• Title/Summary/Keyword: 직물 전극

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Emotion-related EEG features induced by tactile stimulation of textures (직물촉각자극에 의해 유발된 정서와 EEG 특성)

  • 김지은;이경화;이임갑;손진훈
    • Proceedings of the Korean Society for Emotion and Sensibility Conference
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    • 1997.11a
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    • pp.189-192
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    • 1997
  • 인간의 정서를 분류하려는 노력은 오래전부터 있어왔다. 시각 및 청각 자극을 사용한 심리생리적 정서연구는 최근에 들어 활발하게 이루어지고 있으나, 촉각 자극을 사용한 정서연구는 찾아보기 힘들다. 본 연구는 피부에 가해지는 다양한 자극에 따라 나타나는 정서와 관련된 뇌파특징을 측정하고자 하는 기초연구이다. 물리적 특성이 다른 다섯가지의 직물자극을 20명의 대학생 피험자(20-25세)에게 무선적으로 제시하였다. 각 자극의 제시시간은 1분이었으며, 자극간 간격은 3분이었다. 각 자극제시후 매자극후 피험자는 제시자극에 대한 느낌을 주관적 정서척도로 평정하였다. 뇌파는 양쪽 귓볼(A1, A2)을 기준전극으로 하여 좌.우반구의 전두엽(F3, F4), 두정엽(P3, P4), 후두엽 (O1, O2)에서 측정되었고, 측정된 뇌파는 FFT방법으로 분석되었다. 각 피험자의 주관적 평가의 결과에 따라 가장 쾌한 자극과 가장 불쾌한 자극이 제시되었을 때 측정한 뇌파의 분석결과를 비교하였다. 쾌자극 제시시의 뇌파는 불쾌자극 제시시보다 slow alpha(8-10Hz)파의 출현량은 적었다. 결론적으로 직물촉각자극에 의해 유발되는 심리적 반응에 특정적인 뇌파반응이 존재하며, 이는 촉각에 의해 유발되는 주관적인 쾌.불쾌정서를 객관적으로 측정하기 위한 지표로서 뇌파특징을 사용할수 있음을 의미한다.

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The preparation of electroconductive Nylon/Spandex stretch fabric (I) - Changes of conductivity with extension (전도성 Nylon/Spandex 스트레치 직물의 제조(I) - 신장에 따른 전도도의 변화)

  • 박현진;오경화;김성훈
    • Proceedings of the Korean Fiber Society Conference
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    • 2001.10a
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    • pp.314-315
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    • 2001
  • 전기 전도성 고분자는 폴리 아세틸렌을 적절한 electron withdrawing group이나 electron donating group을 이용하여 도핑하면 전도도의 증가를 가져온다는 보고 이래로 활발하게 연구되어져 왔다. 그 중에서 폴리피롤은 높은 전도도와 산화안정성, 인체에 무해한 특성 때문에 여러 분야에 응용되고 있으며 분자전자장치나 고체 배터리의 전극, 축전기의 고체 전해질, 전자파 차폐 재료, ion센서, 위장막의 제조 등의 용도전개 잠재력이 무궁하다. (중략)

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Development of Tight-Fitting Garments with a Portable ECG Monitor to Measure Vital Signs (휴대용 심전도 기기와 직물형 전극을 이용한 생체정보 측정용 밀착 의복 개발)

