Academic literature on the topic 'System of conduction'

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Journal articles on the topic "System of conduction"

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Pelter, Michele M., and Mary G. Carey. "Conduction System Disease." American Journal of Critical Care 19, no. 4 (2010): 383–84. http://dx.doi.org/10.4037/ajcc2010915.

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FUKAYA, MASAHIKO. "Studies on conduction recovery of colateral conduction systems by atrial extrastimulation. Hyperconduction in colateral conduction system." Japanese Journal of Electrocardiology 9, no. 1 (1989): 115–21. http://dx.doi.org/10.5105/jse.9.115.

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Park, David S., and Glenn I. Fishman. "The Cardiac Conduction System." Circulation 123, no. 8 (2011): 904–15. http://dx.doi.org/10.1161/circulationaha.110.942284.

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Fishman, Glenn I. "Understanding Conduction System Development." Circulation Research 96, no. 8 (2005): 809–11. http://dx.doi.org/10.1161/01.res.0000165653.83279.20.

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Kennedy, Alan, Dewar D. Finlay, Daniel Guldenring, Raymond Bond, Kieran Moran, and James McLaughlin. "The Cardiac Conduction System." Critical Care Nursing Clinics of North America 28, no. 3 (2016): 269–79. http://dx.doi.org/10.1016/j.cnc.2016.04.001.

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Rentschler, S., D. M. Vaidya, H. Tamaddon, et al. "Visualization and functional characterization of the developing murine cardiac conduction system." Development 128, no. 10 (2001): 1785–92. http://dx.doi.org/10.1242/dev.128.10.1785.

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The cardiac conduction system is a complex network of cells that together orchestrate the rhythmic and coordinated depolarization of the heart. The molecular mechanisms regulating the specification and patterning of cells that form this conductive network are largely unknown. Studies in avian models have suggested that components of the cardiac conduction system arise from progressive recruitment of cardiomyogenic progenitors, potentially influenced by inductive effects from the neighboring coronary vasculature. However, relatively little is known about the process of conduction system develop
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Christensen, Lisa, Laura Smith-Olinde, Jillian Kimberlain, Gresham T. Richter, and John L. Dornhoffer. "Comparison of Traditional Bone-Conduction Hearing Aids with the Baha® System." Journal of the American Academy of Audiology 21, no. 04 (2010): 267–73. http://dx.doi.org/10.3766/jaaa.21.4.5.

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Background: Little research exists to demonstrate efficacy and verification measures of the Baha® system versus traditional bone-conduction hearing aids. This study gives statistical data about 10 children who have used traditional bone-conduction hearing aids, Baha coupled to a Softband, and the Baha system implanted. Purpose: The purpose of this study was to compare functional gain at 500, 1000, 2000, and 4000 Hz for infants and children with bilateral conductive hearing loss who were initially fit with traditional bone-conduction devices then progressed to Baha with Softband and finally to
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Akimoto, H. "Conduction system of huge VSD." Japanese Journal of Cardiovascular Surgery 20, no. 6 (1991): 1219–20. http://dx.doi.org/10.4326/jjcvs.20.1219.

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Rossi, Lino. "Conduction system in sudden death." Journal of the American College of Cardiology 10, no. 6 (1987): 1366. http://dx.doi.org/10.1016/s0735-1097(87)80145-6.

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Bauernfeind, Robert A., William J. Welch, and Sheldon L. Brownstein. "Distal Atrioventricular Conduction System Function." Cardiology Clinics 4, no. 3 (1986): 417–28. http://dx.doi.org/10.1016/s0733-8651(18)30601-5.

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Dissertations / Theses on the topic "System of conduction"

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Rababy, Nada. "Estimation of EMG conduction velocity using system identification." Thesis, McGill University, 1987. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=63819.

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Bordas, Rafel. "Multiscale modelling of the cardiac specialized conduction system." Thesis, University of Oxford, 2011. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.573804.

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Death due to lethal cardiac arrhythmias is the leading cause of mortality in Western society. Many of the fundamental mechanisms underlying the onset of arrthythmias, their maintenance and termination, still remain poorly understood. The specialized conduction (or His-Purkinje) system is fundamental to ventricular electrophysiological function and is a key player in various cardiac diseases. In recent years, computational simulation has become an important tool in im- proving our understanding ofthese mechanisms. Current state-of-the-art computational ventric- ular electrophysiology models oft
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Gharibeh, Lara. "Gata6 Haploinsufficiency Leads to Aortic Valve, Conduction System and Limbs Defects." Thesis, Université d'Ottawa / University of Ottawa, 2018. http://hdl.handle.net/10393/37584.

