Emerging Trends in Heart Valve Engineering: Part III. Novel Technologies for Mitral Valve Repair and Replacement
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  • 作者:Arash Kheradvar (1) (2)
    Elliott M. Groves (1) (2)
    Craig A. Simmons (3) (4)
    Boyce Griffith (5) (6)
    S. Hamed Alavi (1)
    Robert Tranquillo (7)
    Lakshmi P. Dasi (8)
    Ahmad Falahatpisheh (1)
    K. Jane Grande-Allen (9)
    Craig J. Goergen (10)
    Mohammad R. K. Mofrad (11)
    Frank Baaijens (12)
    Suncica Canic (13)
    Stephen H. Little (14)

    1. Department of Biomedical Engineering
    ; The Edwards Lifesciences Center for Advanced Cardiovascular Technology ; University of California ; Irvine ; 2410 Engineering Hall ; Irvine ; CA ; 92697-2730 ; USA
    2. Department of Internal Medicine
    ; Division of Cardiology ; University of California ; Irvine School of Medicine ; Irvine ; CA ; USA
    3. Department of Mechanical & Industrial Engineering
    ; University of Toronto ; Toronto ; ON ; Canada
    4. Institute of Biomaterials & Biomedical Engineering
    ; University of Toronto ; Toronto ; ON ; Canada
    5. Department of Mathematics
    ; Center for Interdisciplinary Applied Mathematics ; University of North Carolina at Chapel Hill ; Chapel Hill ; NC ; USA
    6. McAllister Heart Institute
    ; University of North Carolina at Chapel Hill School of Medicine ; Chapel Hill ; NC ; USA
    7. Department of Biomedical Engineering
    ; University of Minnesota ; Minneapolis ; MN ; USA
    8. Department of聽Mechanical Engineering
    ; School of Biomedical Engineering ; Colorado State University ; Fort Collins ; CO ; USA
    9. Department of Bioengineering
    ; Rice University ; Houston ; TX ; USA
    10. Weldon School of Biomedical Engineering
    ; Purdue University ; West Lafayette ; IN ; USA
    11. Department of Bioengineering and Mechanical Engineering
    ; University of California ; Berkeley ; Berkeley ; CA ; USA
    12. Department of Biomedical Engineering
    ; Eindhoven University of Technology ; Eindhoven ; Netherlands
    13. Department of Mathematics
    ; University of Houston ; Houston ; TX ; USA
    14. Houston Methodist DeBakey Heart & Vascular Center
    ; Houston ; TX ; USA
  • 关键词:Heart valve engineering ; Mitral valve repair ; Mitral valve replacement ; Transcatheter mitral valve
  • 刊名:Annals of Biomedical Engineering
  • 出版年:2015
  • 出版时间:April 2015
  • 年:2015
  • 卷:43
  • 期:4
  • 页码:858-870
  • 全文大小:1,381 KB
  • 参考文献:1. Acker, MA, Parides, MK, Perrault, LP, Moskowitz, AJ, Gelijns, AC, Voisine, P, Smith, PK, Hung, JW, Blackstone, EH, Puskas, JD (2014) Mitral-valve repair versus replacement for severe ischemic mitral regurgitation. N. Engl. J. Med. 370: pp. 23-32 CrossRef
    2. Adams, DH, Anyanwu, AC, Rahmanian, PB, Abascal, V, Salzberg, SP, Filsoufi, F (2006) Large annuloplasty rings facilitate mitral valve repair in barlow鈥檚 disease. Ann. Thorac. Surg. 82: pp. 2096-2101 CrossRef
    3. Alemu, Y, Girdhar, G, Xenos, M, Sheriff, J, Jesty, J, Einav, S, Bluestein, D (2010) Design optimization of a mechanical heart valve for reducing valve thrombogenicity鈥攁 case study with ATS valve. ASAIO J. 56: pp. 389-396 CrossRef