  • Jeong, Yeon-Hee; Kim, Seung-Hwan;Yang, Young-Mo
    • Journal of the Korean Society of Clothing and Textiles
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    • v.34 no.1
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    • pp.112-125
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    • 2010
  • A Holter monitor is used for ECG monitoring of ambulatory daily life in hospital. However, the use of this apparatus causes skin allergies and discomfort in patients because of the attachment gel and tapes used to attach disposable electrodes to the skin. In this study, the development of tight-fitting clothing connected to a portable Holter monitor was proposed. In addition, the use of conductive fabrics as electrodes was proposed; this will enable the use of garments in u-health care for measuring ECG signals. The male subjects were university students in the ages of 20 to 24. Subjective wear sensations of the experimental garments were rated using seven Likert scales. A Likert type scale was used for the evaluation and a 7 point score indicates that it provided the best fit as a tight-fitting upper clothing. Clothing pressure was measured using an air-pack-type pressure sensor (model AMI 3037-2) at 4 locations (the conductive fabric electrode) As results, a male basic sloper for upper clothing was developed and that pattern was manipulated to the tight fit pattern by considering the reduction rate of the percentage stretch in the fabric. The developed tight-fitting garment was superior in terms of subjective sensation and 6t. The mean pressure of the garment with reduction rates of 40% in width and of 50% in length was 8.45gf/$cm^2$. A conductive fabric electrode was developed by considering the sewing method and the developed electrode was detected well. The ECG data were recorded for 13 hr 19 min 44 sec and the artifacts in the ECG signals were recorded for 9 hr 3 min 46 sec (total time: 22 hr 23 min 23 sec). The artifacts data were obtained during heavy activities.

An Exploratory Study on the Development of a Healthcare Smart Clothing for Measurement of Body Composition (체성분 측정용 스마트 의류 개발의 가능성 탐색)

  • Moon, Hui-Sung;Cho, Hyun-Seung;Park, Sun-Hyung;Lee, Joo-Hyeon;Cha, Kee-Chul;Shin, Sun-Young;Jung, Hyo-Il
    • Science of Emotion and Sensibility
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    • v.10 no.3
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    • pp.383-391
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    • 2007
  • We have developed and evaluated a smart clothing system for the measurement of body composition in real time. Two kinds of experimental clothes were developed in this study to investigate the effects of textile electrodes on the measurements. As long as the wearer maintained same posture, the magnitudes of impedance was measured identically even though he got into the clothing again. Moreover we found the clothing could measure the impedance of each body segment.

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A Study on the Design of Functional Clothing for Vital sign Monitoring -Based on ECG Sensing Clothing- (생체신호 측정을 위한 기능성 의류의 디자인 연구 -심전도 센싱 의류를 중심으로-)

  • Cho, Ha-Kyung;Song, Ha-Young;Cho, Hyeon-Seong;Goo, Su-Min;Lee, Joo-Hyeon
    • Science of Emotion and Sensibility
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    • v.13 no.3
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    • pp.467-474
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    • 2010
  • Recently, Study of functional clothing for Vital sensing is focused on reducing artifact by human motions, in order to enhance the electrocardiogram(ECG) sensing accuracy. In this study, considering the factors for each element found from the analysis, a 3-lead electrode inside textile embroidered with silver yarn was developed, and draft designs off our types of vital-signal sensing garments, which are 'chest-belt typed' garment, 'cross-typed' garment 'x-typed' garment and 'curved x-typed' garment, were prepared. The draft designs were implemented on a sleeveless male shirt made of an elastic material so that the garment and the electrodes can remain closely attached along the contour of the human body, and the acquired data was sent to the main computer over a wireless network. In order to evaluate the effects caused by body movements and the ECG-sensing capability for each type in static and dynamic states, displacements were measured from one and two dimensional perspectives. ECG measurement evaluation was also performed for Signal-to-noise ratio(SNR) analysis. Applying the experimental results, the draft garment designs were modified and complemented to produce two types of modular approaches 'continuous-attached' and 'insertion-detached' for the ECG-sensing smart clothing.