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Cardiovascular diseases are the leading cause of morbidity and mortality worldwide. Congenital heart disease (CHD) is a risk factor for premature cardiovascular complications. Great advances have occurred in the past years leading to the identification of several genes essential for proper cardiac formation such as GATA4/5/6 mutated in some individuals with CHD. GATA6 is a zinc finger transcription factor whose presence is crucial for early embryonic development. GATA6 is expressed in many cell types of the heart including myocardial, endocardial, neural crest, and vascular smooth muscle. In h
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Ma, Pei. "OPTICAL IMAGING OF EMBRYONIC CARDIAC CONDUCTION." Case Western Reserve University School of Graduate Studies / OhioLINK, 2016. http://rave.ohiolink.edu/etdc/view?acc_num=case1464714110.

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Royal, Alice. "The regulation of trafficking and function of KCNQ1 potassium channels by phosphatidylinositol-4,5-bisphosphate." Thesis, Queen Mary, University of London, 2017. http://qmro.qmul.ac.uk/xmlui/handle/123456789/25940.

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The IKs current constitutes part of the repolarisation reserve in the human myocardium, and whilst it does not play a major role at resting heart rates, it becomes a crucial component of repolarisation in the setting of increased sympathetic tone and high heart rates. The formation of the IKs current requires the KCNQ1 α-subunit and the KCNE1 β-subunit. Mutations in either of these subunits can lead to long QT syndrome types 1 and 5, respectively. Loss-of-function mutations in the IKs channel can reduce the repolarisation reserve and lead to action potential prolongation, predisposing to letha
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Quigley, Gillian Margaret. "Inflammation of the heart in heart disease." Thesis, University of Manchester, 2013. https://www.research.manchester.ac.uk/portal/en/theses/inflammation-of-the-heart-in-heart-disease(eae19e58-aeb4-4673-924e-1dbd1c831fec).html.

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Heart failure patients have dysfunction of the cardiac conduction system that contributes to a high burden of arrhythmias including atrial fibrillation and sudden cardiac death. Heart failure has been associated with the inflammatory response, but it is unknown if inflammation is playing a role in the remodelling of the cardiac conduction system in heart failure. Inflammation has been shown to be present in the myocardium from failing hearts and it is known to have detrimental effects on cardiac function, inducing fibrosis, remodelling of ion channels and even arrhythmias. However, the effect
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Hao, Guoliang. "Imaging of the atria and cardiac conduction system : from experiment to computer modelling." Thesis, University of Manchester, 2013. https://www.research.manchester.ac.uk/portal/en/theses/imaging-of-the-atria-and-cardiac-conduction-system--from-experiment-to-computer-modelling(3e5dba52-70f3-4fa8-890d-adfe2380086c).html.

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Background: Experimental mapping and computer modelling provide important platforms to study the fundamental mechanisms underlying normal and abnormal activation of the heart. However, accurate computer modelling requires detailed anatomical models and needs support and validation from experimental data. Aims: 1) Construction of detailed anatomical heart models with the cardiac conduction system (CCS). 2) Mapping of the electrical activation sequence in rabbit atria to support and validate computer simulation. 3) Mapping of the spontaneous activity in the atrioventricular ring tissues (AV ring
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Shrestha, Kiran (Engineer). "Electrical Conduction Mechanisms in the Disordered Material System P-type Hydrogenated Amorphous Silicon." Thesis, University of North Texas, 2014. https://digital.library.unt.edu/ark:/67531/metadc700106/.

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The electrical and optical properties of boron doped hydrogenated amorphous silicon thin films (a-Si) were investigated to determine the effect of boron and hydrogen incorporation on carrier transport. The a-Si thin films were grown by plasma enhanced chemical vapor deposition (PECVD) at various boron concentrations, hydrogen dilutions, and at differing growth temperatures. The temperature dependent conductivity generally follows the hopping conduction model. Above a critical temperature, the dominant conduction mechanism is Mott variable range hopping conductivity (M-VRH), where p = ¼, and th
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Modgi, Amol Polo-Parada Luis. "The role of sodium-calcium exchanger in the electrical activity of embryonic chicken heart." Diss., Columbia, Mo. : University of Missouri--Columbia, 2008. http://hdl.handle.net/10355/6671.

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The entire thesis text is included in the research.pdf file; the official abstract appears in the short.pdf file; a non-technical public abstract appears in the public.pdf file. Title from PDF of title page (University of Missouri--Columbia, viewed on September 25, 2009). Thesis advisor: Dr. Luis Polo Parada. Includes bibliographical references.
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Crick, Simon John. "Innervation of the conduction system and other cardiac tissues in men and animal models." Thesis, Imperial College London, 1998. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.286229.

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Books on the topic "System of conduction"

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Foundation), Symposium on Development of the Cardiac Conduction System (2002 Novartis. Development of the cardiac conduction system. Wiley, 2003.

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1908-, Lev Maurice, and Kirklin John W, eds. Cardiac surgery and the conduction system. 2nd ed. Futura Pub. Co., 1992.

