed in 6.7% of leadless pacemakers. Furthermore, cardiac pacemaker implantation results in quality of life improvements across all age groups. Large cardiac rehabilitation studies have demonstrated the effectiveness of exercise in reducing the physical complications involved with pacemaker implantation. Of the three randomized controlled trials examined, all of them reported some benefit of exercise in the intervention group compared with the control. The following review aims to discuss the multitude of pacemaker options potentially available for the clinician, complications, their course of management, and the path forward with innovations arising out of previous research within the field.

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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
46
期刊介绍: MEDICAL IMPLANTS are being used in every organ of the human body. Ideally, medical implants must have biomechanical properties comparable to those of autogenous tissues without any adverse effects. In each anatomic site, studies of the long-term effects of medical implants must be undertaken to determine accurately the safety and performance of the implants. Today, implant surgery has become an interdisciplinary undertaking involving a number of skilled and gifted specialists. For example, successful cochlear implants will involve audiologists, audiological physicians, speech and language therapists, otolaryngologists, nurses, neuro-otologists, teachers of the deaf, hearing therapists, cochlear implant manufacturers, and others involved with hearing-impaired and deaf individuals.
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