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A Study on Intrinsic Noise of Capacitively Coupled Active Electrode (용량성 결합 능동 전극의 내부 잡음 분석)

  • Lim, Yong-Gyu
    • Journal of the Institute of Convergence Signal Processing
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    • v.13 no.1
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    • pp.44-49
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    • 2012
  • The indirect-contact ECG measurement is a newly developed method for unconstrained and nonconscious measurement in daily Life. This study is the first step to reducing the large background noise appearing in indirect-contact ECG. This study built the thermal noise model of capacitively coupled active electrode which is used in indirect-contact ECG. The results show that the level of thermal noise estimated by the thermal noise model is much the same as that of actual background noise for the capacitively coupled active electrode alone. By applying the actual electrical properties of a sample cotton cloth to the thermal noise model, the theoretical level of thermal noise in the indirect-contact ECG was estimated. The results also show that the level of op-amp's intrinsic noise is so small that it can be negligible in comparison with thermal noise of resistors. The relationship between the level of thermal noise and the resistance of the bias resistor was derived, and it is the base for the further study how to choice the optimal resistance for the bias resistor.

Graphene-like β-Ni(OH)2 나노판 구조의 합성 및 특성

  • Cha, Seong-Min;Nagaraju, Goli;Yu, Jae-Su
    • Proceedings of the Korean Vacuum Society Conference
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    • 2015.08a
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    • pp.201.2-201.2
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    • 2015
  • 현대 디지털 사회에서 고효율 에너지와 파워소스에 관한 요구가 커짐에 따라 차세대 에너지 저장 소자에 대한 연구가 계속되고 있다. 그 중 리튬이온 배터리, 슈퍼커패시터, 그리고 연료 전지들이 우리의 일상생활에서 점점 더 중요하게 자리잡아가고 있는데 이런 다양한 에너지 저장소자 중 슈퍼커패시터가 많은 관심을 받고 있다. 이는 긴 수명, 빠른 충-방전 속도, 높은 에너지 밀도, 그리고 안전함 때문이다. 슈퍼커패시터는 에너지 저장 메커니즘에 따라 두 가지로 분류될 수 있는데 전기이중층 커패시터(EDLC)와 슈도커패시터(pseudocapacitor)로 나누어질 수 있다. 슈도커패시터는 active 물질과 전해질 이온 간의 전기화학적 반응으로 인해 EDLC보다 더 많은 에너지를 저장할 수 있다. 그러므로 지금까지 새로운 형태의 슈도용량성 물질을 만들기 위한 노력이 집중되고 있다. 본 연구에서는 전기화학적증착 방법을 통해 graphene-like ${\beta}$-nickel hydroxide (${\beta}-Ni(OH)_2$) 나노판 구조를 전도성 직물에 합성하였다. ${\beta}-Ni(OH)_2$ 슈도커패시터의 유연하고 효율적인 비용의 전극으로서 높은 비정전용량, 우수한 전기화학 가역성, 그리고 뛰어난 사이클 안정성을 보였다. 이런 쉬운 방법으로 유연한 전도성 직물에 합성된 metal hydroxide/oxide 나노구조는 웨어러블 에너지 저장소자와 변환소자 분야에 사용될 것으로 기대된다.

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A Study on the Textile Sensor Applied to Smart Wear for Monitoring Meditation Breathing (명상호흡 모니터링용 스마트의류를 위한 호흡수 측정 직물센서 연구)

  • Hwang, Su Jung;Jung, Yoon Won;Lee, Joo Hyeon
    • Science of Emotion and Sensibility
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    • v.21 no.1
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    • pp.83-90
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    • 2018
  • The purpose of this study is for fundamental research of meditation smart wear for physical and mental healing, and researching method for monitoring phase of meditation through textile by measuring the number of abdominal respiration when meditating. For this purpose, the research implemented Single Wall Carbon Nano-Tube (SWCNT) based strain gauges type textile sensor, considered reliability and validity of respiratory sensing, and analyzed efficiency of respiratory sensing based on body parts comparatively. The first preliminary experiment was to evaluate the performance of textile sensor through abdominal model dummy which open and shut of 5 cm repeatedly for 2 minutes at the rate of 0.1Hz in order to simulate abdominal respiration. It concluded signal efficiency between reference sensor(BIOPAC) and textile respiratory sensor appears statistically significant (p<0.001). The second experiment were conducted with 4 subjects doing abdominal respiration under same conditions, and after comparing the signal values between two sensors from 4 attached locations(around center and sides of omphali and phren), center of omphali and sides of phren were selected as suitable location for measuring meditational breathing as they showed large and stable signals. In result, this research aimed for implementing of the textile sensor for sensing meditational breathing of long respiration cycle, review of reliability and validity for sensing number of meditational respiration with the sensor and consideration of sensing efficiency by sensing location on body parts.

