• 제목/요약/키워드: electrical impedance tomography

검색결과 93건 처리시간 0.025초

Validation of Electrical Impedance Tomography Qualitative and Quantitative Values and Comparison of the Numeric Pain Distress Score against Mammography

  • Juliana, Norsham;Shahar, Suzana;Chelliah, Kanaga Kumari;Ghazali, Ahmad Rohi;Osman, Fazilah;Sahar, Mohd Azmani
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권14호
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    • pp.5759-5765
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    • 2014
  • Electrical impedance tomography (EIT) is a potential supplement for mammogram screening. This study aimed to evaluate and feasibility of EIT as opposed to mammography and to determine pain perception with both imaging methods. Women undergoing screening mammography at the Radiology Department of National University of Malaysia Medical Centre were randomly selected for EIT imaging. All women were requested to give a pain score after each imaging session. Two independent raters were chosen to define the image findings of EIT. A total of 164 women in the age range from 40 to 65-year-old participated and were divided into two groups; normal and abnormal. EIT sensitivity and specificity for rater 1 were 69.4% and 63.3, whereas for rater 2 they were 55.3% and 57.0% respectively. The reliability for each rater ranged between good to very good (p<0.05). Quantitative values of EIT showed there were significant differences in all values between groups (ANCOVA, p<0.05). Interestingly, EIT scored a median pain score of $1.51{\pm}0.75$ whereas mammography scored $4.15{\pm}0.87$ (Mann Whitney U test, p<0.05). From these quantitative values, EIT has the potential as a health discriminating index. Its ability to replace image findings from mammography needs further investigation.

Chemical Shift Artifact Correction in MREIT

  • Minhas, Atul S.;Kim, Young-Tae;Jeong, Woo-Chul;Kim, Hyung-Joong;Lee, Soo-Yeol;Woo, Eung-Je
    • 대한의용생체공학회:의공학회지
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    • 제30권6호
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    • pp.461-468
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    • 2009
  • Magnetic resonance electrical impedance tomography (MREIT) enables us to perform high-resolution conductivity imaging of an electrically conducting object. Injecting low-frequency current through a pair of surface electrodes, we measure an induced magnetic flux density using an MRI scanner and this requires a sophisticated MR phase imaging method. Applying a conductivity image reconstruction algorithm to measured magnetic flux density data subject to multiple injection currents, we can produce multi-slice cross-sectional conductivity images. When there exists a local region of fat, the well-known chemical shift phenomenon produces misalignments of pixels in MR images. This may result in artifacts in magnetic flux density image and consequently in conductivity image. In this paper, we investigate chemical shift artifact correction in MREIT based on the well-known three-point Dixon technique. The major difference is in the fact that we must focus on the phase image in MREIT. Using three Dixon data sets, we explain how to calculate a magnetic flux density image without chemical shift artifact. We test the correction method through imaging experiments of a cheese phantom and postmortem canine head. Experimental results clearly show that the method effectively eliminates artifacts related with the chemical shift phenomenon in a reconstructed conductivity image.

저항률이 다른 내부 물체의 검출을 위한 32-채널 생체 임피던스 측정 시스템 (32-Channel Bioimpedance Measurement System for the Detection of Anomalies with Different Resistivity Values)

  • 조영구;우응제
    • 대한의용생체공학회:의공학회지
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    • 제22권6호
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    • pp.503-510
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    • 2001
  • 인체의 각 조직은 서로 다른 저항률(resistivity)을 가지고 있고. 심장의 박동이나 호흡과 같은 생리현상은 해당 생체조직의 임피던스를 변화시킨다. 본 논문에서는 인체 내부에 존재하는 비정상 조직의 크기와 위치를 검출하기 위한 32-채널 생체 임피던스 측정 시스템에 대하여 기술한다. 이러한 기술은 유방암 조직의 경우와 같이 배경 조직과는 저항률이 다른 비정상 조직을 검출하는 경우에 응용할 수 있을 것으로 기대한다. 32-채널 생체 임피던스 측정 시스템을 위하여 32개의 복합형 전극과 32 채널의 정전류원을 사용하였다. 임피던스의 측정을 위해 50kHz의 정현파 전류를 주입하고. 유기되는 전압을 가변 이득 협대역 계측용 증폭기로 측정하고, 그 크기를 위상감응복조기로 검출하였다. 검출된 임피던스 신호는 A/D 변환하여 PC에 입력하였다. 전해질 팬텀을 이용한 실험에서 전체 시스템의 정확도는 2.42%이며, 직경 270mm인 팬텀 내부에 존재하는 직경 8mm 이상인 물체의 크기와 위치를 검출할 수 있었다. 본 연구의 결과를 기초로 다채널 생체 임피던스 측정 시스템의 정확도를 개선하여. 직경 lmm 이내의 물체를 검출하는 것이 향후의 연구 목표이다 이러한 정확도를 가지는 생체 임피던스 계측 시스템을 개발하면. 인체 내부의 임피던스 분포를 측정하는 EIT(electrical impedance tomography) 시스템과, 최근에 연구되고 있는 자기공명 임피던스 단층촬영(MREIT, magnetic resonance electrical impedance tomography)에도 응용이 가능할 것이다.

