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用于生理性心脏起搏的多传感器系统。

Multiple-sensor systems for physiologic cardiac pacing.

作者信息

Benditt D G, Mianulli M, Lurie K, Sakaguchi S, Adler S

机构信息

Cardiac Arrhythmia Center (Cardiovascular Division), University of Minnesota, Minneapolis 55455.

出版信息

Ann Intern Med. 1994 Dec 15;121(12):960-8. doi: 10.7326/0003-4819-121-12-199412150-00010.

Abstract

PURPOSE

To review the status of artificial sensors in cardiac pacemakers and the rationale for developing pacing systems that use multiple sensors.

DATA SOURCES

Journal articles published between 1982 and 1993 indexed in MEDLINE using the keywords pacemakers, sensors, and rate-adaptive, as well as abstracts and articles in the authors' personal files.

STUDY SELECTION

Articles describing clinical experience with or clinical evaluation of cardiac pacing systems using multiple artificial sensors.

DATA SYNTHESIS

Artificial sensors were created to adjust pacing rate reliably in response to changes in levels of physical exertion for patients with sinoatrial disease in whom exercise heart rate response is inadequate (for example, chronotropic incompetence in sinoatrial disease). To achieve this, various artificial sensors were developed and many reports confirm improved exertional tolerance. More recently, sensors have assumed a greater role in cardiac pacemakers. For example, sensors are used to permit automatic adjustment of certain programmable pacemaker settings, such as the atrioventricular interval. In the future, they may also be used to maximize pacemaker longevity by automatically optimizing energy output (voltage, pulse width). No single sensor is ideal for all potential applications, and investigators have advocated using two or more sensors. Several pacemakers that use multiple sensors with different but complementary operating characteristics are already commercially available outside the United States. Although preliminary findings are encouraging, additional clinical experience with these pacemakers is needed to determine their ultimate role in clinical practice.

CONCLUSION

Simultaneous use of multiple complementary artificial sensors may permit development of cardiac pacemakers that operate more physiologically yet require less specialized medical follow-up.

摘要

目的

回顾心脏起搏器中人工传感器的现状以及开发使用多种传感器的起搏系统的基本原理。

数据来源

1982年至1993年间发表在MEDLINE上的期刊文章,使用关键词起搏器、传感器和频率适应性进行索引,以及作者个人文件中的摘要和文章。

研究选择

描述使用多种人工传感器的心脏起搏系统的临床经验或临床评估的文章。

数据综合

人工传感器的创建是为了可靠地调整起搏频率,以应对窦房结疾病患者体力活动水平的变化,这些患者的运动心率反应不足(例如,窦房结疾病中的变时性功能不全)。为了实现这一目标,开发了各种人工传感器,许多报告证实运动耐力有所提高。最近,传感器在心脏起搏器中发挥了更大的作用。例如,传感器用于自动调整某些可编程起搏器设置,如房室间期。未来,它们还可用于通过自动优化能量输出(电压、脉宽)来延长起搏器寿命。没有一种传感器适用于所有潜在应用,研究人员主张使用两种或更多种传感器。几种使用具有不同但互补操作特性的多种传感器的起搏器已在美国以外的市场上销售。尽管初步结果令人鼓舞,但仍需要更多这些起搏器的临床经验来确定它们在临床实践中的最终作用。

结论

同时使用多种互补的人工传感器可能有助于开发出更符合生理功能、但需要较少专业医学随访的心脏起搏器。

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