    4. Aranki, S (2014) Invited commentary on 鈥渋mpact of failed mitral clipping on subsequent mitral valve operations鈥? Ann. Thorac. Surg. 97: pp. 63 CrossRef
    5. Banai, S, Verheye, S, Cheung, A, Schwartz, M, Marko, A, Lane, R, Jolicoeur, EM, Garceau, P, Biner, S, Tanguay, J-F, Edelman, ER, White, CJ (2014) Transapical mitral implantation of the tiara bioprosthesis: pre-clinical results. JACC: Cardiovasc. Interv. 7: pp. 154-162 CrossRef
    6. Benson, AM, Omrane, K, Graves, EM, Haas, AL, Bryant, E, Mandalaywala, M, Mueller, A (2005) Synthesis of a low thrombogenic heart valve coating with horseradish peroxidase. Polym. Adv. Technol. 16: pp. 117-122 CrossRef
    7. Borger, MA, Ivanov, J, Armstrong, S, Christie-Hrybinsky, D, Feindel, CM, David, TE (2006) Twenty-year results of the hancock II bioprosthesis. J. Heart Valve Dis. 15: pp. 49-56
    8. Bortolotti, U, Milano, AD, Frater, RWM (2012) Mitral valve repair with artificial chordae: a review of its history, technical details, long-term results, and pathology. Ann. Thorac. Surg. 93: pp. 684-691 CrossRef
    9. Bottio, T, Dal Lin, C, Lika, A, Rizzoli, G, Tarzia, V, Buratto, E, Gerosa, G (2012) In聽vitro comparison of different mechanical prostheses suitable for replacement of the systemic atrioventricular valve in children. J. Thorac. Cardiovasc. Surg. 143: pp. 558-568 CrossRef
    10. Bottio, T, Rizzoli, G, Gerosa, G, Thiene, G, Casarotto, D (2002) Mid-term follow-up in patients with biocor porcine bioprostheses. Vascular 10: pp. 238-244
    11. Carrier, M, Pellerin, M, Basmadjian, A, Bouchard, D, Perrault, LP, Cartier, R, Page, P, Demers, P, H茅bert, Y (2006) Fifteen years of clinical and echocardiographic follow up with the carbomedics heart valve. J. Heart Valve Dis. 15: pp. 67
    12. Chambers, J, Cross, J, Deverall, P, Sowton, E (1993) Echocardiographic description of the carbomedics bileaflet prosthetic heart valve. J. Am. Coll. Cardiol. 21: pp. 398-405 CrossRef
    13. Cikirikcioglu, M, Cherian, S, Schussler, O, Kalangos, A (2011) Regarding 鈥渢he everest ii trial: design and rationale for a randomized study of the evalve mitraclip system compared with mitral valve surgery for mitral regurgitation. Am. Heart J. 162: pp. e11-e12 CrossRef
    14. Cunanan, CM, Cabiling, CM, Dinh, TT, Shen, S, Tran-Hata, P, Rutledge, JH, Fishbein, MC (2001) Tissue characterization and calcification potential of commercial bioprosthetic heart valves. Ann. Thorac. Surg. 71: pp. S417-S421 CrossRef
    15. Dasi, LP, Simon, HA, Sucosky, P, Yoganathan, AP (2009) Fluid mechanics of artificial heart valves. Clin. Exp. Pharmacol. Physiol. 36: pp. 225-237 CrossRef
    16. David, TE (2004) Artificial chordae. Semin. Thorac. Cardiovasc. Surg. 16: pp. 161-168 CrossRef
    17. Delling, FN, Vasan, RS (2014) Epidemiology and pathophysiology of mitral valve prolapse new insights into disease progression, genetics, and molecular basis. Circulation 129: pp. 2158-2170 CrossRef
    18. Dumesnil, J. G., and P. Pibarot. Valvular heart disease: changing concepts in disease management.聽 / Circulation聽119:1034鈥?048, 2009.