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Development of Prototype Multi-channel Digital EIT System with Radially Symmetric Architecture

  • Oh, Tong-In;Baek, Sang-Min;Lee, Jae-Sang;Woo, Eung-Je;Park, Chun-Jae
    • 대한의용생체공학회:의공학회지
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    • 제26권4호
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    • pp.215-221
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    • 2005
  • We describe the development of a prototype multi-channel electrical impedance tomography (EIT) system. The EIT system can be equipped with either a single-ended current source or a balanced current source. Each current source can inject current between any chosen pair of electrodes. In order to reduce the data acquisition time, we implemented multiple digital voltmeters simultaneously acquiring and demodulating voltage signals. Each voltmeter measures a differential voltage between a fixed pair of adjacent electrodes. All voltmeters are configured in a radially symmetric architecture to optimize the routing of wires and minimize cross-talks. To maximize the signal-to-noise ratio, we implemented techniques such as digital waveform generation, Howland current pump circuit with a generalized impedance converter, digital phase-sensitive demodulation, tri-axial cables with both grounded and driven shields, and others. The performance of the EIT system was evaluated in terms of common-mode rejection ratio, signal-to-noise ratio, and reciprocity error. Future design of a more innovative EIT system including battery operation, miniaturization, and wireless techniques is suggested.

골 밀도 평가를 위한 뼈의 전기 전도도 재구성: 시뮬레이션 (An Electrical Conductivity Reconstruction for Evaluating Bone Mineral Density : Simulation)

  • 최민주;김민찬;강관석;최흥호
    • 대한의용생체공학회:의공학회지
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    • 제25권4호
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    • pp.261-268
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    • 2004
  • 골다공증은 골 조직의 량이 감소하여 골절의 가능성이 증가하는 상태이다. 뼈의 전기적 특성은 골 밀도와 관련이 있으며, 특히 뼈의 절기 저항은 골 소실이 증가할수록 감소하는 것으로 알려져 있다. 만일 신뢰성 있는 측정이 가능하다면, 뼈의 전기적인 특성은 골다공증 진단을 위한 유용한 변수가 될 수 있음을 의미한다 본 연구에서는 EIT (electrical impedance tomography) 기술을 이용하여 뼈의 전기 전도도 평가를 시도하였다. 뼈와 주위의 연조직 간의 전기적인 특성의 차이가 크기 때문에 (100 정도), 일반적으로, 뼈의 EIT를 얻기는 쉽지 않다. 본 연구에서는 이상 경계 검출을 위해 개발된 adaptive mesh regeneration 기법을 이용하여, 주어진 경계면의 기하학적 조건하에서, 경계 내부의 전기전도도를 복원할 수 있도 록 하였다. 수치 해석은 균일한 타원형 (장경 17 mm, 단경 15 mm) 뼈와 주위의 연 조직으로 구성된 반경 40 mm인 원통형 팬텀으로 모의한 경골에 대해 수행하였다. 타원형 뼈는 팬텀의 원형 단면 중심에서 15 mm 위쪽에 위치하도록 하였다. 연 조직의 전기 전도도는 4 mS/cm로 고정하였고, 뼈에 대해서는 0.01 - 1 mS/cm에서 변하도록 하였다. 측정 오차에 의한 효과를 분석하기 위해 시뮬레이션은 측정 오차를 포함하도록 하였다. 시뮬레이션 결과, 만일 측정 오차가 5 % 미만으로 유지될 경우, 재구성된 뼈의 전기전도도는 10 % 이내의 오차를 갖는 것으로 나타났다. 예측할수 있듯이 복원의 정확도는 뼈의 전기 전도도가 증가함에 따라 증가하였다. 이것은 사용된 EIT가 골 소실이 진행된 뼈에 대한 좀더 정확한 정보를 제공할 수 있음을 시사한다. 본 연구는, 뼈의 해부학적인 정보를 알고 있을 때 뼈와 주위의 연조직에 대한 단순한 이상 영상에 한정된 결과를 제공하지만, EIT 기술이 골다공증 골절을 예측하는 새로운 방법으로 활용될 가능성을 시사한다.

Boundary estimation in electrical impedance tomography with multi-layer neural networks.

  • Kim, J.H.;Jeon, H.J.;Choi, B.Y.;Kim, M.C.;Kim, S.;Kim, K.Y.
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2003년도 ICCAS
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    • pp.553-558
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    • 2003
  • The boundary estimation problem is used to estimate the shape of organic depend on the phase of the cardiac cycle or interested in the detection of the location and size of anomalies with resistivity values different from the background tissues such as nuclear reactor. And we can use the method to solve the optimal solution such as modified Newton raphson, kalman filter, extended kalman filter, etc. But, this method consumes much time and is sensitive to the initial value and noise in the estimation of the unknown shape. In the paper, we propose that multi-layer neural networks estimate the boundary of the unknown object using Fourier coefficient. This method can be used at the real time estimation and have strong characteristics at the noise and initial value. It uses voltage change; difference the homogeneous voltage to the non-homogeneous voltage, and change of Fourier coefficient change to train multi-layer neural network. After train, we can have real time estimation using this method.

