Biological pacemakers: Concepts and techniques

被引:3
|
作者
Ambesh, Paurush [1 ]
Kapoor, Aditya [2 ]
机构
[1] Maimonides Hosp, Dept Internal Med, New York, NY USA
[2] Sanjay Gandhi Post Grad Inst Med Sci, Dept Cardiol, Lucknow 226014, Uttar Pradesh, India
来源
NATIONAL MEDICAL JOURNAL OF INDIA | 2017年 / 30卷 / 06期
关键词
MESENCHYMAL STEM-CELLS; GENE-TRANSFER; CANINE HEART; CARDIOMYOCYTES; ENHANCEMENT; EXPRESSION; MYOCYTES; DELIVERY; THERAPY; CHANNEL;
D O I
10.4103/0970-258X.239072
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The sinoatrial (SA) node is the dominant pacemaker of the heart which initiates the process of impulse generation in the cardiac tissue, thereby defining the rate and rhythm of cardiac contraction. The automaticity of the conduction cells in the SA node is due to ion channels which are inter-linked by molecular, histological and electrophysiological mechanisms causing spontaneous diastolic depolarization and generation of an impulse. The SA nodal action potentials are then transmitted to the ventricles by electrical coupling of the myocytes in different areas of the heart. Regulatory pathways overseeing cardiac impulse generation and conduction provide effective and safe pacing, and help maintain the rate according to the physiological demands of the individual's body. Failure of physiological pacing due to any pathology in the SA or atrioventricular node necessitates implantation of a permanent pacemaker. Implantable pacemakers, despite technological advances, are not without practical limitations including a defined battery life leading to lead and/or generator replacement at periodic intervals, vascular complications, occasional component failure, electronic interference from external/internal sources, e.g. myopotentials, electromechanical interference, etc., inadequate or incomplete physiological rate response to autonomic influences (devices have certain algorithms to address these issues) and most importantly the risk of infection. A biological pacemaker is therefore emerging as a promising technique to counter these challenges.
引用
收藏
页码:324 / 326
页数:3
相关论文
共 50 条
  • [31] DEFINITION OF BIOLOGICAL CONCEPTS
    SCHONFIE.W
    DEVELOPMENTAL MEDICINE AND CHILD NEUROLOGY, 1966, 8 (05): : 623 - &
  • [32] LEGISLATING BIOLOGICAL CONCEPTS
    MOORE, GE
    SCIENCE, 1968, 160 (3829) : 717 - &
  • [33] Fundamental Biological Concepts
    Rickett, H. W.
    JOURNAL OF HIGHER EDUCATION, 1933, 4 (02): : 67 - 70
  • [34] SUPERVENIENCE OF BIOLOGICAL CONCEPTS
    ROSENBERG, A
    PHILOSOPHY OF SCIENCE, 1978, 45 (03) : 368 - 386
  • [35] Biological Pacemakers Are We at the Dawn of a New Treatment Era?
    Vatta, Matteo
    Zipes, Douglas P.
    JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2013, 61 (11) : 1202 - 1203
  • [36] NOVEL IMMUNOHISTOCHEMICAL AND STRUCTURAL FEATURES OF SUBSIDIARY ATRIAL PACEMAKERS IN THE GOAT; RELEVANCE TO POTENTIAL SITES FOR BIOLOGICAL PACEMAKERS
    Borbas, Zoltan
    Saeed, Yawer
    Caldwell, Jane
    Jawad, Faisal
    Vohra, Akbar
    Hoschtitzky, Andreas
    Boyett, Mark
    Garratt, Clifford
    Dobrzynski, Halina
    HEART, 2014, 100 : A92 - A93
  • [37] Synthetic and Biological Graft Materials: Biological Concepts
    Asfaw, Tirsit S.
    Northington, Gina
    SEMINARS IN COLON AND RECTAL SURGERY, 2009, 20 (03) : 112 - 117
  • [38] Biological techniques
    Caron, Claudine
    HEMATOLOGIE, 2014, 20 : 14 - 22
  • [39] Biological Techniques
    不详
    SCHOOL AND SOCIETY, 1949, 69 (1787): : 214 - 214
  • [40] Measurement techniques for assessing the influence of electromagnetic fields on implanted pacemakers
    Van Wijk Van Brievingh, R.P.
    Hoekstra, A.
    De Bakker, J.M.T.
    Hemelaar, A.
    1600, (12):