    19. Edwards, FH, Peterson, ED, Coombs, LP, DeLong, ER, Jamieson, WR, Shroyer, ALW, Grover, FL (2001) Prediction of operative mortality after valve replacement surgery. J. Am. Coll. Cardiol. 37: pp. 885-892 CrossRef
    20. Emery, RW, Krogh, CC, Jones, DJ, Nicoloff, DM, Blake, DP, Arom, KV (2004) A five-year follow up of the ATS mechanical heart valve. J. Heart Valve Dis. 13: pp. 231-238
    21. Emery, RW, Nooten, GJ, Tesar, PJ (2003) The initial experience with the ATS medical mechanical cardiac valve prosthesis. Ann. Thorac. Surg. 75: pp. 444-452 CrossRef
    22. Falahapisheh, A, Kheradvar, A (2012) High-speed particle image velocimetry to assess cardiac fluid dynamics in vitro: from performance to validation. Eur. J. Mech. B. 35: pp. 2-8 CrossRef
    23. Fallon, AM, Dasi, LP, Marzec, UM, Hanson, SR, Yoganathan, AP (2008) Procoagulant properties of flow fields in stenotic and expansive orifices. Ann. Biomed. Eng. 36: pp. 1-13 CrossRef
    24. Feldman, T, Ali, O (2012) Transcatheter mitral valve interventions: current status and future perspective. EuroIntervention 8: pp. Q53-59 CrossRef
    25. Feldman, T, Kar, S, Rinaldi, M, Fail, P, Hermiller, J, Smalling, R, Whitlow, PL, Gray, W, Low, R, Herrmann, HC, Lim, S, Foster, E, Glower, D (2009) Percutaneous mitral repair with the mitraclip system: safety and midterm durability in the initial everest (endovascular valve edge-to-edge repair study) cohort. J. Am. Coll. Cardiol. 54: pp. 686-694 CrossRef
    26. Feldman, T, Young, A (2014) Percutaneous approaches to valve repair for mitral regurgitation. J. Am. Coll. Cardiol. 63: pp. 2057-2068 CrossRef
    27. Folliguet, TA, Bret, E, Bachet, J, Laborde, F (2001) Pericarbon pericardial bioprosthesis: an experience based on the lessons of the past. Ann. Thorac. Surg. 71: pp. S289-S292 CrossRef
    28. Forleo, M, Dasi, LP (2014) Effect of hypertension on the closing dynamics and lagrangian blood damage index measure of the b-datum regurgitant jet in a bileaflet mechanical heart valve. Ann. Biomed. Eng. 42: pp. 110-122 CrossRef
    29. Geidel, S, Schmoeckel, M (2014) Impact of failed mitral clipping on subsequent mitral valve operations. Ann. Thorac. Surg. 97: pp. 56-63 CrossRef
    30. Goldhaber, SZ (2006) 鈥淏ridging鈥?and mechanical heart valves: perils, promises, and predictions. Circulation 113: pp. 470-472 CrossRef
    31. Grande-Allen, KJ, Griffin, BP, Ratliff, NB, Cosgrove, DM, Vesely, I (2003) Glycosaminoglycan profiles of myxomatous mitral leaflets and chordae parallel the severity of mechanical alterations. J. Am. Coll. Cardiol. 42: pp. 271-277 CrossRef
    32. Hayek, E, Gring, CN, Griffin, BP (2005) Mitral valve prolapse. Lancet 365: pp. 507-518 CrossRef
    33. He, S, Fontaine, AA, Schwammenthal, E, Yoganathan, AP, Levine, RA (1997) Integrated mechanism for functional mitral regurgitation leaflet restriction versus coapting force: in vitro studies. Circulation 96: pp. 1826-1834 CrossRef
    34. Ibrahim, M., C. Rao, M. Savvopoulou, R. Casula, and T. Athanasiou. Outcomes of mitral valve repair using artificial chordae. / Eur. J. Cardio- / Thorac. Surg. 2013.
