[1]刘古月 白文娟 唐红.实时三维经食管超声心动图对心脏瓣膜病的量化评估进展[J].心血管病学进展,2020,(10):1053.[doi:10.16806/j.cnki.issn.1004-3934.2020.10.013]
 LIU Guyue,BAI Wenjuan,TANG Hong.Developments in Real Time Three-Dimensional Transesophageal Echocardiography for Quantification of Valvular Heart Disease[J].Advances in Cardiovascular Diseases,2020,(10):1053.[doi:10.16806/j.cnki.issn.1004-3934.2020.10.013]
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实时三维经食管超声心动图对心脏瓣膜病的量化评估进展()
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《心血管病学进展》[ISSN:51-1187/R/CN:1004-3934]

卷:
期数:
2020年10期
页码:
1053
栏目:
综述
出版日期:
2020-10-25

文章信息/Info

Title:
Developments in Real Time Three-Dimensional Transesophageal Echocardiography for Quantification of Valvular Heart Disease
作者:
刘古月1 白文娟2 唐红 2
1.西藏自治区人民政府驻成都办事处医院功能科,四川 成都610041;2.四川大学华西医院心内科,四川 成都610041)
Author(s):
LIU Guyue1 BAI Wenjuan2 TANG Hong2
(1.Department of Function,Hospital of Chengdu Office of the People’s Government of Tibet Autonomous Region,Chengdu 610041,Sichuan,China;2.Department of Cardiology,West China Hospital of Sichuan University,Chengdu 610041,Sichuan,China)
关键词:
心脏瓣膜病实时三维经食管超声心动图经导管主动脉瓣置换
Keywords:
Valvular heart disease Real time three-dimensional transesophageal echocardiograph Transcatheter aortic valve replacement
DOI:
10.16806/j.cnki.issn.1004-3934.2020.10.013
摘要:
三维超声心动图被认为是量化评估心脏瓣膜病最有潜力的技术,而实时三维经食管超声心动图(RT 3D-TEE)的高质量图像使其更广泛的应用于诊断心脏瓣膜病。尤其对于二尖瓣疾病,RT 3D-TEE被认为是最独特、有效、可信的用于理解二尖瓣复杂的解剖结构和动力学特征的工具。虽然RT 3D-TEE应用于主动脉瓣、三尖瓣和肺动脉瓣疾病还处于早期及持续发展的阶段,但对于术前评估经导管主动脉瓣置换术患者的主动脉瓣环径有参考价值。本文就RT 3D-TEE在心脏瓣膜病应用进展进行综述,包括二尖瓣、主动脉瓣、三尖瓣及肺动脉瓣疾病。
Abstract:

Three-dimensional echocardiography has been considered the most potential technique for quantification of valvular heart disease, while the high-quality imags of real time three-dimensional transesophageal echocardiography RT 3D-TEE make it more widely used in the diagnosis of valvular heart disease. Especially for mitral valve disease, RT 3D-TEE is regarded as the most unique, effective and credible tool to understand the complex anatomical structure and dynamic characteristics of mitral valve. Although the application of RT 3D-TEE in aortic valve , tricuspid valve and pulmonary valve disease is still in an early and continuous development stage, it has a reference value for preoperative assessment of aortic annular size in patients undergoing transcatheter aortic valve replacement. This article reviews the progress of RT 3D-TEE in valvular heart disease, including mitral valve, aortic valve, tricuspid valve and pulmonary valve diseasse.

参考文献/References:

[1]Prempeh ABA,Scherman J,Swanevelder JL. Transesophageal echocardiography in minimally invasive cardiac surgery[J]. Curr Opin Anaesthesiol,2020,33(1):83-91.

[2]Karamnov S,Burbano-Vera N,Huang CC,et al. Echocardiographic assessment of mitral stenosis orifice area: a comparison of a novel three-dimensional method versus conventional techniques[J]. Anesth Analg,2017,125(23):774-780.

[3]Uygur B,Celik O,Ustabasioglu FE,et al. Three-dimensional transesophageal echocardiography vs cardiac magnetic resonance in the assessment of planimetric mitral valve area in rheumatic mitral stenosis[J]. Echocardiography,2018,35(10):1621-1625.

