A mitral annulus tracking approach for navigation of off-pump beating heart mitral valve repair

被引:11
|
作者
Li, Feng P. [1 ]
Rajchl, Martin [1 ]
Moore, John [1 ]
Peters, Terry M. [1 ]
机构
[1] Univ Western Ontario, Robarts Res Inst, Imaging Lab, London, ON N6A 5B7, Canada
基金
加拿大健康研究院;
关键词
beating heart mitral valve repair; image guidance; ultrasound; mitral annulus tracking; real-time; TRANSESOPHAGEAL ECHOCARDIOGRAPHY; ULTRASOUND; GUIDANCE; SEGMENTATION; SURGERY; REGISTRATION; REGURGITATION; IMPLANTATION; FLUOROSCOPY; FUSION;
D O I
10.1118/1.4904022
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Purpose: To develop and validate a real-time mitral valve annulus (MVA) tracking approach based on biplane transesophageal echocardiogram (TEE) data and magnetic tracking systems (MTS) to be used in minimally invasive off-pump beating heart mitral valve repair (MVR). Methods: The authors' guidance system consists of three major components: TEE, magnetic tracking system, and an image guidance software platform. TEE provides real-time intraoperative images to show the cardiac motion and intracardiac surgical tools. The magnetic tracking system tracks the TEE probe and the surgical tools. The software platform integrates the TEE image planes and the virtual model of the tools and the MVA model on the screen. The authors' MVA tracking approach, which aims to update the MVA model in near real-time, comprises of three steps: image based gating, predictive reinitialization, and registration based MVA tracking. The image based gating step uses a small patch centered at each MVA point in the TEE images to identify images at optimal cardiac phases for updating the position of the MVA. The predictive reinitialization step uses the position and orientation of the TEE probe provided by the magnetic tracking system to predict the position of the MVA points in the TEE images and uses them for the initialization of the registration component. The registration based MVA tracking step aims to locate the MVA points in the images selected by the image based gating component by performing image based registration. Results: The validation of the MVA tracking approach was performed in a phantom study and a retrospective study on porcine data. In the phantom study, controlled translations were applied to the phantom and the tracked MVA was compared to its "true" position estimated based on a magnetic sensor attached to the phantom. The MVA tracking accuracy was 1.29 +/- 0.58 mm when the translation distance is about 1 cm, and increased to 2.85 +/- 1.19 mm when the translation distance is about 3 cm. In the study on porcine data, the authors compared the tracked MVA to a manually segmented MVA. The overall accuracy is 2.37 +/- 1.67 mm for single plane images and 2.35 +/- 1.55 mm for biplane images. The interoperator variation in manual segmentation was 2.32 +/- 1.24 mm for single plane images and 1.73 +/- 1.18 mm for biplane images. The computational efficiency of the algorithm on a desktop computer with an Intel (R) Xeon (R) CPU @3.47 GHz and an NVIDIA GeForce 690 graphic card is such that the time required for registering four MVA points was about 60 ms. Conclusions: The authors developed a rapid MVA tracking algorithm for use in the guidance of off-pump beating heart transapical mitral valve repair. This approach uses 2D biplane TEE images and was tested on a dynamic heart phantom and interventional porcine image data. Results regarding the accuracy and efficiency of the authors' MVA tracking algorithm are promising, and fulfill the requirements for surgical navigation. (C) 2015 American Association of Physicists in Medicine.
引用
收藏
页码:456 / 468
页数:13
相关论文
共 50 条
  • [21] CT for the Transapical Off-Pump Mitral Valve Repair With Neochord Implantation Procedure
    Colli, Andrea
    Zucchetta, Fabio
    Kliger, Chad
    Bellu, Roberto
    Francone, Marco
    Sedati, Pietro
    Jelnin, Vladimir
    Ruiz, Carlos E.
    Manzan, Erica
    Besola, Laura
    Bizzotto, Eleonora
    Gerosa, Gino
    JACC-CARDIOVASCULAR IMAGING, 2017, 10 (11) : 1397 - 1400
  • [22] Anesthetic Management of Transapical Off-Pump Mitral Valve Repair With NeoChord Implantation
    Kavakli, Ali Sait
    Ozturk, Nilgun Kavrut
    Ayoglu, Raif Umut
    Emmiler, Mustafa
    Ozyurek, Lutfi
    Inanoglu, Kerem
    Ozmen, Sadik
    JOURNAL OF CARDIOTHORACIC AND VASCULAR ANESTHESIA, 2016, 30 (06) : 1587 - 1593
  • [23] Transapical off-pump mitral valve repair with NeoChord implantation: A systematic review
    Ahmed, Ahmed
    Abdel-Aziz, Tarek A.
    AlAsaad, Mohannad M. R.
    Majthoob, Motaz
    JOURNAL OF CARDIAC SURGERY, 2021, 36 (04) : 1492 - 1498
  • [24] Transapical off-pump mitral valve repair with NeoChord implantation: Is less better?
    Coutinho, Goncalo F.
    REVISTA PORTUGUESA DE CARDIOLOGIA, 2021, 40 (12) : 943 - 945
  • [25] Clinical experience of transapical off-pump mitral valve repair with NeoChord implantation
    Kalompatsou, A.
    Beneki, E.
    Dimitroglou, Y.
    Koukos, M.
    Aggeli, D.
    Tolis, E.
    EUROPEAN HEART JOURNAL, 2024, 45
  • [26] Surgical Phantom for Off-Pump Mitral Valve Replacement
    McLeod, A. Jonathan
    Moore, John
    Guiraudon, Gerard M.
    Jones, Doug L.
    Campbell, Gordon
    Peters, Terry M.
    MEDICAL IMAGING 2011: VISUALIZATION, IMAGE-GUIDED PROCEDURES, AND MODELING, 2011, 7964
  • [27] Feasibility of novel transapical off pump beating heart mitral valve repair in a patient with dextrocardia and situs inversus
    Bhatia, Inderjeet
    Chan, Daniel Tai-Leung
    Lam, Simon Chi-Cheung
    Au, Timmy Wing-Kuk
    EUROPEAN JOURNAL OF CARDIO-THORACIC SURGERY, 2020, 58 (02) : 392 - 394
  • [28] One-Stage Off-Pump Transapical Mitral Valve Repair and Aortic Valve Replacement
    Gerosa, Gino
    D'Onofrio, Augusto
    Manzan, Erica
    Besola, Laura
    Bizzotto, Eleonora
    Zucchetta, Fabio
    Tarantini, Giuseppe
    Pittarello, Demetrio
    Colli, Andrea
    CIRCULATION, 2015, 131 (19) : E430 - E434
  • [29] First in Man: Off-Pump Transapical Transcatheter Aortic Valve Implantation and Mitral Valve Repair
    Zierer, Andreas F.
    Kammler, Juergen
    Blessberger, Hermann
    Ay, Mahmut
    Steinwender, Clemens
    ANNALS OF THORACIC SURGERY, 2019, 107 (04): : E249 - E250
  • [30] Off-pump mitral valve repair using the Coapsys™ device:: Early results in patients with functional mitral regurgitation
    Trehan, N
    Mishra, Y
    Mittal, S
    Mehta, Y
    CIRCULATION, 2003, 108 (17) : 475 - 475