    35. Imasaka, K.-i., Y. Motomatsu, H. Hori, T. Kono, Y. Tanoue, E. Tayama, and Y. Tomita. Ventricular energetics early after surgery for chronic mitral regurgitation: Repair versus replacement. / J. Heart Valve Dis. 22:804鈥?09, 2013.
    36. Jun, BH, Saikrishnan, N, Yoganathan, AP (2014) Micro particle image velocimetry measurements of steady diastolic leakage flow in the hinge of a St. Jude medical((r)) regent mechanical heart valve. Ann. Biomed. Eng. 42: pp. 526-540 CrossRef
    37. Kelly, S, Verdonck, P, Vierendeels, J, Riemslagh, K, Dick, E, Nooten, G (1999) A three-dimensional analysis of flow in the pivot regions of an ATS bileaflet valve. Int. J. Artif. Organs. 22: pp. 754-763
    38. Kheradvar, A., H. Houle, G. Pedrizzetti, G. Tonti, T. Belcik, M. Ashraf, J. R. Lindner, M. Gharib, and D. Sahn. Echocardiographic particle image velocimetry: a novel technique for quantification of left ventricular blood vorticity pattern. / J. Am. Soc. Echocardiogr. 23:3102鈥?111, 2010.
    39. Kheradvar, A. Development and testing a dynamic bi-leaflet mitral prosthesis. / Circulation 120:S929鈥揝929, 2009.
    40. Kheradvar, A, Falahatpisheh, A (2012) The effects of dynamic saddle annulus and leaflet length on transmitral flow pattern and leaflet stress of a bileaflet bioprosthetic mitral valve. J. Heart Valve Dis. 21: pp. 225
    41. King, M, David, T, Fisher, J (1994) An initial parametric study on fluid flow through bileaflet mechanical heart valves using computational fluid dynamics. Proc. Inst. Mech. Eng. 208: pp. 63-72 CrossRef
    42. Levine, RA, Handschumacher, MD, Sanfilippo, AJ, Hagege, AA, Harrigan, P, Marshall, JE, Weyman, AE (1989) Three-dimensional echocardiographic reconstruction of the mitral valve, with implications for the diagnosis of mitral valve prolapse. Circulation 80: pp. 589-598 CrossRef
    43. Little, SH, Ben Zekry, S, Lawrie, GM, Zoghbi, WA (2010) Dynamic annular geometry and function in patients with mitral regurgitation: insight from three-dimensional annular tracking. J. Am. Soc. Echocardiogr. 23: pp. 872-879 CrossRef
    44. Mandinov, L, Bullesfeld, L, Kuck, KH, Grube, E (2011) Early insight into mitralign direct annuloplasty for treatment of functional mitral regurgitation. Interv. Cardiol. Rev. 6: pp. 170-172 CrossRef
    45. Marchand, MA, Aupart, MR, Norton, R, Goldsmith, IR, Pelletier, LC, Pellerin, M, Dubiel, T, Daenen, WJ, Herijgers, P, Casselman, FP (2001) Fifteen-year experience with the mitral carpentier-edwards perimount pericardial bioprosthesis. Ann. Thorac. Surg. 71: pp. S236-S239 CrossRef
    46. Mauri, L, Foster, E, Glower, DD, Apruzzese, P, Massaro, JM, Herrmann, HC, Hermiller, J, Gray, W, Wang, A, Pedersen, WR, Bajwa, T, Lasala, J, Low, R, Grayburn, P, Feldman, T (2013) 4-year results of a randomized controlled trial of percutaneous repair versus surgery for mitral regurgitation. J. Am. Coll. Cardiol. 62: pp. 317-328 CrossRef
    47. Mih膬il膬, S., D. Muraru, E. Piasentini, M. H. Miglioranza, D. Peluso, U. Cucchini, S. Iliceto, D. Vinereanu, and L. P. Badano. Quantitative analysis of mitral annular geometry and function in healthy volunteers using transthoracic three-dimensional echocardiography. / J. Am. Soc. Echocardiogr. 27:846鈥?57,聽2014.