[4] Kang WS,Ko SM,Lee Y,et al. Three-Dimensional transesophageal echocardiography for determination of mitral valve area after mitral valve repair surgery for mitral stenosis[J]. J Cardiovasc Surg (Torino),2016,57(4):606-614.

[5]亢玉,张庆. 二尖瓣瓣叶在功能性二尖瓣反流发生机制中的角色[J]. 心血管病学进展,2016,27(4):376-379.

[6] Kagiyama N,Toki M,Hara M,et al. Efficacy and accuracy of novel automated mitral valve quantification: three-dimensional transesophageal echocardiographic study[J]. Echocardiography,2016,33(5):756-763.

[7]Sun X,Jiang Y,Huang G,et al. Three-dimensional mitral valve structure in predicting moderate ischemic mitral regurgitation improvement after coronary artery bypass grafting[J]. J Thorac Cardiovasc Surg,2019,157(5):1795-1803.

[8] van Wijngaarden SE,Kamperidis V,Regeer MV,et al. Three-dimensional assessment of mitral valve annulus dynamics and impact on quantification of mitral regurgitation[J]. Eur Heart J Cardiovasc Imaging,2018,19(2),176-184.

[9] Apor A,Nagy AI,Kovács A,et al. Three-dimensional dynamic morphology of the mitral valve in different forms of mitral valve prolapse—potential implications for annuloplasty ring selection[J]. Cardiovasc Ultrasound,2016,14(1):32-37.

[10]Mahmood F,Knio ZO,Yeh L,et al. Regional heterogeneity in the mitral valve apparatus in patients with ischemic mitral regurgitation[J]. Ann Thorac Surg,2017,103(4):1171-1177.

[11] Kagiyama N,Hayashida A,Toki M,et al. Insufficient leaflet remodeling in patients with atrial fibrillation: association with the severity of mitral regurgitation[J]. Circ Cardiovasc Imaging,2017,10(3):1-8.

[12] Ito K,Abe Y,Takahashi Y,et al. Mechanism of atrial functional mitral regurgitation in patients with atrial fibrillation: A study using three-dimensional transesophageal echocardiography[J]. J Cardio,2017,70(6):584-590.

[13] Cobey FC,Ferreira R,Ursprung WW,et al. A novel approach to assess the three-dimensional anatomy of a mitral valve regurgitant jet orifice[J]. J Cardiothorac Vasc Anesth,2016,31(1):169-173.

[14] Poelaert J I,Bouchez S. Perioperative echocardiographic assessment of mitral valve regurgitation: a comprehensive review[J]. Eur J Cardiothorac Surg,2016,50(5):801-812.

[15] Berdejo J,Shiota M,Mihara H,et al. Vena contracta analysis by color Doppler three-dimensional transesophageal echocardiography shows geometrical differences between prolapse and pseudoprolapse in eccentric mitral regurgitation[J]. Echocardiography,2017,34(5):683-689.

[16]Khan F,Winkel M,Ong G,et al. Percutaneous mitral edge-to-edge repair: state of the art and a glimpse to the future[J]. Front Cardiovasc Med,2019,6(122):1-7.

[17] Herbrand T,Eschenhagen S,Zeus T,et al. Acute reverse annular remodeling during MitraClip therapy predicts improved clinical outcome in heart failure patients: a 3D echocardiography study[J]. Eur J Med Res,2017,22(1):1-11.

[18] Ryomoto M,Mitsuno M,Yamamura M,et al. Physiological mitral annular dynamics preserved after ring annuloplasty in mid-term period[J]. Gen Thorac Cardiovasc Surg,2017,65(11):627-632.

[19] Machida T,Izumo M,Suzuki K,et al. Value of anatomical aortic valve area using real-time three-dimensional transoesophageal echocardiography in patients with aortic stenosis: a comparison between tricuspid and bicuspid aortic valves[J]. Eur Heart J Cardiovasc Imaging,2015,16(10):1120-1128.

