• Title/Summary/Keyword: Biomedical field

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Quantitative evaluating method for diagnostic ultrasound probe using 3-dimensional acoustic field analysis (3차원 음장 분석법을 이용한 진단용 초음파 프로브의 정량적 성능평가)

  • Noh, Si-Cheol;Kim, Ju-Young;Park, Jae-Hyun;Kim, Jin-Su;Kang, Jung-Hoon;Choi, Heung-Ho
    • Journal of Sensor Science and Technology
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    • v.19 no.6
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    • pp.490-496
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    • 2010
  • In this study, in order to overcome the weakness of acoustic field analysis which is generally used for ultrasonic probe performance evaluation, automatic acoustic field measurement system and evaluation parameters were proposed. The comparisons between acoustic field simulation and measured acoustic distribution data of normal and abnormal channels were conducted to evaluate the availability of proposed system and evaluation parameters. First, the impulse response characteristic of sample probe was investigated to classify the normal elements and abnormal elements. And then, normal channels and abnormal channels with abnormal element were chosen. The suggested 12 evaluation parameters were calculated using the acoustic fields of these channels. The availability of proposed automatic acoustic field measurement system and evaluation parameters was confirmed. And the performance evaluation of ultrasonic probe using acoustic field analysis could be easier and faster.

Treatment of Bone Repair by Inductively Magnetic Fields

  • Ahn, Jae-Mok;Lee, Woo-Cheol;Kim, Hee-Chan;Min, Byoung-Goo
    • Proceedings of the KOSOMBE Conference
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    • v.1992 no.05
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    • pp.213-217
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    • 1992
  • An inductively coupled magnetical signal (pulse wave, 0.7 to 60Hz, eighteen volts peak to Peak) that was applied non-invasively on the skin surface overlying the approximate site(measure position). In the group with unipolar pulse signal currents produced smaller than in the group with bipolar pulse signal. The signal was transmitted to the active coil, including a time-varying magnetic field: this in turn induced a the-varying electrical field in the field in the bone. It is very important to determine system parameters due to treatment time(healing) and the simplicity. This paper investigation was designed to compare the relative effects of pulsed unipolar currents with the effects of an identical pulsed bipolar currents. Since Inductive coupling is non-invasive and involves portable equipment, it is easy to apply and requires precise localization, it has distinct advantages and field characteristics along the bone for each different signal.

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A Study of Testing Method for Diagnostic Ultrasonic Array Probe through Pattern Analysis of Acoustic-Fields with Probe Channel Division (채널별 음장분포 분석을 통한 진단용 초음파 어레이 프로브의 평가방법에 관한 연구)

  • Yoo, B.C.;Choi, H.H.;Noh, S.C.;Min, H.K.;Kwon, J.W.
    • Journal of Biomedical Engineering Research
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    • v.27 no.5
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    • pp.229-236
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    • 2006
  • The acoustic field analysis method is the superior calibration method for rectifying the ultrasonic probe sensitivity. This method also can be applied to evaluate the probe performance in clinical fields without numerical analysis and precise measurements. In this paper, we propose the method of acoustic field pattern analysis with probe channel division for the evaluation of diagnostic ultrasound probe characterization. In order to verify our purpose, we performed a set of experiments. We measured the acoustic-field pattern of the three inferiority probes by channel division to evaluate an acoustic field distribution and impulse response characteristics. By comparing the results of acoustic field measurement method with that of conventional method such as impulse response and live image test for linear array probes, it is demonstrated that the ultrasound field measurement method is more effective then conventional method in detection of defective elements.

Enhanced Undergraduate Software Education Curriculum for Biomedical Engineering: a Proposal for a New Class (개선된 학부 의공학 소프트웨어 교육과정을 위한 새로운 과목의 제안)

  • Park, Hyun-Jin
    • Journal of Biomedical Engineering Research
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    • v.32 no.4
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    • pp.279-284
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    • 2011
  • Biomedical engineering is a discipline where engineering principles and techniques are applied to the medical field. Biomedical engineering lies between traditional engineering and medicine and is an inter-disciplinary field in its nature. Current Korean undergraduate biomedical engineering curriculum is a simple list of traditional engineering courses combined with basic medical/life science courses. There have been efforts to improve biomedical engineering education to reflect its inter-disciplinary nature. Enhanced software course for biomedical engineering is proposed as a part of effort to overhaul the undergraduate biomedical engineering curriculum. In this newly proposed course, students will learn MATLAB and LabVIEW, which are the most widely used software tools in biomedical engineering.