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Design 2-Dimensional Digital Filter In Reconstruction Of EIT

  • Kang, Dong-Hoon;Kang, Byung-Chae;Kim, Ji-Hoon;Hwang, Sang-Pil;Kim, Jin-Yeop;Jang, Jae-Duck;Lee, Seung-Ha;Choi, Bong-Yeol
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2004년도 ICCAS
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    • pp.36-39
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    • 2004
  • Electrical impedance tomography (EIT) has been suffered from the severe ill-posedness which is caused by the inherent low sensitivity of boundary measurements to any changes of internal resistivity values. So, small noise occur unexpected reconstruction image. Generally in EIT system, if measured voltage includes noise, we can't find object location and resistivity values. In this paper, we propose digital filter for measured voltage in EIT. Newton-Raphson is the most..popular algorithm in EIT, but noise cause to blur image. We use Fourier transform (FT) in order to minimize the noise and design the filter. After filtering, result of reconstruction image is improved better than before filtering.

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Dynamic Electrical Impedance Tomography with IMM Scheme

  • Kang, Suk-In;Kim, Bong-Seok;Kim, Min-Chan;Kim, Sin;Lee, Yoon-Joon;Kim, Kyung-Youn
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2002년도 ICCAS
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    • pp.45.4-45
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    • 2002
  • In EIT, an array of disjoint electrodes is attached on the boundary of the object and a set of small alternating electrical currents is injected into the object through these electrodes, and then the corresponding set of voltages is measured on the same array of the electrodes. The objective in EIT is to estimate the resistivity distribution inside the object based on the set of measured voltages and injected currents. In this paper, we proposed a new dynamic EIT reconstruction scheme based on the interacting multiple model (IMM) algorithm. The main contribution of the proposed scheme is that multiple models are employed for the state evolution to get around the modeling uncertainty. Extensi...

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SPECTROSCOPIC ADMITTIVITY IMAGING OF BIOLOGICAL TISSUES: CHALLENGES AND FUTURE DIRECTIONS

  • Zhang, Tingting;Bera, Tushar Kanti;Woo, Eung Je;Seo, Jin Keun
    • Journal of the Korean Society for Industrial and Applied Mathematics
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    • 제18권2호
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    • pp.77-105
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    • 2014
  • Medical imaging techniques have evolved to expand our ability to visualize new contrast information of electrical, optical, and mechanical properties of tissues in the human body using noninvasive measurement methods. In particular, electrical tissue property imaging techniques have received considerable attention for the last few decades since electrical properties of biological tissues and organs change with their physiological functions and pathological states. We can express the electrical tissue properties as the frequency-dependent admittivity, which can be measured in a macroscopic scale by assessing the relation between the time-harmonic electric field and current density. The main issue is to reconstruct spectroscopic admittivity images from 10 Hz to 1 MHz, for example, with reasonably high spatial and temporal resolutions. It requires a solution of a nonlinear inverse problem involving Maxwell's equations. To solve the inverse problem with practical significance, we need deep knowledge on its mathematical formulation of underlying physical phenomena, implementation of image reconstruction algorithms, and practical limitations associated with the measurement sensitivity, specificity, noise, and data acquisition time. This paper discusses a number of issues in electrical tissue property imaging modalities and their future directions.

Image Capturing of Dispersed Phases in DCHXs by Electric Tomography

  • Chun, Won-Gee;Kim, Min-Chan;Lee, Heon-Ju;Kang, Yong-Heack;Kwon, Hyok-Bo
    • 한국태양에너지학회 논문집
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    • 제21권2호
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    • pp.69-78
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    • 2001
  • This paper introduces the physical phenomena involved in Direct Contact Heat Exchangers (DCHXs) and also investigates the possibility of applying of EIT(Electrical Impedance Tomography) technique for capturing the images of dispersed phases as they stream through a stagnant body of water. A number of cases are studied where two dimensional cross-sectional static images are given for fictitious and actual masses present in a column of water(saline solution). In most direct contact liquid-liquid heat exchangers, oil or hydrocarbon with a density different(lighter or heavier) from water is normally used as dispersed working fluid. The main difficulty that arises with this arrangement lies in the elucidation of complicated flow field where the dispersed phase fluid tends to change its shape and size constantly during its journey through the other phase(water). This paper presents a number of results with different types of dispersed phases that are immiscible with water. The EIT technique has been employed in this context to test its applicability in capturing the dynamic images of dispersed phases. It shows static images of dispersed phases where dynamic images could be obtained by simply extending the algorithms and strategies employed in the present analysis.

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