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      • KCI등재

        비만관련 생활습관병 위험인자 예측을 위한 다중 주파수 기반의 분할 체임피던스 측정법

        김응석,노연식,서광석,박성빈,윤형로,Kim, Eung-Seok,Noh, Yeon-Sik,Seo, Kwang-Seok,Park, Sung-Bin,Yoon, Hyung-Ro 대한의용생체공학회 2010 의공학회지 Vol.31 No.5

        The purpose of this study is to determine whether there is a correlation between the segmental bio-impedance measurement with the frequency modulations and the life-style disease of obesity. An obesity is not simply the factor for estimating the life-style disease of obesity, but also the risk factor occurring. There are many methods (BMI, WHR, Waist, CT, DEXA, BIA, etc.) for measuring a degree of obesity; the bio-impedance measurement is more economic and more effective than others. The physical examination, the blood test, the medical imaging diagnosis and the bio-impedancemeasurementswithmultiple frequencies for each body parts have been conducted for 77 people. The estimated value has been calculated through a segmental bio-impedance model based on multi-frequency that was created to reflect the highest correlation by analyzing correlation with linear regression analysis method for the measured bio-impedance and the risk factors. Then we compared with the clinical diagnosis. In case of high level cholesterol, low HDL-C and high LDL-C for life-style disease, the sensitivity is 80~100%and the specificity is 83~100%. This study has shown conclusively that bio-impedance can be a possible predictor to analyze the disease risk rate of population and individual health maintenance. And also the multi-frequency segmental bio-impedance can be used as early predictor to estimate the life-style disease of obesity.

      • 지능형 바이오피드백 기반의 종합 운동관리 시스템 개발

        유성재(Yoo Sung-Jae),노연식(Noh Yeon-Sik),남영광(Nam Young-Kwang),윤형로(Yoon Hyung-Ro) 한국정보과학회 2011 한국정보과학회 학술발표논문집 Vol.38 No.1B

        건강에 대한 관심이 높아지면서 헬스케어와 IT와의 결합으로 많은 IT관련 헬스 케어 시스템이 개발되고 있으며, 이러한 시스템의 수요 또한 증가하는 추세에 있다. 본 논문에서는 이와 같은 건강에 대한 관심을 반영하여 자신에 맞는 운동을 선택 및 수행하고 그에 따른 피드백을 받을 수 있는 시스템을 소개한다. 본 시스템은 헬스케어의 건강 관리 시스템을 피트니스 관점에 비중을 두어 이용자의 초기 운동 정보를 기반으로 몸에 맞는 운동을 처방하여 운동을 수행 시키고 그 결과를 저장한다. 운동 정보는 생체 신호 계측을 위한 물리량 센서 및 모듈에 의하여 측정된다. 저장된 운동 결과는 다음 운동 처방에 반영되어 피드백 방식으로 이용자의 운동에 적용된다. 운동 처방은 주단위로 수행되면서 지속적인 관리를 받을 수 있도록 설계되었다. 본 시스템은 운동 중 발생하는 무구속, 무자각적 생체 신호 계측을 위한 물리량 센서 및 모듈을 이용하여 다차원 생체 정보를 수집하고 생체 신호 표준화 및 생체 역학적 해석을 통해 데이터베이스를 구축하였다. 이렇게 구축한 데이터들을 통하여 지능형 바이오피드백 기반의 사용자 맞춤형 운동 관리 시스템을 개발하여 사용자의 건강 및 운동능력을 향상시키는데 그 목적이 있다.

      • KCI등재

        중심성 비만 분석을 위한 새로운 임피던스 해석법

        임택균(Taek-Gyun Lim),서광석(Kwang-Seok Seo),정인철(In-Cheol Jeong),전석환(Suk-Hwan Jun),노연식(Yeon-Sik Noh),김응석(Eung-Seok Kim),윤형로(Hyung-Ro Yoon) 대한전기학회 2009 전기학회논문지 Vol.58 No.4

        Truncal obesity associated with insulin resistance and metabolic syndrome increase the likelihood of hypertension, various cardiovascular diseases, hyperlipidemia and coronary heart diseases. International Diabetes Federation (IDF) experts recognized that it is necessary to develop the simple diagnostic tool which is applicable to diagnose truncal obesity worldwide, and proposed the method using a waist circumference but there is a limit to estimate subcutaneous fat distribution. However, waist line is also influenced by total fat capacity less than the intra abdominal fat. The more having severe obesity, the more correlation coefficient between waist line and intra abdominal fat is low. Therefore, this thesis defines a new abdominal impedance measurement position and impedance-index to analysis central obesity. This proposes the new model to estimate abdominal obesity using the abdominal impedance-index and CT images acquired from 160 Korean subjects. The proposed model shows that the abdominal fat distribution has a higher correlation than waist line. (Adj R2 = 0.809, 0.667 and 0.687 with abdominal fat area, visceral fat area and subcutaneous fat area respectively).

      • SCOPUSKCI등재

        Preceding Research for Estimating the Maximal Fat Oxidation Point through Heart Rate and Heart Rate Variability

        Myeong-Heon Sim(심명헌),Min-Yong Kim(김민용),Sol-Chan Yoon(윤찬솔),Joo-Hong Chung(정주홍),Yeon-Sik Noh(노연식),Sung-Bin Park(박성빈),Hyung-Ro Yoon(윤형로) 대한전기학회 2012 전기학회논문지 Vol.61 No.9

        Increasing the oxidation of fat through exercise is the recommendable method for weight control. Preceding researches have proposed increase in the usage of fat during exercise in stabilized state and under maximum exertion through aerobic training. However, such researches require additional equipment for gas analysis in order to measure the caloric value or gas exchange of subjects during exercise. Such equipments become highly restrictive for those exercise and cause substantially higher cost. According to this, we have presented the method of estimating the maximal fat oxidation point through changes in LF & HF which reflects changes in heart rate and the autonomic nervous system in order to induce exercise for a less restrictive and efficient fat oxidation than existing methods. We have conducted exercise stress test on subject with similar exercise abilities, and have detected the changes in heart rate and changes in LF & HF by measuring changes in fat oxidation and measuring ECG signals at the same time through a gas analyzer. Changes in heart rate and HRV of the subjects during exercising was detected through only the electrocardiographic signals from exercising and detected the point of maximum fat oxidation that differs from person to person. The experiment was carried out 16 healthy males, and used Modified Bruce Protocol, which is one of the methods of exercise stress test methods that use treadmill. The fat oxidation amount during exercise of all the subjects showed fat oxidation of more than 4Fkcal/min in the exercise intensity from about 5 minutes to 10 minutes. The correlation between the maximal fat oxidation point obtained through gas analysis and the point when 60% starts to be relevant in the range from -0.01 to 0.01 seconds for values of R-R interval from changes in heart rate had correlation coefficients of 0.855 in Kendall’s method and in Spearman’s rho, it showed significant results of it being p<0.01 with 0.950, respectively. Furthermore, in the changes in LF & HF, we have determined the point where the normalized area value starts to become the same as the maximal fat oxidation point, and the correlation here showed 0.620 in Kendall and 0.780 in Spearma of which both showed significant results as p<0.01.

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