Assessment of Pulsed Magnetic Field Stimulus by Using Finger Photoplethysmogram and Pressure Pulse Waveform

  • Lee, Jin-Yong;Go, In-Suk;Choi, Jae-Won;Jang, Tae-Sun;Shin, Sang-Hoon;Lee, Hyun-Sook;Hwang, Do-Guwn;Kim, Sun-Wook
    • Journal of Magnetics
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    • v.15 no.4
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    • pp.209-212
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    • 2010
  • Photoplethysmogram (PPG) and pressure pulse waveform (PPW) were compared and evaluated for the efficacy of stimulating knuckles by using the pulsed magnetic field. Both signals were observed simultaneously while the knuckles were exposed for 10 min to the pulsed magnetic field, with maximum field intensity of 0.8 T and transition time of 0.126 msec. After 5 min stimulation of the knuckles, the results showed that the aging indexes calculated from the second derivative of the PPG were increased from -1.913 to 0.072, and that of the PPW from -0.063 to 0.387. However, for the relatively long-term stimulation for 10 min, we found that the values of both the aging indexes of the second derivatives and augmentation index of the PPW returned to the starting level. The changes observed in characteristic factors such as the aging indexes of the second derivatives and augmentation index of the PPW indicate the potential of pulsed magnetic field stimulation as a therapeutic method for the treatment of patients with peripheral vascular disease.

Embodiment of Spatially Arterial Pulse Diagnostic Apparatus using Array Multiple Hall Devices

  • Lee, Sang-Suk;Kim, Gi-Wang;Ahn, Myung-Cheon;Park, Young-Seok;Choi, Jong-Gu;Choi, Sang-Dae;Park, Dal-Ho;Hwang, Do-Guwn;Yoon, Hyung-Rho
    • Journal of Biomedical Engineering Research
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    • v.28 no.6
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    • pp.721-726
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    • 2007
  • The study relates to achievement and analysis of 3-dimensional spatial pulse wave archived by a spatially arterial pulse diagnostic apparatus (SAPDA), wherein a pulse sensing part array consists of multiple hall devices and is located over a skin contacting part which consists of a magnetic material. When a radially arterial pulse is transferred to the magnetic material, which is contacted skin that results in changes in a magnetic field of the lower part of the pulse sensing part array, the changes in a magnetic field can be detected by the commercial Hall semiconductor device of the pulse sensing part array. Finally, according to development of SAPDA, the 3-dimensionally arterial pulse waveform can be measured noninvasively by detecting the changes of the magnetic field.

Feasibility Study on Magnetic Nanoparticle Hyperthermia in Low Field MRI (저자장 자기공명영상 시스템 내에서 초상자성 나노입자 온열치료를 위한 발열 평가)

  • Kim, Ki Soo;Cho, Min Hyoung;Lee, Soo Yeol
    • Journal of Biomedical Engineering Research
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    • v.35 no.4
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    • pp.105-110
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    • 2014
  • For the combination of MRI and magnetic particle hyperthermia(MPH), we investigated the relative heating efficiency with respect to the strength of the static magnetic field under which the magnetic nanoparticles are to be heated by RF magnetic field. We performed nanoparticle heating experiments at the fringe field of 3T MRI magnet with applying the RF magnetic field perpendicularly to the static magnetic field. The static field strengths were 0T, 0.1T, 0.2T, and 0.3T. To prevent the coil heat from conducting to the nanoparticle suspension, we cooled the heating solenoid coil with temperature-controlled water with applying heat insulators between the solenoid coil and the nanoparticle container. We observed significant decrease of heat generation, up to 6% at 0.3T(100% at 0T), due to the magnetic saturation of the nanoparticles of 15 nm diameter under the static field. We think MPH is still feasible at low magnetic field lower than 0.3T if stronger RF magnetic field generation is permitted.

Design of Alternating Magnetic Field Stimulator Using Duty Factor

  • Jang, Tae-Sun;Lee, Jin-Yong;Lee, Hyun-Sook;Kim, Sun-Wook;Hwang, Do-Guwn
    • Journal of Magnetics
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    • v.17 no.1
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    • pp.42-45
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    • 2012
  • We have developed an alternating magnetic field stimulation system consisting of a switched-mode power supply and a digital control circuit which modulates a duty ratio to maintain a magnetic field intensity of a few mT even while the frequency increases up to 4 kHz with a controllable coil temperature below $30^{\circ}C$ in air. This duty ratio modulation and water circulation are advantageous for cell culture under ac-magnetic field stimulation by preventing the incubator from exceeding a cell-viable temperature of $37^{\circ}C$. Although the temperature of the coil when subjected to a sinusoidal voltage rapidly increased, that of our system modulated by the duty factor did not change. This is a potentially valuable method to investigate the effects of intermediate frequency magnetic field stimulation on biological entities such as cells, tissues and organs.

RF Shimming Considering Coupling Effects for High-Field MRI

  • Heo, Hye-Young;Cho, Min-Hyoung;Lee, Soo-Yeol
    • Journal of Biomedical Engineering Research
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    • v.29 no.4
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    • pp.267-271
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    • 2008
  • The RF shimming technique has been used to improve the transmit RF field homogeneity in highfield MRI. In the RF shimming technique, the amplitude and phase of the driving currents in each coil element are optimized to get homogenous flip angle or uniform image intensity. The inductive and capacitive coupling between the coil elements may degrade the RF field homogeneity if not taken into account in the optimization procedure. In this paper, we have analyzed the coupling effects on the RF shimming using a sixteen-element TEM RF coil model operating at 300 MHz. We have found that the coupling effects on the RF shimming can be reduced by putting high dielectric material between the active rung and the shield.