DOI:
https://doi.org/10.14483/22484728.18375Publicado:
2018-08-13Número:
Vol. 1 Núm. 2 (2018): Edición especialSección:
Visión InvestigadoraEvolution of ambulatory measurement for the detection of heart diseases
Evolución de la medición ambulatoria para la detección de enfermedades cardiacas
Palabras clave:
Ambulatory measurement device, Cardiac diseases, Holter monitor (en).Palabras clave:
Dispositivos de medición ambulatoria, Enfermedades cardiacas, Monitor Holter (es).Descargas
Resumen (en)
Since the appearance of the Holter monitor, it was conceived as a continuation of the electrocardiogram which serves to detect cardiac diseases, many signs of progress have been made of these devices, which go hand in hand with technology, mainly in elements microcontrollers and micro sensors, such as the transmission of data in real time. With this has been minimized the shortcomings to provide greater comfort and better results of the analysis. This article contains an analysis of these ambulatory measuring devices from the beginning to the current research, analyzing the use of this element for the detection of cardiac diseases, pros and cons of this kind of devices by emphasizing great change that has been generated in recent years with the technological progress.
Resumen (es)
Desde la aparición del monitor Holter concebido como una continuación del electrocardiograma que sirve para detectar enfermedades cardiacas, se han presentado avances de estos dispositivos los cuales van de la mano con la tecnología, principalmente en elementos microcontroladores y microsensores, como la transmisión de datos en tiempo real, con esto han sido minimizadas las falencias para brindar mayor comodidad y mejores resultados de análisis. El presente artículo contiene un análisis de estos dispositivos de medición ambulatoria desde sus inicios hasta las investigaciones actuales, analizando el uso de este elemento para la detección de enfermedades cardiacas, pros y contra de esta clase de dispositivos y del gran cambio que se ha generado en los últimos años con el progreso tecnológico.
Referencias
Texas Heart Institute, “Estudio Holter”, 2018. [Online]. Available at: https://www.texasheart.org/heart-health/heart-information-center/topics/estudio-holter/
P. Zimetbaum and A. Goldman, “Ambulatory Arrhythmia Monitoring Choosing the Right Device”, Circulation, vol. 122, no. 16, 2010, pp. 1629-1636. https://doi.org/10.1161/CIRCULATIONAHA.109.925610
J. E. Quintero and J. M. Sierra, “Diseño y Construcción de un Prototipo de Electrocardiografía Dinámica “Holter” Universal de Tres Canales con Interfaz Electrónica para Cualquier Plataforma de Instrumentación Virtual”, Publicaciones e Investigación, vol. 7, 2013, pp. 99, 2013. https://doi.org/10.22490/25394088.1097
Krames, “Holter ambulatorio y monitor de eventos”, 2018. [Online]. Available at: http://www.veteranshealthlibrary.org/Spanish/Flipbooks/Cardiology/2291933es_VA.pdf
Centro médico Escuela, “Historia del desarrollo del Electrocardiógrafo”, 2018. [Online]. Available at: http://www.electrocardiograma.org/historia-del-electrocardiografo.html
J. Quero, M. Elena, J. Segovia, C. Tarrida, J. Santana and C. Santana, “CardioSmart: Cardiological Monitoring Intelligent system using GPRS”, IEEE Latin America Transactions, vol. 3, no. 2, 2005, pp. 152-158. https://doi.org/10.1109/TLA.2005.1642403
M. Brignole, et al., “Indications for the use of diagnostic implantable and external ECG loop recorders”, Europace, vol. 11, no. 6, 2009, pp. 836-836. https://doi.org/10.1093/europace/eup142
Celbit, “Chaleco “inteligente” envía mensajes sobre ritmo cardíaco”, 2018. [Online]. Available at: https://www.celbit.net/2013/01/04/chaleco-inteligente-envia-mensajes-sobre-ritmo-cardiaco/
J. Bustamante, J. Sáenz, S. Marín and A. Amaya, “Desarrollo del componente de hardware de un dispositivo de telemonitoreo inalámbrico de eventos cardiacos”, Scientia et Technica, vol. 14, no. 39, 2008, pp. 445-448.
