• Title/Summary/Keyword: Saturation pulse

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Write-in and Retention Characteristics of Nonvolatile MNOS Memory Devices (비휘발성 MNOS기억소자의 기억 및 유지특성)

  • 이형옥;강창수;이상배;서광열
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1991.10a
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    • pp.44-47
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    • 1991
  • Electron injection and memory retention chracteristics of the MNOS devices with thin oxide layer of 23${\AA}$ thick and silicon nitride layer of 1000${\AA}$ thick which are fabricated for this experiment. As a result, pulse amplitude increase oxide current is dominated in linearly increasing region of $\Delta$V$\_$FB/the decreasing region after saturation was due to the increased silicon nirtide current. In low pulse ampiltude $\Delta$V$\_$FB/ is not variated on temperature, but as temperature and pulse amplitude increase. $\Delta$V$\_$FB/ is decreased after saturation. And the decay rate during 10$^4$sec after electron injection was ohiefly dominated by the back tunneling of emission from memory trap to silicon. Memory retention characteristics in V$\_$FB/ stage was better than that of OV retention regardless of injection conditions.

An Improvement of Signal Processing of Pulse Oximeter Using Modulization (모듈화를 이용한 펄스 옥시메터의 신호처리 개선)

  • 이한욱;이주원;이종희;조원래;장두봉;김영일;이건기
    • Proceedings of the IEEK Conference
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    • 2000.06e
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    • pp.117-120
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    • 2000
  • Pulse oximetry is a well established non-invasive optical technique for monitoring the SpO$_2$ during anaesthesia, recovery and intensive care. Pulse oximeters determine the oxygen saturation level of blood by measuring the light absorption of arterial blood. The sensors consists of red and infrared light sources and photodetectors. In the measurement of the hemoglobin oxygen saturation, conventional method has required the technique of filtering of remove the noise, and of complex signal processing algorithm. So much time have required to signal processing. In this research, we separate AC signal and DC signal in the stage of signal detection. We filter the noise from each signal and convert A/D. We obtain the SpO$_2$ using the DSP algorithm.

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A Simple Design of an Imaging System for Accurate Spatial Mapping of Blood Oxygen Saturation Using a Single Element of Multi-wavelength LED (혈중 산소 포화도의 정확한 공간 매핑을 위한 다중 파장 LED 단일소자를 활용한 이미징 시스템 설계)

  • Jun Hwan Kim;Gi Yeon Yu;Ye Eun Song;Chan Yeong Yu;Yun Chae Jang;Riaz Muhammad;Kay Thwe Htun;Ahmed Ali;Seung Ho Choi
    • Journal of Biomedical Engineering Research
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    • v.44 no.6
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    • pp.450-464
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    • 2023
  • Pulse oximetry, a non-invasive technique for evaluating blood oxygen saturation, conventionally depends on isolated measurements, rendering it vulnerable to factors like illumination profile, spatial blood flow fluctuations, and skin pigmentation. Previous efforts to address these issues through imaging systems often employed red and near-infrared illuminations with distinct profiles, leading to inconsistent ratios of transmitted light and the potential for errors in calculating spatial oxygen saturation distributions. While an integrating sphere was recently utilized as an illumination source to achieve uniform red and near-infrared illumination profiles on the sample surface, its bulkiness presented practical challenges. In this work, we have enhanced the pulse oximetry imaging system by transitioning illumination from an integrating sphere to a multi-wavelength LED configuration. This adjustment ensures simultaneous emission of red and near-infrared light from the same position, creating a homogeneous illumination profile on the sample surface. This approach guarantees consistent patterns of red and near-infrared illuminations that are spatially uniform. The sustained ratio between transmitted red and near-infrared light across space enables precise calculation of the spatial distribution of oxygen saturation, making our pulse oximetry imaging system more compact and portable without compromising accuracy. Our work significantly contributes to obtaining spatial information on blood oxygen saturation, providing valuable insights into tissue oxygenation in peripheral regions.

A Design and Implementation of SpO2 Wearable Device for Companion Animals in PPG Signals

  • Kim, Woo-Chan;Chang, Jin-Wook;Kwon, Hoon;Lee, Won Joo;Kwak, Ho-Young
    • Journal of the Korea Society of Computer and Information
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    • v.27 no.11
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    • pp.191-198
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    • 2022
  • The most basic thing to measure the condition of a companion animal is to check the breathing and pulse. There are several methods to measure the breathing and pulse of a companion animal, and the PPG method is generally used to measure the oxygen saturation (SpO2) in a companion animal. However, since the input PPG signal is inputted with various information as well as oxygen saturation, it is necessary to separate and extract oxygen saturation information from the PPG signal in order to measure the oxygen saturation. Therefore, in this paper, a wearable measuring device for companion animals that can be measured by applying the PPG method was designed and implemented, and an algorithm for separating oxygen saturation information from the PPG signal input through the wearable measuring device was proposed.

Pulse Detection from PPG Signal with Motion Artifact using Independent Component Analysis and Nonlinear Auto-correlation (독립 성분 분석과 비선형 자기상관을 이용한 동잡음이 포함된 PPG 신호에서의 맥박 검출)

  • Jeon, Hak-Jae;Kim, Jeong-Do;Lim, Seung-Ju
    • Journal of Sensor Science and Technology
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    • v.25 no.1
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    • pp.71-78
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    • 2016
  • PPG signal measured by pulse oximeter can measure pulse and the oxygen saturation of arterial blood. But the PPG signal is distorted by finger movement or other movement in the body. To detect pulse from the PPG signal with motion artifact, we use band pass filter(BPF), Independent component analysis(ICA) and nonlinear autocorrelation(NAC). BPF is used to remove DC component and high frequency noise in the PPG signal with motion artifacts. ICA is used to separate pulse signal and motion artifact. However, pulse signal separated by ICA have no choice but to accompany signal distortion because pulse signal and motion artifact are not completely independent. So, we use nonlinear autocorrelation to emphasize the pure pulse signal from the distorted signal.

