• Title/Summary/Keyword: 생체 동작 신호

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A Study on the Design of Smart Clothing for Vital sign Monitoring -Based on ECG Sensing Clothing- (생체신호 모니터링 스마트 의류의 디자인 연구 -심전도 센싱 의류를 중심으로-)

  • Jo, Ha-Gyeong;Jo, Hyeon-Seung;Gu, Su-Min;Song, Ha-Yeong;Gang, Da-Hye;Lee, Ju-Hyeon;Lee, Jeong-Hwan;Lee, Yeong-Jae
    • Proceedings of the Korean Society for Emotion and Sensibility Conference
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    • 2009.05a
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    • pp.123-126
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    • 2009
  • 최근 생체 신호 센싱 기능의 의류가 연구 개발되어 왔으나, 생체 신호 측정 시 착용자의 동작에 의한 치명적인 잡음이 발생하는 문제가 지속적으로 보고되어 왔다. 이에 본 연구는 심전도 센싱 의류를 기반으로 생체 신호 측정의 정확성을 향상시키기 위하여 착용자의 동작에 의한 영향을 최소화할 수 있는 심전도 센싱 스마트 의류의 모형을 개발하고자 하였다. '일자형 절개 타입', '십자형 절개 타입', '엑스형 절개 타입', '곡선 엑스형 절개 타입'의 총 네 가지 타입의 생체신호 센싱 스마트 의류의 시안을 설계하고 제작하였다. 디자인 시안은 민소매 형태의 남성용 티셔츠로 신축성 있는 소재를 사용하여 인체 굴곡을 따라 의복과 전극이 밀착될 수 있도록 하였으며, 트랜스미터를 이용하여 메인 컴퓨터로 데이터가 무선 전송되게 하였다. 본 연구에서는 개발된 4 가지 의류 타임을 기반으로 인체의 정지 및 동작 상태에서의 심전도 센싱 성능을 평가하기 위해 동작에 따른 전극의 변위를 측정하고, 심전도 측정 평가를 실시하여 SNR을 분석하였다. 본 실험 곁과를 반영하여 의류 디자인 시안의 수정 및 보완 과정을 거친 후, 최종적으로 동작 잡음을 최소화하는 생체신호 센싱 스마트 의류 디자인 모형을 제시하였다.

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A Study of the design method for Interactive squat exercise Instrument (인터렉티브 스쿼트운동기구의 설계방법에 관한 연구)

  • Jeong, Byeong-Ho;Park, Ju-Hoon;Kim, Ji-won
    • Journal of the Korea Convergence Society
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    • v.9 no.2
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    • pp.303-311
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    • 2018
  • Squat exercise is one of the free weight exercises that are recognized as important from a bio-mechanical point of view. It is an important exercise to train lower extremity muscles in daily activities or sports activities and to strengthen trunk and lower body strength. It is effective and accurate to use a variety of assistive devices to calibrate athletic posture with squat exercise supported interactive device. The issues of the structural analysis for design a foot plate for squat exercise is to model the behavior by simplifying the dynamic behavior. In this paper, the authors proposed a exercise system design method for the vertical load distribution and bio-mechanical signal process used for the squat exercise mechanism analysis, and based on these results, designed device can make the more safe and reliable free weight exercise. It is applied to system design through design method with kinematic dynamic, VR device and estimation model of exercise.

Bio-signal Data Augumentation Technique for CNN based Human Activity Recognition (CNN 기반 인간 동작 인식을 위한 생체신호 데이터의 증강 기법)

  • Gerelbat BatGerel;Chun-Ki Kwon
    • Journal of the Institute of Convergence Signal Processing
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    • v.24 no.2
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    • pp.90-96
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    • 2023
  • Securing large amounts of training data in deep learning neural networks, including convolutional neural networks, is of importance for avoiding overfitting phenomenon or for the excellent performance. However, securing labeled training data in deep learning neural networks is very limited in reality. To overcome this, several augmentation methods have been proposed in the literature to generate an additional large amount of training data through transformation or manipulation of the already acquired traing data. However, unlike training data such as images and texts, it is barely to find an augmentation method in the literature that additionally generates bio-signal training data for convolutional neural network based human activity recognition. Thus, this study proposes a simple but effective augmentation method of bio-signal training data for convolutional neural network based human activity recognition. The usefulness of the proposed augmentation method is validated by showing that human activity is recognized with high accuracy by convolutional neural network trained with its augmented bio-signal training data.