A Study on Wearable Emotion Monitoring System Under Natural Conditions Applying Noncontact Type Inductive Sensor (자연 상태에서의 인간감성 평가를 위한 비접촉식 인덕티브 센싱 기반의 착용형 센서 연구)

  • Hyun-Seung Cho;Jin-Hee Yang;Sang-Yeob Lee;Jeong-Whan Lee;Joo-Hyeon Lee;Hoon Kim
    • Science of Emotion and Sensibility
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    • v.26 no.3
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    • pp.149-160
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    • 2023
  • This study develops a time-varying system-based noncontact fabric sensor that can measure cerebral blood-flow signals to explore the possibility of brain blood-signal detection and emotional evaluation. The textile sensor was implemented as a coil-type sensor by combining 30 silver threads of 40 deniers and then embroidering it with the computer machine. For the cerebral blood-flow measurement experiment, subjects were asked to attach a coil-type sensor to the carotid artery area, wear an electrocardiogram (ECG) electrode and a respiration (RSP) measurement belt. In addition, Doppler ultrasonography was performed using an ultrasonic diagnostic device to measure the speed of blood flow. The subject was asked to wear Meta Quest 2, measure the blood-flow change signal when viewing the manipulated image visual stimulus, and fill out an emotional-evaluation questionnaire. The measurement results show that the textile-sensor-measured signal also changes with a change in the blood-flow rate signal measured using the Doppler ultrasonography. These findings verify that the cerebral blood-flow signal can be measured using a coil-type textile sensor. In addition, the HRV extracted from ECG and PLL signals (textile sensor signals) are calculated and compared for emotional evaluation. The comparison results show that for the change in the ratio because of the activation of the sympathetic and parasympathetic nervous systems due to visual stimulation, the values calculated using the textile sensor and ECG signals tend to be similar. In conclusion, a the proposed time-varying system-based coil-type textile sensor can be used to study changes in the cerebral blood flow and monitor emotions.

A Comparative Study on the Conductivity and Physical Properties of Conductive Materials for Heart Rate Monitoring (심박 모니터링을 위한 전도성 소재의 전도성 및 물성 비교 연구)

  • Kim, Jimin;Kim, Jongjun
    • Journal of Fashion Business
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    • v.22 no.4
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    • pp.118-129
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    • 2018
  • The purpose of this study is to develop ECG electrode materials for the heart rate monitoring smart band, a smart device used for ECG and heart rate measurement. The purpose of the evaluation is to assess properties and conductivity of electrodes of the existing heart rate monitoring smart band, and to determine suitability through a representative conductive sample. Because level of thickness does not differ significantly from value of conductive specimen from thickness of the smart band, it can be used as a conductive electrode. Surface conductivity of conductive samples and smart bands, is expected to be available as electrodes except for conductive film. Also, since the knit have conductivity only in the metal processing layer, it is necessary to use electrodes on the part of the metal processing layer that is conductive when applying the knit. Tensile strength and electrical conductivity of the tensile were generally revealed to have a tendency. Thickness of the specimen that can be used as an electrode for the smart band is suitable for all samples, electrical resistance, conductive woven, conductive knit, and conductive cord. In the case of conductive cord, however, the electrode attached to the human body will not conform to the flat shape of the electrode attached to the human body. Therefore, the conductive woven and the conductive knit will be available as an electrode.