Cor Vasa 2014, 56(5):587-591

Nové trendy v kardiostimulaci

Mgr. Kamila Holdová
Kardiologické oddělení, Nemocnice Na Homolce, Praha

Obor kardiostimulace zažívá každoročně mohutný pokrok, objevují se nové a velmi zajímavé trendy, technologie i nové systémy. Článek přináší soubor poznatků o kardiostimulaci, a to od jejích počátků přes nedávnou minulost, aktuální přítomnost a blízkou budoucnost. Z nových trendů je největší pozornost věnována systému BackBeat Moderato k ovlivnění krevního tlaku, bezelektrodovému ("leadless") stimulátoru Nanostim a tzv. ultrazvukové bezdrátové stimulaci levé komory (WICS) sloužící k resynchronizační léčbě.

Keywords: BackBeat Moderato; Kardiostimulátor; Leadless; Nanostim; Nové algoritmy v kardiostimulaci; WICS

Published: October 1, 2014  Show citation

ACS AIP APA ASA Harvard Chicago Chicago Notes IEEE ISO690 MLA NLM Turabian Vancouver
Holdová K. Nové trendy v kardiostimulaci. Cor Vasa. 2014;56(5):587-591.
Download citation

References

  1. J. Bednár, Polstoročie elektrickej stimulácie srdca - pohlad do histórie vo svete a na Slovensku. [prezentace]. 2010 [cit. 2014].
  2. K. Holdová, Nové trendy v kardiostimulaci [prezentace]. 2014 [2014].
  3. J. Lipoldová, M. Novák, Historie trvalé kardiostimulace, Kardiologická revue 8 (2006) 166-173.
  4. M. Matchett, S.F. Sears, G. Hazelton, et al., The implantable cardioverter defibrillator: its history, current psychological impact and future, Expert Review on Medical Devices 6 (2009) 43-50. Go to original source... Go to PubMed...
  5. J. Špinar, J. Vítovec, Jak dobře žít s nemocným srdcem, Praha: Grada Publishing, 2007.
  6. M. Novák, P. Kamarýt, P. Mach, Nové technologie v oblasti kardiostimulátorů a implantabilních kardioverterů-defibrilátorů. In: J. Lukl, P. Heinc, et al., Moderní léčba arytmií, Praha: Grada Publishing, 2001, 173 s.
  7. F. Di Gregorio, A. Morra, M. Finesso, M.G. Bongiorni, Transvalvular impedance (TVI) recording under electrical and pharmocological cardiac stimulation, Pacing and Clinical Electrophysiology 19 (11 Pt 2) (1996) 1689-1693. Go to original source... Go to PubMed...
  8. K. Holdová, Nové trendy v kardiostimulaci [prezentace]. 2008 [cit. 2008].
  9. H. Furusho, T. Kusayama, A. Chikata, et al., Magnetic resonance imaging in a patient with an implantable cardiac defibrillator, Journal of Arrhythmia 28 (2012) 353-355. Go to original source...
  10. A. Roguin, M.M. Zviman, G.R. Meininger, et al., Modern pacemaker and implantable cardioverter/defibrillator systems can be magnetic resonance imaging safe in vitro and in vivo assessment of safety and function at 1.5 T, Circulation 110 (2004) 475-482. Go to original source... Go to PubMed...
  11. A. Roguin, J. Schwitter, C. Vahlhaus, et al., Magnetic resonance imaging in individuals with cardiovascular implantable electronic devices, Europace 10 (2008) 336-346. Go to original source... Go to PubMed...
  12. P.J. Sousa, D. Cavaco, J.P. Neves, et al., Subcutaneous ICD implantation, Revista portuguesa de cardiologia: orgao oficial da Sociedade Portuguesa de Cardiologia 29 (2010) 451-457.
  13. L. Dabiri Abkenari, D.A. Theuns, S.D. Valk, et al., Clinical experience with a novel subcutaneous implantable defibrillator system in a single center, Clinical Research in Cardiology 100 (2011) 737-744. Go to original source... Go to PubMed...
  14. Medical EXPO [online]. 2014 [cit. 2014-07-30]. Dostupné z: http://www.medicalexpo.de/prod/cameron-health-77935.html
  15. C. De Asmundis, D. Ricciardi, M. Namdar, et al., ICD function and dysfunction in patients with arrhythmogenic cardiac diseases: the role of home monitoring, Acta Cardiologica 68 (2013) 387-394. Go to original source... Go to PubMed...
  16. S. Spencker, N. Coban, L. Koch, et al., Potential role of home monitoring to reduce inappropriate shocks in implantable cardioverter-defibrillator patients due to lead failure, Europace 11 (4) (2009) 483-488. Go to original source... Go to PubMed...
  17. A. Roguin, J. Schwitter, C. Vahlhaus, et al., Magnetic resonance imaging in individuals with cardiovascular implantable electronic devices, Europace 10 (2008) 336-346. Go to original source... Go to PubMed...
  18. Cardion [online]. 2014 [cit. 2014-07-30]. Dostupné z: http://www.cardion.cz/nanostim
  19. H. Wieneke, S. Rickers, J. Velleuer, et al., Leadless pacing using induction technology: impact of pulse shape and geometric factors on pacing efficiency, Europace 15 (3) (2013) 453-459. Go to original source... Go to PubMed...
  20. P.M. Jacobson, Rate responsive leadless cardiac pacemaker. U.S. Patent No 7,937,148, 2011.
  21. Vizionplus.tv [online]. 2014 [cit. 2014-07-30]. Dostupné z: http://vizionplus.al/aparati-i-ri-per-zemren/
  22. A. Auricchio, P.P. Delnoy, F. Regoli, et al., First-in-man implantation of leadless ultrasound-based cardiac stimulation pacing system: novel endocardial left ventricular resynchronization therapy in heart failure patients, Europace 15 (2013) 1191-1197. Go to original source... Go to PubMed...




Cor et Vasa

You are accessing a site intended for medical professionals, not the lay public. The site may also contain information that is intended only for persons authorized to prescribe and dispense medicinal products for human use.

I therefore confirm that I am a healthcare professional under Act 40/1995 Coll. as amended by later regulations and that I have read the definition of a healthcare professional.