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A Chest-Laminated Ultrathin and Stretchable E-Tattoo for the Measurement of Electrocardiogram, Seismocardiogram, and Cardiac Time Intervals.
Ha, Taewoo; Tran, Jason; Liu, Siyi; Jang, Hongwoo; Jeong, Hyoyoung; Mitbander, Ruchika; Huh, Heeyong; Qiu, Yitao; Duong, Jason; Wang, Rebecca L; Wang, Pulin; Tandon, Animesh; Sirohi, Jayant; Lu, Nanshu.
Afiliação
  • Ha T; Department of Electrical and Computer Engineering University of Texas at Austin TX 78712 USA.
  • Tran J; Department of Aerospace Engineering and Engineering Mechanics University of Texas at Austin TX 78712 USA.
  • Liu S; Department of Aerospace Engineering and Engineering Mechanics University of Texas at Austin TX 78712 USA.
  • Jang H; Texas Materials Institute University of Texas at Austin TX 78712 USA.
  • Jeong H; Department of Electrical and Computer Engineering University of Texas at Austin TX 78712 USA.
  • Mitbander R; Department of Biomedical Engineering University of Texas at Austin TX 78712 USA.
  • Huh H; Department of Mechanical Engineering University of Texas at Austin TX 78712 USA.
  • Qiu Y; Department of Aerospace Engineering and Engineering Mechanics University of Texas at Austin TX 78712 USA.
  • Duong J; Department of Biomedical Engineering University of Texas at Austin TX 78712 USA.
  • Wang RL; Department of Aerospace Engineering and Engineering Mechanics University of Texas at Austin TX 78712 USA.
  • Wang P; Department of Aerospace Engineering and Engineering Mechanics University of Texas at Austin TX 78712 USA.
  • Tandon A; Departments of Pediatrics, Radiology, and Biomedical Engineering Division of Cardiology University of Texas Southwestern Medical School Children's Medical Center Dallas TX 75235 USA.
  • Sirohi J; Department of Aerospace Engineering and Engineering Mechanics University of Texas at Austin TX 78712 USA.
  • Lu N; Department of Electrical and Computer Engineering University of Texas at Austin TX 78712 USA.
Adv Sci (Weinh) ; 6(14): 1900290, 2019 Jul 17.
Article em En | MEDLINE | ID: mdl-31380208
ABSTRACT
Seismocardiography (SCG) is a measure of chest vibration associated with heartbeats. While skin soft electronic tattoos (e-tattoos) have been widely reported for electrocardiogram (ECG) sensing, wearable SCG sensors are still based on either rigid accelerometers or non-stretchable piezoelectric membranes. This work reports an ultrathin and stretchable SCG sensing e-tattoo based on the filamentary serpentine mesh of 28-µm-thick piezoelectric polymer, polyvinylidene fluoride (PVDF). 3D digital image correlation (DIC) is used to map chest vibration to identify the best location to mount the e-tattoo and to investigate the effects of substrate stiffness. As piezoelectric sensors easily suffer from motion artifacts, motion artifacts are effectively reduced by performing subtraction between a pair of identical SCG tattoos placed adjacent to each other. Integrating the soft SCG sensor with a pair of soft gold electrodes on a single e-tattoo platform forms a soft electro-mechano-acoustic cardiovascular (EMAC) sensing tattoo, which can perform synchronous ECG and SCG measurements and extract various cardiac time intervals including systolic time interval (STI). Using the EMAC tattoo, strong correlations between STI and the systolic/diastolic blood pressures, are found, which may provide a simple way to estimate blood pressure continuously and noninvasively using one chest-mounted e-tattoo.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Adv Sci (Weinh) Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Adv Sci (Weinh) Ano de publicação: 2019 Tipo de documento: Article