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超声心动图观察室间隔运动新方法研究 被引量:1

A new way to study the motion of interventricular septum by echocardiography
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摘要 目的利用室间隔运动时曲率半径的变化,观察正常人呼吸性胸压变化对室间隔摆动和形变的影响,评价新方法观察室间隔运动的敏感性。方法应用Aeuson Sequoia 512型超声仪对21例健康志愿者进行检查,分别获取呼气相和吸气相左室腱索短轴观图像;同步记录各瓣口血流速率、心电图和呼吸曲线。两名医师在双盲条件下采用自制的测量软件,分别测量吸气相与呼气相室间隔曲率半径。结果二尖瓣E峰血流速率和主动脉血流速率在呼气相均高于吸气相;三尖瓣E峰血流速率和肺动脉瓣血流速率则相反。吸气相室问隔曲率半径为(25.914±6.082)mm,呼气相室间隔曲率半径为(22.296±4.398)mm,二者差异有统计学意义(Pd0.0001)。结论曲率半径可以评估室壁摆动和形变,具有良好的重复性,为临床评价呼吸性胸压变化提供一种敏感而可靠的新方法。 Objective To evaluate the effect of normal respiration on motion and disfiguration of interventricular septum (IVS) by observing the change of interventricular septum radius of curvature (IVSRC). Methods The 2D short-axis images at chordae tendineae of mitral valve were recorded during inspiration and expiration respectively by Acuson Sequoia 512 in 21 normal subjects. Speed of blood flow of each valve, electrocardiogram and respiratory tracing were recorded simultaneously. Two doctors who were double-blind measured the IVSRC using self-designed software. Results During normal inspiration, the peak E velocity of mitral valve and the flow velocity of aortic valve decreased, while the peak E velocity of tricuspid valve and the flow velocity of pulmonary valve increased. The IVSRC curvatures were (25. 914 ± 6. 082)ram during inspiration, and (22.296±4. 398)mm during expiration, there was difference in two respiration phases( P 〈0. 0001). Conclusions IVSRC can be used to evaluate motion and disfiguration of IVS. It has a good repeatability and is an effective way to observe the change of pleural pressure which is produced by respiration.
出处 《中华超声影像学杂志》 CSCD 北大核心 2009年第2期93-95,共3页 Chinese Journal of Ultrasonography
基金 国家自然科学基金(30770783)
关键词 超声心动描记术 室间隔 呼吸 曲率半径 Echocardiography Ventricular septum Respiration Radius of curvature
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参考文献9

  • 1Marsden AL, Vignon-Clementel IE, Chan FP, et al. Effects of exercise and respiration on hemodynamic efficiency in CFD simulations of the total eavopulmonary Connection. Ann Biomed Eng, 2007,35 : 250-263. 被引量:1
  • 2Michard F,Teboul JL. Using heart-lung interactions to assess fluid responsiveness during mechanical ventilation. Grit Care, 2000,4 : 282- 289. 被引量:1
  • 3袁丽君,曹铁生,段云友.平静呼吸对正常人心内血流速度影响的超声心动图研究[J].中华超声影像学杂志,2002,11(12):736-739. 被引量:12
  • 4曹铁生,袁丽君,段云友,孙鲲,庄磊,王作军.胸压变化对两个静脉回流系统不同作用的力学原理[J].第四军医大学学报,2002,23(20):1837-1840. 被引量:10
  • 5Nelson GS, Sayed Ahmed EY, Kroeker CA, et al. Compression of interventricular septum during right ventrieular pressure loading. Am J Physiol Heart Circ Physiol,2001,280: H2639-2648. 被引量:1
  • 6Roeleveld RJ, Marcus JT, Faes TJ, et al. Interventrieular septal configuration at MR imaging and pulmonary arterial pressure in pulmonary hypertension. Radiology, 2005,234 : 710-717. 被引量:1
  • 7Jorgensen K, MOiler MF, Nel J, et al. Reduced intrathoracic blood volume and left and right ventricular dimensions in patients with severe emphysema : an MRI study. Chest, 2007,131:1050-1057. 被引量:1
  • 8Dellegrottaglie S, Sanz J, Poon M, et al. Pulmonary hypertension: accuracy of detection with left ventricular septal-tu-free wall curvature ratio measured at cardiac MR. Radiology, 2007,243: 63- 69. 被引量:1
  • 9Klima UP, Lee MY, Guerrero JL, et al. Determinants of maximal right ventricular function: role of septal shift. Thorac Cardiovasc Surg, 2002,123 : 72- 80. 被引量:1

二级参考文献17

  • 1Braunwald E. Heart disease-A textbook of cardiovascular medicine [M]. Philadelphia, PA: Saunders WB, 2001:409, 1845. 被引量:1
  • 2Gonzalez MS, Basnight MA, Appleton CP, Carucci M, Henry C, Olajos M. Experimental cardiac tamponade: A hemodynamics and Doppler echocardiographic reexamination of the relation of right and left heart ejection dynamics to the phase of respiration [J]. J Am Coll Cardiol, 1991;18:243-252. 被引量:1
  • 3Santamore WP, Dell'ltalia LJ. Ventricular interdependence: Significant left ventricular contributions to right ventricular systolic function [J]. Prog Cardiovasc Dis, 1998;40(4):289-308. 被引量:1
  • 4Simeonidou E, Hamouratidis N, Tzimas K, Tsounos J, Roussis S. Respiratory variation in mitral flow velocity in pericardial effusion and cardiac tamponade [J]. Angiology, 1994;45:213-218. 被引量:1
  • 5Curylo AM. Pathological processes with accumulation of fluid in the pericardial sac [J]. Folia Med Cracov, 1991;32(1-2):33-41. 被引量:1
  • 6Sun Y, Beshara M, Lucariello RJ, Chiaramida SA. A comprehensive model for right-left heart interaction under the influence of pericardium and baroreflex [J]. Am J Physiol, 1997;272(Heart Circ Physiol 42):H1499-H1515. 被引量:1
  • 7Scharf SM, Cassidy SS. Heart-lung interactions in health and disease [M]. Inc, New York: Basel, 1989;v, 46, 239. 被引量:1
  • 8Henkind SJ, Benis AM, Teichholz LE. The paradox of pulsus paradoxus [J]. Am Heart J, 1987;114:198-203. 被引量:1
  • 9曹铁生 孙鲲 袁丽君.正常呼吸对循环系统的影响—模拟实验与动物实验研究[J].第四军医大学学报,1999,20:735-735. 被引量:3
  • 10Scharf SM,Cassidy SS.Heart-lung interactions in health and disease.In:Lung Biology in Health and Disease.The United States of America:Marecel Dekker,Inc,1989.251-253,315-330. 被引量:1

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