Active Spinning Training System using Complex Physiological Signals (복합 생체신호를 이용한 능동형 스피닝 트레이닝 시스템)

  • Kim, Cheol-Min;Kang, Gyeong-Heon;Kim, Eun-Seok
    • The Journal of the Korea Contents Association
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    • v.15 no.7
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    • pp.591-600
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    • 2015
  • Recently high interest in health and fitness has led to vibrant researches for the active fitness system to learn and enjoy the exercise program for oneself. In this paper, we design and implement the active spinning training system which enables user to have self-learning and experience of customized spinning training program by the biometric and movement information acquired from user's physiological signals. The proposed system provides the appropriate difficulty of spinning program which reflects the concordance rate of spinning dance gestures and the amount of exercising by analyzing the physical status of participant from his brain and pulse waves and recognizing the skeletal movement in real time. For the higher exercise effect, the system offers a virtual personal trainer to show the correct poses and controls the level of difficulty depending on the concordance rate of participant's motions. The experiment with various participants through the proposed system shows that it is able to help users in getting the available exercise effect in comparatively short time.

Vital Signal Monitoring System using Wirless Sensor Network (무선센서네트워크를 이용한 생체신호 모니터링 시스템)

  • Lee, Young-Dong;Kim, Jeong-Kuk;Chung, Wan-Young
    • Proceedings of the Korea Institute of Convergence Signal Processing
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    • 2006.06a
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    • pp.109-112
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    • 2006
  • 노약자나 만성질환자를 위하여 가정에서 분산된 무선센서네트워크 노드를 사용하는 무선센서네트워크 기반의 생체신호 모니터링 시스템을 구현하였다. 본 논문에서의 생체신호 모니터링 시스템은 가장 중요한 생체 신호인 ECG와 체온을 계측하도록 구성하였으며, 무선센서 노드를 사용하여 원격지의 병원서버 또는 의사의 PC, PDA에 연결된 베이스스테이션으로 Ad-hoc 네트워크를 통해 환자 또는 노인의 건강정보를 전송하는 시스템 구현에 목적을 두고 있다. 본 시스템을 통해 환자의 의료장비 비용을 절약 할 수 있을 뿐만 아니라 센서 노드는 무선센서네트워크의 강점인 Ad-hoc 통신이 가능하면서 저전력으로 동작하여 배터리의 수명을 연장할 수 있는 특징을 가진다. 또한, 병원의 한층 전체의 환자나 여러 환자가 거주하는 가정 또는 시설에서 하나의 PC(또는 서버컴퓨터)로 시스템 구성이 가능하도록 시스템을 구현함으로서 베이스스테이션에서 멀리 떨어져 있는 환자의 생체 신호도 Ad-hoc 네트워크를 통해 베이스스테이션까지 전송이 가능하였으며, 이동성 제공 및 홈 환경에서 사용자에게 편리함을 가져올 수 있으리라 예상된다.