L. Gravitz, “Biosensors Comfortable Enough to Wear 24-7”, 2010. [Online]. Available at: https://www.technologyreview.com/s/419683/biosensors-comfortable-enough-to-wear-24-7/
Medset, “The long-term ECG recorder that really lives up to its name”, 2018. [Online]. Available at: https://www.medset.com/en/products/holter-ecg/telesmart/
P. Barrett, R. Komatireddy, S. Haaser, S. Topol, J. Sheard, J. Encinas, A. Fought and E. Topol, “Comparison of 24-hour Holter Monitoring with 14-day Novel Adhesive Patch Electrocardiographic Monitoring”, The American Journal of Medicine, vol. 127, no. 1, 2014, pp. 11-17. https://doi.org/10.1016/j.amjmed.2013.10.003
iRhythm, “Uninterrumped comprehensive EKG interpretation”, 2018. [Online]. Available at: http://irhythmtech.com/products-services/zio-xt
B. Ouyang, “ZIO Wireless Patch May Be Better Option Than Holter Monitors for Cardiac Arrhythmia Diagnosis”, 2014. [Online]. Available at: https://www.medgadget.com/2014/01/zio-wireless-patch-may-be-better-option-than-holter-monitors-for-cardiac-arrhythmia-diagnosis.html
Chenai Medipoint, “ECG”, 2014. [Online]. Available at: http://www.chennaimedipoint.com/vpatch-(p).html
Medtronic, “SEEQ Mobile cardiac telemetry system”, 2018. [Online]. Available at: https://www.medtronic.com/us-en/healthcare-professionals/products/cardiac-rhythm/cardiac-monitors/mct.html
Heartbook app, “Heartbook Technology Development H1 S-MCT User Manual”, 2018. [Online]. Available at: https://usermanual.wiki/Heartbook-Technology-Development/H1
N. Selvaraj, “Performance of adhesive wireless patch sensor for screening of sleep architecture in normal and apnea”, Sleep, vol. 40, no. 1, 2017, pp. 16-17. https://doi.org/10.1093/sleepj/zsx050.041
VitalConnect, “A Breakthrough in Wearable Health Technology”, 2018. [Online]. Available at: https://vitalconnect.com/solutions/vitalpatch/
Philips, “Philips wearable biosensor Keep watch, know more, respond quickly”, 2014. [Online]. Available at: https://www.usa.philips.com/healthcare/clinical-solutions/early-warning-scoring/wireless-biosensor
LifeWatch, “Mobile Cardiac Telemetry”, 2018. [Online]. Available at: https://www.lifewatch.com/Healthcare-Professionals/Mobile-Cardiac-Telemetry.html
B. Yu, L. Xu and Y. Li, “Bluetooth Low Energy (BLE) based mobile electrocardiogram monitoring system”, IEEE International Conference on Information and Automation, Shenyang, 2012, pp. 763-767. https://doi.org/10.1109/ICInfA.2012.6246921
N. Selvaraj, “Long-term remote monitoring of vital signs using a wireless patch sensor”, IEEE Healthcare Innovation Conference (HIC), Seattle, 2014, pp. 83-86. https://doi.org/10.1109/HIC.2014.7038880
J. Steinberg, et al., “2017 ISHNE-HRS expert consensus statement on ambulatory ECG and external cardiac monitoring/telemetry”, Heart Rhythm, vol. 14, no. 7, 2017, pp. 55-96, 2017. https://doi.org/10.1016/j.hrthm.2017.03.038
VitalConnect, “Paving the way for healthcare innovations”, 2018. [Online]. Available at: https://vitalconnect.com/markets/clinical-trials/
J. Teo, “Early prolonged ambulatory heart monitoring in patients with stroke”, United Kingdom, 2016. https://doi.org/10.1186/ISRCTN50253271
Bardy Diagnostics, “Comparison of Continuous Sternal ECG Patch Monitors (Carnation and Zio) Trial”, 2016. [Online], Available at: https://clinicaltrials.gov/ct2/show/NCT02031484
iRhythm, “Zio Is the Faster, More Reliable Way to Diagnose Your Irregular Heart Rhythm”, 2018. [Online]. Available at: http://irhythmtech.com/patients/how-it-works
Patch Cardio, “How to setup vpatch”, 2018. [Online]. Available at: https://www.vpatchmedical.net/how-to
Alibaba, “Bluetooth ECG Holter”, 2018. [Online]. Available at: https://spanish.alibaba.com/g/bluetooth-holter.html
J. Pastor, “Cómo de exactos son los medidores de frecuencia cardiaca de los wearables”, 2018. [Online]. Available at: https://www.xataka.com/wearables/como-de-exactos-son-los-medidores-de-frecuencia-cardiaca-de-los-wearables
M. Webb, “Apple Is Developing an EKG Heart Monitor for Its Smartwatch”, 2018. [Online]. Available at: https://www.bloomberg.com/news/articles/2017-12-21/apple-is-said-to-develop-ekg-heart-monitor-for-future-watch
J. Kim, D. Son, M. Lee, C. Song, J. Song, J. Koo, D. Lee, H. Shim, J. Kim, M. Lee, T. Hyeon and D. Kim, “A wearable multiplexed silicon nonvolatile memory array using nanocrystal charge confinement”, Science Advances, vol. 2, no. 1, 2016, 2016. https://doi.org/10.1126/sciadv.1501101
J. Pla, M. A. Bonet-Aracil and E. Bou, “Caracterización de sensores integrados en prendas textiles deportivas para la práctica del triatlón”, thesis MSc., Universidad Politécnica de Valencia, Spain, 2016.
D. Evans, “Internet de las Cosas- Cómo la próxima evolución de Internet lo cambia todo”, 2011. [Online]. Available at: https://www.cisco.com/c/dam/global/es_mx/solutions/executive/assets/pdf/internet-of-things-iot-ibsg.pdf
Cisco, “IPv6 Addressing and Basic Connectivity Configuration Guide, Cisco IOS XE Release 3S”, 2016. [Online]. Available at: https://www.cisco.com/c/en/us/td/docs/ios-xml/ios/ipv6_basic/configuration/xe-3s/ip6b-xe-3s-book/ip6-add-basic-conn-xe.html
GSMA, “Understanding the Internet of Things (IoT)”, 2014. [Online]. Available at: https://www.gsma.com/iot/wp-content/uploads/2014/08/cl_iot_wp_07_14.pdf
D. Goldman, “¿Qué es la tecnología 5G? Todo lo que necesitas saber”, 2018. [Online]. Available at: http://cnnespanol.cnn.com/2018/01/31/5g-que-es-como-funciona-que-cambia/
Cómo citar
APA
ACM
ACS
ABNT
Chicago
Harvard
IEEE
MLA
Turabian
Vancouver
Descargar cita
Licencia
Derechos de autor 2018 Visión electrónica
Esta obra está bajo una licencia internacional Creative Commons Atribución-NoComercial 4.0.
atribución- no comercial 4.0 International