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Chadwick, Derek J., and Jamie Goode, eds. Development of the Cardiac Conduction System. John Wiley & Sons, Ltd, 2003. http://dx.doi.org/10.1002/0470868066.

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1908-, Lev Maurice, and National Heart, Lung, and Blood Institute., eds. The cardiac conduction system in unexplained sudden death. Futura Pub. Co., 1990.

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Matematicheskoe modelirovanie bioėlektricheskogo generatora serdt͡s︡a. Nauka. Fizmatlit, 1999.

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Clinical electromyography: Nerve conduction studies. 3rd ed. Lippincott Williams & Wilkins, 2003.

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Clinical electromyography: Nerve conduction studies. 2nd ed. Williams & Wilkins, 1993.

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Raimbault, Jean. Les conductions nerveuses chez l'enfant normal: Étude et évolution. Expansion scientifique française, 1988.

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Kurosawa, H. Atrioventricular conduction in congenital heart disease: Surgical anatomy. Springer-Verlag, 1987.

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Sunao, Tawara, ed. The Conduction system of the mammalian heart: Selections from Tawara's monograph : (English translation). Production assistance by Simul International, 1993.

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Book chapters on the topic "System of conduction"

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Canale, Enrico D., Gordon R. Campbell, Joseph J. Smolich, and Julie H. Campbell. "The Conduction System." In Cardiac Muscle. Springer Berlin Heidelberg, 1986. http://dx.doi.org/10.1007/978-3-642-50115-9_4.

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Bugnitz, Christopher, and Jessica Bowman. "Cardiac Conduction System." In Pediatric Electrocardiography. Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-26258-1_4.

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Thiene, Gaetano, Domenico Corrado, and Cristina Basso. "Conduction System Disease." In Sudden Cardiac Death in the Young and Athletes. Springer Milan, 2016. http://dx.doi.org/10.1007/978-88-470-5776-0_7.

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Mohan, Rajiv, and Vincent M. Christoffels. "Cardiac Conduction System." In Congenital Heart Diseases: The Broken Heart. Springer Vienna, 2016. http://dx.doi.org/10.1007/978-3-7091-1883-2_8.

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Laske, Timothy G., Maneesh Shrivastav, and Paul A. Iaizzo. "The Cardiac Conduction System." In Handbook of Cardiac Anatomy, Physiology, and Devices. Humana Press, 2009. http://dx.doi.org/10.1007/978-1-60327-372-5_11.

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Laske, Timothy G., Maneesh Shrivastav, and Paul A. Iaizzo. "The Cardiac Conduction System." In Handbook of Cardiac Anatomy, Physiology, and Devices. Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-19464-6_13.

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Berdajs, Denis, and Marko I. Turina. "The Heart Conduction System." In Operative Anatomy of the Heart. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-540-69229-4_10.

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Mikawa, Takashi, Robert G. Gourdie, Jeanette Hyer, and Kimiko Takebayashi-Suzuki. "Cardiac Conduction System Development." In Formation of the Heart and Its Regulation. Birkhäuser Boston, 2001. http://dx.doi.org/10.1007/978-1-4612-0207-3_7.

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Canale, Enrico D., Gordon R. Campbell, Joseph J. Smolich, and Julie H. Campbell. "Development of the Conduction System." In Cardiac Muscle. Springer Berlin Heidelberg, 1986. http://dx.doi.org/10.1007/978-3-642-50115-9_7.

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Oliveira, Pedro. "Anatomy of the Conduction System." In Guide to Canine and Feline Electrocardiography. John Wiley & Sons, Ltd, 2018. http://dx.doi.org/10.1002/9781119254355.ch1.

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Conference papers on the topic "System of conduction"

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Peng, Wei-Ting, En-Wei Huang, Wei-Lun Chang, et al. "Virtual Conduction System with Multi-Resolution Wall Display." In Multimedia and Expo, 2007 IEEE International Conference on. IEEE, 2007. http://dx.doi.org/10.1109/icme.2007.4284572.

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Azzouzi, A., Y. Coudière, R. Turpault, Theodore E. Simos, George Psihoyios, and Ch Tsitouras. "A mathematical model of the ventricular conduction system." In ICNAAM 2010: International Conference of Numerical Analysis and Applied Mathematics 2010. AIP, 2010. http://dx.doi.org/10.1063/1.3498491.

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Cristobal Flor, Omar, Jorge Mauricio Fuentes, Diego Fernando Veintimilla, Franyelit Maria Suarez, and Milton Giovanny Moncayo. "Bone Conduction Hearing System And Open Source Application." In DSDE '21: 2021 4th International Conference on Data Storage and Data Engineering. ACM, 2021. http://dx.doi.org/10.1145/3456146.3456167.