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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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Development and Applications of a Wireless Bioelectric Signal Measurement System on the Electrodes (전극 상의 일체형 무선 생체전기신호 측정 시스템 개발 및 응용)

  • Joo, Se-Gyeong;Kim, Hee-Chan
    • Journal of Sensor Science and Technology
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    • v.12 no.2
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    • pp.88-94
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    • 2003
  • Electromyogram (EMG) is the bioelectric signal induced by motor nerves. Analyzing EMG with the movement produced by muscle contraction, we can provide input commands to a computer as a man-machine interface as well as can evaluate the patient's motional abnormality. In this paper, we developed an integrated miniaturized device which acquires and transmits the surface EMG of an interested muscle. Developed system measures $60{\times}40{\times}25mm$, weighs 100g. Using an amplifier circuitry on the electrodes and the radio frequency transmission, the developed system dispenses with the use of cables among the electrodes, amplifier, and the post processing system (personal computer). The wiring used in conventional systems can be obstacle for natural motion and source of motion artifacts. In results, the developed system improves not only the signal-to-noise ration in dynamic EMG measurement, but also the user convenience. We propose a new human-computer interface as well as a dynamic EMG measurement system as a possible application of the developed system.

The Plug-in Module for Simultaneous Monitoring of Multi Bio-signal in Wearable Devices (착용형 단말에서 다수 생체신호의 동시 측정을 가능하게 하는 플러그인 모듈)

  • Choi, Moon Sik;Choi, Dong Jin;Kang, Soon Ju
    • KIISE Transactions on Computing Practices
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    • v.22 no.4
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    • pp.195-200
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    • 2016
  • With development of wearable devices, there is an increased interest in bio-signal monitoring techniques that can measure the user's health condition. However, embedding several bio-signal sensors in one wearable device has some inherent problems in terms of limited resources such as its size. Furthermore, such problem also arise when new bio-signal sensors are added. In this paper, we introduced the Bio-Cradle, which is a Plug-in module that can transfer the biological signals in real time from the accelerometer, ECG, or PPG sensor to other wearable devices at the request from the user of wearable devices. When the Bio-Cradle plugged in to the other device, it can transfer several synchronized bio-signals regardless of the type of device.

Estimation of Joint Moment and Muscle Force in Lower Extremity During Sit-to-Stand Movement by Inverse Dynamics Analysis and by Electromyography (역동역학해석 및 근전도 신호를 이용한 앉기-서기 동작에서의 하지 관절 모멘트 및 근력 예측)

  • Kim, Yoon-Hyuk;Phuong, Bui Thi Thanh
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.34 no.10
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    • pp.1345-1350
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    • 2010
  • Sit-to-stand movement is a basic movement in daily activities. On the basis of this movement, the biomechanical functions of a person can be evaluated. The study of the joint kinematics, moment, and muscle coordination is necessary to understand the characteristics of the sit-to-stand movement. We have developed a motion-based program for inverse dynamics analysis and the electromyogram-based program for muscle force prediction. The joint kinematics and the kinetic results estimated on the basis of obtained motion data, ground reaction force, and electromyogram signals were compared with those reported in previous studies, and the muscle forces determined by the two methods were compared with each other. The methods and programs developed in this study can be used to understand biomechanics and muscle coordination involved in basic movements in daily activities.

Novel 10 GHz Bio-Radar System Based on Frequency Multiplier and Phase-Locked Loop (주파수 체배기와 PLL을 이용한 10 GHz 생체 신호 레이더 시스템)

  • Myoung, Seong-Sik;An, Yong-Jun;Moon, Jun-Ho;Jang, Byung-Jun;Yook, Jong-Gwan
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.21 no.2
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    • pp.208-217
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    • 2010
  • This paper presents a novel 10 GHz bio-radar system based on a frequency multiplier and phase-locked loop(PLL) for non-contact measurement of heartbeat and respiration rates. In this paper, a 2.5 GHz voltage controlled oscillator (VCO) with PLL is employed to as a frequency synthesizer, and 10 GHz continuous wave(CW) signal is generated by using frequency multiplier from 2.5 GHz signal. This paper also presents the noise characteristic of the proposed system. As a result, a better performance and economical frequency synthesizer can be achieved with the proposed bio-radar system. The experimental results shows excellent bio-signal measurement up to 100 cm without any additional digital signal processing(DSP), and the proposed system is validated.