    48. Moidl, R, Simon, P, Wolner, E (2002) The on-x prosthetic heart valve at five years. Ann. Thorac. Surg. 74: pp. 1312-1317 CrossRef
    49. Moritz, A, Steinseifer, U, Kobina, G, Neuwirth-Riedl, K, Wolters, H, Reul, H, Wolner, E (1991) Closing click of st jude medical and duromedics edwards bileaflet valves: complaints created by valve noise and their relation to sound pressure and hearing level. Eur. Heart J. 12: pp. 673-679
    50. Nishimura, RA, Otto, CM, Bonow, RO, Carabello, BA, Erwin, JP, Guyton, RA, O鈥橤ara, PT, Ruiz, CE, Skubas, NJ, Sorajja, P (2014) 2014 AHA/ACC guideline for the management of patients with valvular heart disease: a report of the american college of cardiology/American heart association task force on practice guidelines. J. Am. Coll. Cardiol. 63: pp. e57-e185 CrossRef
    51. Nkomo, VT, Gardin, JM, Skelton, TN, Gottdiener, JS, Scott, CG, Enriquez-Sarano, M (2006) Burden of valvular heart diseases: a population-based study. Lancet 368: pp. 1005-1011 CrossRef
    52. Pedersen, TA, Johansen, P, Hasenkam, JM, Koerfer, R, Koertke, H, Nygaard, H (2008) Are sounds from mechanical heart valves equal for different valve types?. J. Heart Valve Dis. 17: pp. 579-582
    53. Pibarot, P, Dumesnil, JG (2000) Hemodynamic and clinical impact of prosthesis鈥損atient mismatch in the aortic valve position and its prevention. J. Am. Coll. Cardiol. 36: pp. 1131-1141 CrossRef
    54. Riess, F-C, Bader, R, Cramer, E, Hansen, L, Kleijnen, B, Wahl, G, Wallrath, J, Winkel, S, Bleese, N (2007) Hemodynamic performance of the medtronic mosaic porcine bioprosthesis up to ten years. Ann. Thorac. Surg. 83: pp. 1310-1318 CrossRef
    55. Riess, F-C, Cramer, E, Hansen, L, Schiffelers, S, Wahl, G, Wallrath, J, Winkel, S, Kremer, P (2010) Clinical results of the medtronic mosaic porcine bioprosthesis up to 13 years. Eur. J. Cardiothorac. Surg. 37: pp. 145-153 CrossRef
    56. Schofer, J, Siminiak, T, Haude, M, Herrman, JP, Vainer, J, Wu, JC, Levy, WC, Mauri, L, Feldman, T, Kwong, RY, Kaye, DM, Duffy, SJ, T眉bler, T, Degen, H, Brandt, MC, Bibber, R, Goldberg, S, Reuter, DG, Hoppe, UC (2009) Percutaneous mitral annuloplasty for functional mitral regurgitation: results of the carillon mitral annuloplasty device european union study. Circulation 120: pp. 326-333 CrossRef
    57. Shipkowitz, T, Ambrus, J, Kurk, J, Wickramasinghe, K (2002) Evaluation technique for bileaflet mechanical valves. J. Heart Valve Dis. 11: pp. 275-282
    58. Siminiak, T, Wu, JC, Haude, M, Hoppe, UC, Sadowski, J, Lipiecki, J, Fajadet, J, Shah, AM, Feldman, T, Kaye, DM, Goldberg, SL, Levy, WC, Solomon, SD, Reuter, DG (2012) Treatment of functional mitral regurgitation by percutaneous annuloplasty: results of the titan trial. Eur. J. Heart Fail. 14: pp. 931-938 CrossRef
    59. Valfr猫, C, Ius, P, Minniti, G, Salvador, L, Bottio, T, Cesari, F, Rizzoli, G, Gerosa, G (2010) The fate of hancock II porcine valve recipients 25聽years after implant. Eur. J. Cardiothorac. Surg. 38: pp. 141-146 CrossRef
