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In-vivo transducer to measure dynamic mitral annular forces

机译:体内换能器测量动态二尖距

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摘要

Limited knowledge exists regarding the forces which act on devices implanted to the heart’s mitral valve. Developing a transducer to measure the peak force magnitudes, time rates of change, and relationship with left ventricular pressure will aid in device development. A novel force transducer was developed and implanted in the mitral valve annulus of an ovine subject. In the post-cardioplegic heart, septal-lateral and transverse forces were continuously measured for cardiac cycles reaching a peak left ventricular pressure of 90 mmHg. Each force was seen to increase from ventricular diastole and found to peak at mid-systole. The mean change in septal-lateral and transverse forces throughout the cardiac cycle was 4.4 ± 0.2 N and 1.9 ± 0.1 N respectively. During isovolumetric contraction, the septal-lateral and transverse forces were found to increase at peak rate of 143 ± 8 N/s and 34 ± 9 N/s, respectively. Combined, this study provides the first quantitative assessment of septal-lateral and transverse forces within the contractile mitral annulus. The developed transducer was successful in measuring these forces whose methods may be extended to future studies. Upon additional investigation, these data may contribute to the safer development and evaluation of devices aimed to repair or replace mitral valve function.
机译:关于植入心脏二尖瓣的装置的力量存在有限的知识。开发换能器以测量峰值力幅度,时间率的变化,以及与左心室压力的关系将有助于设备开发。开发了一种新型力传感器并植入绵羊受试者的二尖瓣环中。在心脏病心脏病心脏病中,对心脏循环连续测量隔膜横向和横向力,达到90mmHg的峰值左心室压力。每个力被视为从心室肺渗的增加,并发现在中间嗜节环中达到峰。在整个心循环中的间隔横向和横向力的平均变化分别为4.4±0.2n和1.9±0.1n。在单独的收缩期间,发现间隔横向和横向力分别以143±8n / s和34±9n / s的峰值速率增加。结合,该研究提供了在收缩二尖瓣内隔膜侧和横向力的第一次定量评估。发达的传感器成功地测量了这些力量,其方法可以扩展到未来的研究。在额外调查后,这些数据可能有助于更安全的开发和评估旨在修复或替换二尖瓣功能的装置。

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