• 제목/요약/키워드: angular increment

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교정치료환자의 측모변화에 관한 두부방사선 계측학적 연구 (A ROENTGENOCEPHALOMETRIC STUDY OF PROFILE CHANCES IN ORTHODONTICALLY TREATED PATIENTS)

  • 최선웅
    • 대한치과교정학회지
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    • 제4권1호
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    • pp.21-29
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    • 1974
  • The purpose of the present study is to evaluate changes of the soft tissue relative to underlying skeletal elements during orthodontic treatment, and the influence of orthodontic treatment quantitatively on various regions of the facial profile. 59 Korean young women were selected, whose Hellman dental age was IV A, IV C and V A. Lateral cephalometric head films were taken before and after orthodontic treatment. From tracings, landmarks on skeletal and soft tissue profile were located, and then their linear and angular measurements were made directly. The results were obtained as follow: 1) Soft tissues of the facial profile were closely related and dependent on the underlying dentoskeletal frameworks. Orthodontic treament resulted in the reduction of dentofacial protrusion with both upper and lower lips becoming less procumbent during treament. 2) Thickness of the upper lip increased considerably during orthodontic treatment, and this change was related to maxillary incisor retraction. The ratio between the amount of maxillary incisor retraction and that of increment of upper lip thickness was approximately 5:3. 3) Soft tissue thickness overlying Downs' point A, point B and pogonion was not modified by orthodontic treatment. 4) Holdaway's H line, relating facial profile to the underlying dentoskeletal framework, seemed to be the most practical approach to soft tissue analysis.

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판구조물의 열탄소성 해석 (A Study on the Thermal Elasto-Plastic Analysis of Plated Structures)

  • 김병일;장창두
    • 대한조선학회논문집
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    • 제34권1호
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    • pp.68-76
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    • 1997
  • 본 논문에서는 선박 및 해양 구조물을 구성하는 용접 판구조물의 변형 및 잔류응력 등 용접 초기 결함을 효율적으로 평가할 수 있는 열탄소성 해석방법을 정립하였다. 또한 평판의 선상가열공법(line heating process)을 열탄소성 시뮬레이션함으로써 작업의 고능률화 및 자동화를 위한 기초연구를 수행하였다. 판구조물에 대한 열전도 해석을 수행하기 위하여 해석적인 방법과 수치적인 방법을 병행하였다. 판구조물의 열탄소성 해석방법에 있어서는 초기변형도법에 근거한 유한요소법을 사용하였으며, 증분 구간중 소성 구역에서는 응력 증분 및 항복응력 중분의 2 차항까지 고려해서 시간 증분을 최적 제어함으로써 해석 불능에 빠지는 문제를 극복하였다. 특히 응력 중분에 탄성계수의 온도에 따른 증분을 2 차항까지 포함시켰다. 평판의 두께와 입열량을 변화시키면서 일련의 용접 열탄소성 실험을 수행하였는 바, 온도 및 용접 변형을 계측하여 수치 계산 결과와 비교하여 상호 부합성이 양호함을 확인하였다.

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은 나노입자 프린팅 기반의 재활치료용 신축성 관절센서 개발 (Development of Stretchable Joint Motion Sensor for Rehabilitation based on Silver Nanoparticle Direct Printing)

  • Chae, Woen-Sik;Jung, Jae-Hu
    • 한국운동역학회지
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    • 제31권3호
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    • pp.183-188
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    • 2021
  • Objective: The purpose of this study was to develop a stretchable joint motion sensor that is based on silver nano-particle. Through this sensor, it can be utilized as an equipment for rehabilitation and analyze joint movement. Method: In this study, precursor solution was created, after that, nozel printer (Musashi, Image master 350PC) was used to print on a circuit board. Sourcemeter (Keithley, Keithley-2450) was used in order to evaluate changes of electric resistance as the sensor stretches. In addition, the sensor was attached on center of a knee joint to 2 male adults, and performed knee flexion-extension in order to evaluate accurate analysis; 3 infrared cameras (100 Hz, Motion Master 100, Visol Inc., Korea) were also used to analyze three dimensional movement. Descriptive statistics were suggested for comparing each accuracy of measurement variables of joint motions with the sensor and 3D motions. Results: The change of electric resistance of the sensor indicated multiple of 30 times from initial value in 50% of elongation and the value of electric resistance were distinctively classified by following 10%, 20%, 30%, 40% of elongation respectively. Through using the sensor and 3D camera to analyze movement variable, it showed a resistance of 99% in a knee joint extension, whereas, it indicated about 80% in flexion phase. Conclusion: In this research, the stretchable joint motion sensor was created based on silver nanoparticle that has high conductivity. If the sensor stretches, the distance between nanoparticles recede which lead gradual disconnection of an electric circuit and to have increment of electric resistance. Through evaluating angle of knee joints with observation of sensor's electric resistance, it showed similar a result and propensity from 3D motion analysis. However, unstable electric resistance of the stretchable sensor was observed when it stretches to maximum length, or went through numerous joint movements. Therefore, the sensor need complement that requires stability when it comes to measuring motions in any condition.

Analysis of Surface Plasmon Resonance on Periodic Metal Hole Array by Diffraction Orders

  • 황정우;윤수진;강상우;노삼규;이상준
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.176-177
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    • 2013
  • Surface plasmon polaritons (SPPs) have attracted the attention of scientists and engineers involved in a wide area of research, microscopy, diagnostics and sensing. SPPs are waves that propagate along the surface of a conductor, usually metals. These are essentially light waves that are trapped on the surface because of their interaction with the free electrons of conductor. In this interaction, the free electrons respond collectively by oscillating in resonance with the light wave. The resonant interaction between the surface charge oscillation and the electromagnetic field of the light constitutes the SPPs and gives rise to its unique properties. In this papers, we studied theoretical and experimental extraordinary transmittance (T) and reflectance (R) of 2 dimensional metal hole array (2D-MHA) on GaAs in consideration of the diffraction orders. The 2d-MHAs was fabricated using ultra-violet photolithography, electron-beam evaporation and standard lift-off process with pitches ranging from 1.8 to $3.2{\mu}m$ and diameter of half of pitch, and was deposited 5-nm thick layer of titanium (Ti) as an adhesion layer and 50-nm thick layer of gold (Au) on the semiinsulating GaAs substrate. We employed both the commercial software (CST Microwave Studio: Computer Simulation Technology GmbH, Darmstadt, Germany) based on a finite integration technique (FIT) and a rigorous coupled wave analysis (RCWA) to calculate transmittance and reflectance. The transmittance was measured at a normal incident, and the reflectance was measured at variable incident angle of range between $30^{\circ}{\sim}80^{\circ}$ with a Nicolet Fourier transmission infrared (FTIR) spectrometer with a KBr beam splitter and a MCT detector. For MHAs of pitch (P), the peaks ${\lambda}$ max in the normal incidence transmittance spectra can be indentified approximately from SP dispersion relation, that is frequency-dependent SP wave vector (ksp). Shown in Fig. 1 is the transmission of P=2.2 um sample at normal incidence. We attribute the observation to be a result of FTIR system may be able to collect the transmitted light with higher diffraction order than 0th order. This is confirmed by calculations: for the MHAs, diffraction efficiency in (0, 0) diffracted orders is lower than in the (${\pm}x$, ${\pm}y$) diffracted orders. To further investigate the result, we calculated the angular dependent transmission of P=2.2 um sample (Fig. 2). The incident angle varies from 30o to 70o with a 10o increment. We also found the splitting character on reflectance measurement. The splitting effect is considered a results of SPPs assisted diffraction process by oblique incidence.

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