[20]Alskaf E,Kardos A. The mystery of defining aortic valve area: what have we learnt from three-dimensional imaging modalities?[J]. Echocardiography,2018,16(3):130-138.

[21]Zhang M,Wan L,Liu K,et al. Aortic roots assessment by an automated three-dimensional transesophageal echocardiography: an intra-individual comparison[J]. Int J Cardiovasc Imaging,2019,35(11):2029-2036.

[22]García-Martín A,Lázaro-Rivera C,Fernández-Golfín C,et al. Accuracy and reproducibility of novel echocardiographic three-dimensional automated software for the assessment of the aortic root?n candidates for thanscatheter aortic valve replacement[J]. Eur Heart J Cardiovasc Imaging,2016,17(7),772-778.

[23] Tamborini G,Fusini L,Gripari P,et al. Feasibility and accuracy of 3DTEE versus CT for the evaluation of aortic valve annulus to left main ostium distance before transcatheter aortic valve implantation[J]. JACC Cardiovasc Imaging,2012,5(6):579-588.

[24]Gripari P,Ewe SH,Fusini L,et al. Intraoperative 2D and 3D transoesophageal echocardiographic predictors of aortic regurgitation after transcatheter aortic valve implantation[J]. Heart,2012,98(16):1229-1236.

[25]Pibarot P,Magne J,Leipsic J,et al. Imaging for predicting and assessing prosthesis-patient mismatch after aortic valve replacement[J]. JACC Cardiovasc Imaging,2019,12(1):149-162.

[26]Sohmer B,Jafar R,Patel P,et al. Aortic valve cusp coaptation surface area using 3-dimensional transesophageal echocardiography correlates with severity of aortic valve insufficiency[J]. J Cardiothorac Vasc Anesth,2018,32(1):344-351.

[27]Badano LP,Hahn R,Rodríguez-Zanella H,et al. Morphological assessment of the tricuspid apparatus and grading regurgitation severity in patients with functional tricuspid regurgitation: thinking outside the box[J]. JACC Cardiovasc Imaging,2019,12(4):652-664.

[28] Owais K,Taylor CE,Jiang L,et al. Tricuspid annulus: a three-dimensional deconstruction and reconstruction[J]. Ann Thorac Surg,2014,98(5):1536-1543.

[29] Ancona F,Stella S,Taramasso M,et al. Multimodality imaging of the tricuspid valve with implication for percutaneous repair approaches[J]. Heart,2017,103(14):1073-1081.

[30] Ring L,Rana BS,Kydd A,et al. Dynamics of the tricuspid valve annulus in normal and dilated right hearts: a three-dimensional transoesophageal echocardiography study[J]. Eur Heart J Cardiovasc Imaging,2012,13(9):756-762.

[31] Utsunomiya H,Itabashi Y,Mihara H,et al. Functional Tricuspid regurgitation caused by chronic atrial fibrillation: a real-time 3-dimensional transesophageal echocardiography study[J]. Circ Cardiovasc Imaging,2017,10(1):1-15.

[32] Nishi H,Toda K,Miyagawa S,et al. Tricuspid annular dynamics before and after tricuspid annuloplasty- three-dimensional transesophageal echocardiography[J]. Circ J,2015,79(4):873-879.

[33] Dreyfus J,Durandviel G,Raffoul R,et al. Comparison of 2-dimensional,3-dimensional,and surgical measurements of the tricuspid annulus size clinical implications[J]. Circ Cardiovasc Imaging,2015,8(7):1-10.

[34] Hadeed K,Hascoët S,Amadieu R,et al. 3D transthoracic echocardiography to assess pulmonary valve morphology and annulus size in patients with Tetralogy of Fallot[J]. Arch Cardiovasc Dis,2016,109(2):87-95.

[35] Kemalo?u Öz T,Özpamuk Karadeniz F,Akyüz ?et al. The advantages of live/real time three-dimensional transesophageal echocardiography during assessments of pulmonary stenosis[J]. Int J Cardiovasc Imaging,2016,32(4):573-582.

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更新日期/Last Update: 2020-12-21