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Neumann, K., JP Thomas, C. Völter, and S. Dazert. "A new adhesive bone conduction hearing system – ADHEAR – effectively treats conductive hearing loss in children." In Abstract- und Posterband – 90. Jahresversammlung der Deutschen Gesellschaft für HNO-Heilkunde, Kopf- und Hals-Chirurgie e.V., Bonn – Digitalisierung in der HNO-Heilkunde. Georg Thieme Verlag KG, 2019. http://dx.doi.org/10.1055/s-0039-1686465.

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Patel, Jaimish C., Rahul M. Patel, and Snehal M. Patel. "Data acquisition System using Wireless technology inside Conduction chamber." In 2018 Second International Conference on Computing Methodologies and Communication (ICCMC). IEEE, 2018. http://dx.doi.org/10.1109/iccmc.2018.8487691.

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Romero, Daniel, Viviana Zimmerman, Rafael Sebastian, and Alejandro F. Frangi. "Flexible modeling for anatomically-based cardiac conduction system construction." In 2010 32nd Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC 2010). IEEE, 2010. http://dx.doi.org/10.1109/iembs.2010.5626476.

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Yu, Feng. "Prediction Models for Hyperglycemia Concentrations of Cardiac Conduction System." In 2019 Chinese Control And Decision Conference (CCDC). IEEE, 2019. http://dx.doi.org/10.1109/ccdc.2019.8832396.

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Crocini, Claudia, Cecilia Ferrantini, Raffaele Coppini, et al. "Optogenetic control of the cardiac conduction system (Conference Presentation)." In Optogenetics and Optical Manipulation, edited by Samarendra K. Mohanty and Nitish V. Thakor. SPIE, 2016. http://dx.doi.org/10.1117/12.2208280.

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Wadamori, Naoki. "Evaluation of Bone Conduction Vibration System Using Photoacoustic Effect." In 2018 40th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC). IEEE, 2018. http://dx.doi.org/10.1109/embc.2018.8512587.

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Yan, Peng, Yi Li, Kanhao Xue, Nian Liu, Huajun Sun, and Xiangshui Miao. "Conduction mechanism study on p-type Cu2O based memristive device." In Information Storage System and Technology. OSA, 2017. http://dx.doi.org/10.1364/isst.2017.isu2a.8.

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Reports on the topic "System of conduction"

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Green, M. A. Radiation and gas conduction heat transport across a helium dewer multilayer insulation system. Office of Scientific and Technical Information (OSTI), 1995. http://dx.doi.org/10.2172/88785.

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Green, M. A. Radiation and gas conduction heat transport across a helium dewar multilayer insulation system. Office of Scientific and Technical Information (OSTI), 1994. http://dx.doi.org/10.2172/74104.

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Pollard, Kimberly A., Lamar Garrett, and Phuong Tran. Bone Conduction Systems for Full-Face Respirators: Speech Intelligibility Analysis. Defense Technical Information Center, 2014. http://dx.doi.org/10.21236/ada600090.

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Smith, Jeffrey A., and Michael W. Starks. Toward a Survivability/Lethality Analysis Directorate (SLAD) Methodology for Conducting System of Systems Analysis (SoSA). Defense Technical Information Center, 2011. http://dx.doi.org/10.21236/ada621702.

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Anderson, H. U., M. Nasrallah, D. M. Sparlin, and P. E. Parris. Defect characterization of electronic conducting pseudo-perovskite systems. Final report. Office of Scientific and Technical Information (OSTI), 1994. http://dx.doi.org/10.2172/10128800.

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Krupenin, Vitaly. TO THE ANALYSIS OF VIBRATIONAL CONDUCTING SYSTEMS WITH INCLUSIVE SHOCK VARIATIONS. Bulletin of Science and Technical Development, 2018. http://dx.doi.org/10.18411/vntr2018-125-2.

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Ashley, K., S. Pons, and M. Fleischmann. Mathematical Modelling of Transport through Conducting Polymer Films. 1. The Poly(paraphenylene) System. Defense Technical Information Center, 1988. http://dx.doi.org/10.21236/ada200842.

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Korphage, M. L. Develop Data Management System for Assistance in Conducting Areas of Review in Kansas. Office of Scientific and Technical Information (OSTI), 2000. http://dx.doi.org/10.2172/766120.

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Zielinski, Alex E., Ira Kohlberg, John Bennett, Calvin D. Le, and W. J. Sarjeant. Shielding Considerations for Transient Magnetic Fields Produced by a Pulsed Moving Conductor System. Defense Technical Information Center, 2001. http://dx.doi.org/10.21236/ada394125.

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Burke, Timothy Patrick. Development of a Library for Conducting Monte Carlo Tallies on Heterogeneous Systems. Office of Scientific and Technical Information (OSTI), 2018. http://dx.doi.org/10.2172/1467298.

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