• 제목/요약/키워드: T1 relaxation time

검색결과 140건 처리시간 0.021초

NMR을 이용한 구조 및 입도 차이에 따른 분말 포도당의 molecular relaxation behavior의 관찰 (Observation of Molecular Relaxation Behavior of Glucose Powders with Different Structures and Particle Sizes Using Low Field Nuclear Magnetic Resonance (NMR))

  • 정명수
    • 한국식품과학회지
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    • 제34권6호
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    • pp.1140-1144
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    • 2002
  • 제조방법이 서로 다른 3가지 종류의 분말포도당을 표준체를 사용하여 입자크기별로 분류하여 각 시료에 대한 온도 변화에 따른 relaxation behavior, 즉 molecular mobility의 변화를 관찰하기 위하여 low resolution pulsed NMR로 각 온도에서 spin-spin relaxation time constant$(T_2)$을 측정하였다. 분말포도당 종류별로 $T_2-$온도 곡선을 작성하여 입도의 변화에 따른 각 시료의 glass transition 특성을 비교, 분석하였다. 또한 주사전자현미경으로 각 시료의 미세구조를 관찰함으로써 구조적 차이가 제조방법 및 입도의 변화에 따른 분말포도당의 relaxation behavior의 변화에 어떤 영향을 미치는지 조사하였다. 무수결정포도당은 본 연구에서의 측정 온도범위에서 입도에 관계없이 molecular mobility에 대한 측정값인 $T_2$의 변화가 거의 없는 것으로 나타나 온도변화에 매우 안정한 결정구조를 가진다는 사실을 확인할 수 있었다. 반면에 함수결정포도당은 결정구조를 가지지만 화학구조상 물분자를 함유하기 때문에 어느 온도$(65{\sim}70^{\circ}C$ 부근) 이상이 되면 결정구조가 깨어지면서 급격하게 caking이 시작되는 경향을 보여주었고, 무정형 구조를 가지는 정제포도당은 구조적 특성상 함수결정포도당보다 낮은 온도$40^{\circ}C$ 부근)에서부터 molecular mobility의 변화가 관찰되는 caking에 매우 민감한 물질임을 알 수 있었다. 입자크기의 차이는 제조방법의 차이에 비해 분말포도당의 molecular relaxation behavior에 그다지 큰 영향을 미치지는 않지만 입도가 커질수록 입자간의 접촉표면적이 줄어들어 caking에 대한 안정성이 다소 향상될 수 있음을 알 수 있었다..92에서 총 3개의 peak가 검출되었고, 이때의 검출파장은 약 $380{\sim}490\;nm$ 사이의 파장으로서 gradient mode로 한 이동상의 조건과 일치하였다. 또한 RT값이 3.27의 peak에서 가장 많은 색소가 검출되었다. 그러나 gradient mode로 한 이동상의 조건에서 7개의 peak가 검출되었고 isocratic mode로 한 이동상의 조건에서는 3개의 peak가 검출된 것으로 보아 정성적으로는 gradient mode로 한 이동상의 조건이 더 적합한 것으로 사료된다. 또한, PDA-HPLC를 이용한 참조기와 수조기의 색소성분을 비교한 결과, 수조기와 참조기에서 검출되는 peak중 각각의 3개의 peak는 유사한 RT값을 보였으나, 참조기 및 수조기의 각각 1개의 peak는 서로 다른 RT값을 보였으며 참조기 성분의 peak중 RT = 31.02는 수조기 성분에서는 발견되지 않아, 이 성분은 참조기 성분과 연관성이 클 것으로 사료된다.ne 함량은 일반꽃포류와 구운꽃포류에서 각각 $4{\sim}43\;mg$$18{\sim}74\;mg$이었다. t-검정 결과 일반꽃포류와 구운꽃포류 함량간에는 수분, glutamic acid, creatinine 등에서 유의차가 있었으나, 그 이외에 대부분의 성분간에는 유의차가 인정되지 않는 것으로 나타났다.갈근 추출액을 급여한 흰쥐군은 50 ppm의 카드뮴액만을 급여한 흰쥐군과 비교하여 신장내 카드뮴 함량과 GPT 및 LDH 활성도, renin 활성도가 유의적으로 감소되었고 신장 무게는 정상 흰쥐와 같은 수준으로 회복하였고 GOT 활성도 역시 정상 흰쥐와 같은 수준으로 감소를 보여 갈근이 카드뮴 중독 흰쥐에서 신장 등의 장기내 카드뮴 축적의 감소로 카드뮴 중독 작용의 경감 효과를 갖는 것으로 나타났다.실이나 최근 세계화는 곧 우리의 전통문화를 알리는 것이라는 목소리에 주부들이 전통음식에 대한

Reflection of electro-magneto-thermoelastic plane waves in a rotating medium in context of three theories with two-temperature

  • Abo-Dahab, S.M.;Othman, Mohamed I.A.;Alsebaey, Ohoud N.S.
    • Structural Engineering and Mechanics
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    • 제78권1호
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    • pp.23-30
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    • 2021
  • In this paper, we established the generalized thermoelasticity phenomenon in an isotropic elastic medium considering the electromagnetic field, rotation and two-temperature. Three theories of generalized thermoelasticity have been applied: Lord-Shulman (one relaxation time), Green-Lindsay (two relaxation times), as well as the coupled theory. We discussed some particular cases in the context of the wave propagation phenomenon in thermoelasticity. From solving the fundamental equations, we arrived that there are three waves: P-, T- and SV-waves that we calculated their velocities. The boundary conditions for mechanical stress and Maxwell's stress and thermal insulated or isothermal have been applied to determine the amplitudes ratios (reflection coefficients) for P-, T - and SV waves. Some utilitarian aspects are obtained from the reflection coefficients, presented graphically, and the new conclusions have been presented. Comparisons are made for the results predicted by different theories (CT, LS, GL) in the absence and presence of the electro-magnetic field, rotation, as well as two-temperature on the reflection of generalized thermoelastic waves. The results obtained concluded that the external parameters as the angle of incidence, electromagnetic field, rotation as well as the theories parameters have strong effect on the phenomenon.