Effects of Deep Breathing with Incentive Spirometer on Pulmonary Function and O2 Saturation by Time Process in Patients with Rib Fracture (Incentive Spirometer를 이용한 심호흡이 시간경과에 따라 늑골골절 환자의 폐기능과 산소포화도에 미치는 영향)

  • Moon, Daehwan;Kim, Kye-Ha;Lee, Seogki
    • The Journal of the Korea Contents Association
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    • v.15 no.3
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    • pp.174-183
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    • 2015
  • The purpose of this study was to examine the effects of deep breathing with Incentive Spirometer on pulmonary function and O2 saturation by time process in patients with rib fracture. The participants were 25 patients with rib fracture admitted to a hospital in G city. Deep breathing with Incentive Spirometer was educated for participants. Data were collected from June to October, 2013. Pulmonary function and O2 saturation were measured by using Micro spirometer and pulse oximeter at admission one day and 1day, 2day, 3day, 4day, 5day and 6day after applying intervention.. The collected data was analyzed by SPSS (Statistical Package for the Social Science) 21.0 version program with descriptive statistics, and repeated measure ANOVA. The level of pulmonary function and O2 saturation after applying deep breathing with incentive spirometer were increased as time went on. Therefore, patients with rib fracture should be suggested the continuous deep breathing with incentive spirometer.

A study on non-invasive SaO$_2$ measurement algorithm to improve on effect of the motion artifact (동잡음의 영향을 개선한 비관혈식 산소포화도 측정 알고리즘에 대한 연구)

  • 이준하
    • Progress in Medical Physics
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    • v.11 no.2
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    • pp.101-107
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    • 2000
  • Pulse oximetry is a non-invasive optical method which measures arterial oxygen saturation with two different wavelength. We can obtain the pulsating component of the arterial blood superimposed on DC level attenuated by venous blood, skin and other nonpulsatile components. This study is based on computing algorithm of oxygen saturation using the integral ratio of pulsatile components. In this algorithm, we used the half cycle of the pulsatile signal rely on arterial contraction. It's period is about 1/4 in 1 cycle. In the result, Our algorithm with 1/4 period of 1 cycle is similar to existing model. Because of removal that A part have low amplitude and possession in long term from calculating, the effect of the motion-artifact is decrease.

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Surface Saturation Area-Subsurface Outflow-Soil Moisture Storage Relationships: II. Dynamic Analysis (지표포화지역-중간류유출-흙수분저류량 관계: II. 동적 분석)

  • 이도훈;이은태
    • Water for future
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    • v.29 no.2
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    • pp.143-151
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    • 1996
  • The dynamic responses in the subsurface outflow, surface saturation area, soil moisture storage are established by numerical experiments with Richards equation. In addition to this, the dynamical relationship between surface saturation area and subsurface outflow, and between surface saturation area and soil moisture storage are also determined by varying the hillslope shape, soil type, and boundary condition. The simulation results indicate that the dynamical relationships between surface saturation area and subsurface outflow, and between surface saturation area and soil moisture storage are approximated by the steadystate relationships. And the dynamic responses of subsurface outflow and surface saturation area are characterized by the double peaks although the rainfall pattern is asimple pulse input. As a result of numerical simulation, the physical mechanism for the occurrence of the double peaks is explained using the concept of variable source area.

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Design of blood oxygen concentration and heart beat rate measuring system using photo diode (광다이오드를 이용한 산소포화도 및 맥박 측정기 설계)

  • Kim, In-Geon;Nam, Tae-Hun;Chung, Ik-Joo
    • Journal of Industrial Technology
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    • v.33 no.A
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    • pp.49-54
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    • 2013
  • The U-healthcare is increasingly important as there is a growing tendency for elderly people to acquire chronic disease such as heart problems and high blood pressure. In this paper, we implemented an oximeter which can interact and communicate with the smart devices such as smartphones through which users can manage their measuring data. The designed pulse oximeter is capable of detecting hemoglobin saturation levels in the range of 70-100% and the heart beat rate(BPM) in the range of 30-240 BPM.

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Filter Design to Eliminate Motion Artifact of Pulse Oximetery (펄스 옥시메터의 동잡음 제거 필터 설계)

  • 이주원;이종희;강익태;김경하;이건기
    • Journal of Biomedical Engineering Research
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    • v.22 no.5
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    • pp.431-438
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    • 2001
  • Oxygen saturation of blood is defined as ratio of total hemoglobins density to oxyhemoglobins density And the accuracy of pulse oxymeter that measures the oxygen saturation of blood by a noninvasive method is influenced by a measuring environment, breathing and motion of patient. Especially when patient moved his arms and fingers, it is difficult to eliminate motion artifact because the motion artifact signal has features that are overlap or closed at normal signal in frequency domain. We propose the filtering method that construct the filter banks and a matched falter to improve the Problem. When experimented by the proposed method, the ratio regulation of the proposed methods has 4.1% below than an adaptive filter (39.7%) and a moving average filter (11.2%). So. the Proposed method will be able to get a stable ratio of SpO2.

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