    60. Nooten, GJ, Bov茅, T, Belleghem, Y, Fran莽ois, K, Caes, F, Vandenplas, G, Pauw, M, Taeymans, Y (2014) Twenty-year single-center experience with the medtronic open pivot mechanical heart valve. Ann. Thorac. Surg. 97: pp. 1306-1313 CrossRef
    61. Nooten, GJ, Caes, F, Francois, K, Belleghem, Y, Bov茅, T, Vandenplas, G, Pauw, M, Taeymans, Y (2009) Fifteen years鈥?single-center experience with the ATS bileaflet valve. J. Heart Valve Dis. 18: pp. 445-452
    62. Vergnat, M, Jassar, AS, Jackson, BM, Ryan, LP, Eperjesi, TJ, Pouch, AM, Weiss, SJ, Cheung, AT, Acker, MA, Gorman, JH, Gorman, RC (2011) Ischemic mitral regurgitation: a quantitative three-dimensional echocardiographic analysis. Ann. Thorac. Surg. 91: pp. 157-164 CrossRef
    63. Vyavahare, N, Hirsch, D, Lerner, E, Baskin, JZ, Schoen, FJ, Bianco, R, Kruth, HS, Zand, R, Levy, RJ (1997) Prevention of bioprosthetic heart valve calcification by ethanol preincubation efficacy and mechanisms. Circulation 95: pp. 479-488 CrossRef
    64. Wippermann, J., J.M. Albes, N. Madershahian, M. Breuer, U. Franke, and T. Wahlers. Three years鈥?experience with the on-x conform-x bileaflet prosthesis for 鈥榓trialized鈥?mitral valve replacement: a preliminary report. / J. Heart Valve Dis. 14:637鈥?43, 2005.
    65. Xenos, M, Girdhar, G, Alemu, Y, Jesty, J, Slepian, M, Einav, S, Bluestein, D (2010) Device thrombogenicity emulator (DTE)鈥攄esign optimization methodology for cardiovascular devices: a study in two bileaflet MHV designs. J. Biomech. 43: pp. 2400-2409 CrossRef
    66. Yin, W, Ngwe, EC, Rubenstein, DA (2012) A biocompatible flow chamber to study the hemodynamic performance of prosthetic heart valves. ASAIO J. 58: pp. 470-480 CrossRef
    67. Yun, BM, Wu, J, Simon, HA, Arjunon, S, Sotiropoulos, F, Aidun, CK, Yoganathan, AP (2012) A numerical investigation of blood damage in the hinge area of aortic bileaflet mechanical heart valves during the leakage phase. Ann. Biomed. Eng. 40: pp. 1468-1485 CrossRef
    68. Zingg, U, Aeschbacher, B, Seiler, C, Althaus, U, Carrel, T (1997) Early experience with the new masters series of St. Jude medical heart valve: in vivo hemodynamic and clinical results in patients with narrowed aortic annulus. J. Heart Valve Dis. 6: pp. 535-541
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Biomedicine
    Biomedicine
    Biomedical Engineering
    Biophysics and Biomedical Physics
    Mechanics
    Biochemistry
  • 出版者:Springer Netherlands
  • ISSN:1573-9686
文摘
In this portion of an extensive review of heart valve engineering, we focus on the current and emerging technologies and techniques to repair or replace the mitral valve. We begin with a discussion of the currently available mechanical and bioprosthetic mitral valves followed by the rationale and limitations of current surgical mitral annuloplasty methods; a discussion of the technique of neo-chordae fabrication and implantation; a review the procedures and clinical results for catheter-based mitral leaflet repair; a highlight of the motivation for and limitations of catheter-based annular reduction therapies; and introduce the early generation devices for catheter-based mitral valve replacement.

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