Literature DB >> 25130977

The electrode-tissue interface: the revolutionary role of steroid-elution.

Harry G Mond1, John R Helland, Kenneth Stokes, Gene A Bornzin, Rick McVenes.   

Abstract

The electrode-tissue interface is that area lying between the cathode of a low-voltage implantable pacemaker or cardioverter-defibrillator (ICD) lead and the endocardium or epi-myocardium of the cardiac chamber being paced. The electrical stimulus that is delivered to this interface is responsible for myocyte depolarization with consequent cardiac contraction. The process by which this occurs is reasonably well understood and any explanation requires a basic understanding of the physics and cellular electrophysiology of pacing. The effective and efficient delivery of electrical energy to the myocardium via the lead is dependent on many factors to be discussed in this review. However, despite numerous evolutionary changes occurring in the cathode's material, design, and surface configuration, it was not until the incorporation of steroid-elution to the electrode-tissue interface that reliable and significantly low stimulation threshold cardiac pacing became possible. ©2014 Wiley Periodicals, Inc.

Entities:  

Keywords:  biomedical engineering; pacing

Mesh:

Substances:

Year:  2014        PMID: 25130977     DOI: 10.1111/pace.12461

Source DB:  PubMed          Journal:  Pacing Clin Electrophysiol        ISSN: 0147-8389            Impact factor:   1.976


  12 in total

1.  A transient, closed-loop network of wireless, body-integrated devices for autonomous electrotherapy.

Authors:  Yeon Sik Choi; Hyoyoung Jeong; Rose T Yin; Raudel Avila; Anna Pfenniger; Jaeyoung Yoo; Jong Yoon Lee; Andreas Tzavelis; Young Joong Lee; Sheena W Chen; Helen S Knight; Seungyeob Kim; Hak-Young Ahn; Grace Wickerson; Abraham Vázquez-Guardado; Elizabeth Higbee-Dempsey; Bender A Russo; Michael A Napolitano; Timothy J Holleran; Leen Abdul Razzak; Alana N Miniovich; Geumbee Lee; Beth Geist; Brandon Kim; Shuling Han; Jaclyn A Brennan; Kedar Aras; Sung Soo Kwak; Joohee Kim; Emily Alexandria Waters; Xiangxing Yang; Amy Burrell; Keum San Chun; Claire Liu; Changsheng Wu; Alina Y Rwei; Alisha N Spann; Anthony Banks; David Johnson; Zheng Jenny Zhang; Chad R Haney; Sung Hun Jin; Alan Varteres Sahakian; Yonggang Huang; Gregory D Trachiotis; Bradley P Knight; Rishi K Arora; Igor R Efimov; John A Rogers
Journal:  Science       Date:  2022-05-26       Impact factor: 63.714

2.  Permanent epicardial pacing in neonates and infants less than 1 year old: 12-year experience at a single center.

Authors:  Junfei Zhao; Ying Huang; Liming Lei; Zeyang Yao; Tian Liu; Hailong Qiu; Canhui Lin; Xiaobing Liu; Yun Teng; Xiaohua Li; Yong Zhang; Jian Zhuang; Jimei Chen; Shusheng Wen
Journal:  Transl Pediatr       Date:  2022-06

3.  Materials Perspectives for Self-Powered Cardiac Implantable Electronic Devices toward Clinical Translation.

Authors:  Jun Li; Xudong Wang
Journal:  Acc Mater Res       Date:  2021-08-23

4.  Mechanistic implication of decreased plasma atrial natriuretic peptide level for transient rise in the atrial capture threshold early after ICD or CRT-D implantation.

Authors:  Kojiro Ogawa; Kentaro Yoshida; Yoshiko Uehara; Mari Ebine; Akira Kimata; Hidetaka Nishina; Noriyuki Takeyasu; Yuichi Noguchi; Masaki Ieda; Kazutaka Aonuma; Akihiko Nogami
Journal:  J Interv Card Electrophysiol       Date:  2018-07-17       Impact factor: 1.900

5.  Combining current of injury and P-wave sensing optimized right atrial active-fixation leads implantation.

Authors:  Meng-Rong Chen; Fei-Long Zhang; Wei-Wei Wang; Xue-Hai Chen; Jian-Hua Chen; Liang-Long Chen
Journal:  J Thorac Dis       Date:  2019-04       Impact factor: 2.895

6.  Biomarkers of Myocardial Injury and Inflammation after Permanent Pacemaker Implantation: The Lead Fixation Type Effect.

Authors:  Dimitrios Varvarousis; Nikolaos Goulas; Kali Polytarchou; Stavroula N Psychari; Konstantinos Paravolidakis; Agapi Konstantinidou; Dionysios Tsoukalas; Delia Vlad; Konstantina Bouki; Athanasios Kotsakis
Journal:  J Atr Fibrillation       Date:  2018-04-30

7.  Foreign Body Reaction to Implanted Biomaterials and Its Impact in Nerve Neuroprosthetics.

Authors:  Alejandro Carnicer-Lombarte; Shao-Tuan Chen; George G Malliaras; Damiano G Barone
Journal:  Front Bioeng Biotechnol       Date:  2021-04-15

8.  Injectable conductive hydrogel can reduce pacing threshold and enhance efficacy of cardiac pacemaker.

Authors:  Zhao An; Jun Wu; Shu-Hong Li; Shanglin Chen; Fang-Lin Lu; Zhi-Yun Xu; Hsing-Wen Sung; Ren-Ke Li
Journal:  Theranostics       Date:  2021-02-06       Impact factor: 11.556

9.  Engineered hybrid cardiac patches with multifunctional electronics for online monitoring and regulation of tissue function.

Authors:  Ron Feiner; Leeya Engel; Sharon Fleischer; Maayan Malki; Idan Gal; Assaf Shapira; Yosi Shacham-Diamand; Tal Dvir
Journal:  Nat Mater       Date:  2016-03-14       Impact factor: 43.841

10.  Epicardial left ventricular leads via minimally invasive technique: a role of steroid eluting leads.

Authors:  Etem Caliskan; Florian Fischer; Felix Schoenrath; Maximilian Y Emmert; Francesco Maisano; Volkmar Falk; Christoph T Starck; Tomas Holubec
Journal:  J Cardiothorac Surg       Date:  2017-11-08       Impact factor: 1.637

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