Effect of Number of Measurement Points on Accuracy of Muscle T2 Calculations

  • Tawara, Noriyuki;Nishiyama, Atsushi
    • Investigative Magnetic Resonance Imaging
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    • 제20권4호
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    • pp.207-214
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    • 2016
  • Purpose: The purpose of this study was to investigate the effect of the number of measurement points on the calculation of transverse relaxation time (T2) with a focus on muscle T2. Materials and Methods: This study assumed that muscle T2 was comprised of a single component. Two phantom types were measured, 1 each for long ("phantom") and short T2 ("polyvinyl alcohol gel"). Right calf muscle T2 measurements were conducted in 9 healthy male volunteers using multiple-spin-echo magnetic resonance imaging. For phantoms and muscle (medial gastrocnemius), 5 regions of interests were selected. All region of interest values were expressed as the mean ${\pm}$ standard deviation. The T2 effective signal-ratio characteristics were used as an index to evaluate the magnetic resonance image quality for the calculation of T2 from T2-weighted images. The T2 accuracy was evaluated to determine the T2 reproducibility and the goodness-of-fit from the probability Q. Results: For the phantom and polyvinyl alcohol gel, the standard deviation of the magnetic resonance image signal at each echo time was narrow and mono-exponential, which caused large variations in the muscle T2 decay curves. The T2 effective signal-ratio change varied with T2, with the greatest decreases apparent for a short T2. There were no significant differences in T2 reproducibility when > 3 measurement points were used. There were no significant differences in goodness-of-fit when > 6 measurement points were used. Although the measurement point evaluations were stable when > 3 measurement points were used, calculation of T2 using 4 measurement points had the highest accuracy according to the goodness-of-fit. Even if the number of measurement points was increased, there was little improvement in the probability Q. Conclusion: Four measurement points gave excellent reproducibility and goodness-of-fit when muscle T2 was considered mono-exponential.

거대분자에 부분적으로 결합한 상자성 자기공명 조영제의 회전속도가 이완증강에 미치는 영향 (The Effects of Rotational Correlation Time of Paramagnetic Contrast Agents on Relaxation Enhancement: Partial Binding to Macromolecules)

  • 장용민
    • Investigative Magnetic Resonance Imaging
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    • 제3권2호
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    • pp.159-166
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    • 1999
  • Purpose : To evaluate the effect of rotational correlation time (${\tau}_R$) and the possible related changes of other parameters, ${\tau}_M,{\;}{\tau}_S,{\;}and{\;}(\tau}_V$ of gadolinium (Gd) chelate on T1 relaxation enhancement in two pool model. Materials and Methods : The NMRD (Nuclear Magnetic Relaxation Dispersion) profiles were simulated from 0.02 MHz to 800 MHz proton Larmor frequency for different values of rotational correlation times based on Solomon-Bloembergen equation for inner-sphere relaxation enhancement. To include both unbound pool (pool A) and bound pool (pool B), the relaxivity was divided by contribution from unbound pool and bound pool. The rotational correlation time for pool A was fixed at the value of 0.1 ns, which is a typical value for low molecular weight complexes such as Gd-DTPA in solution and ${\tau}_R$ for pool B was changed from 0.1 ns to 20 ns to allow the slower rotation by binding to macromolecule. The fractional factor of was also adjusted from 0 to 1.0 to simulate different binding ratios to macromolecule. Since the binding of Gd-chelate to macromolecule cab alter the electronic environment of Gd ion and also the degree of bulk water access to hydration site of Gd-chelate, the effects of these parameters were also included. Results : The result shows that low field profiles, ranged from 0.02 to 40 MHz, and dominated by contribution from bound pool, which is bound to macromolecule regardless of binding ratios. In addition, as more Gd-chelate bound to macromolecule, sharp increase of relaxivity at higher field occurs. The NMRD profiles for different values of ${\tau}_S$ show the enormous increase of low field profile whereas relaxivity at high field is not affected by ${\tau}_S$. On the other hand, the change in ${\tau}$V does not affect low field profile but strongly in fluences on both inflection fie이 and the maximum relaxivity value. The results shows a fluences on both inflection field and the maximum relaxivity value. The results shows a parabolic dependence of relaxivity on ${\tau}_M$. Conclusion : Binding of Gd-chelate to a macromolecule causes slower rotational tumbling of Gd-chelate and would result in relaxation enhancement, especially in clinical imaging field. However, binding to macromolecule can change water enchange rate (${\tau}_M$) and electronic relaxation ($T_le$) vis structural deformation of electron environment and the access of bulk water to hydration site of metal-chelate. The clinical utilities of Gd-chelate bound to macromolecule are the less dose requirement, the tissue specificity, and the better perfusion and intravascular agents.

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Dynamical behavior of generalized thermoelastic diffusion with two relaxation times in frequency domain

  • Sharma, Nidhi;Kumar, Rajneesh;Ram, Paras
    • Structural Engineering and Mechanics
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    • 제28권1호
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    • pp.19-38
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    • 2008
  • A general solution to the field equations of homogeneous isotropic generalized thermoelastic diffusion with two relaxation times (Green and Lindsay theory) has been obtained using the Fourier transform. Assuming the disturbances to be harmonically time.dependent, the transformed solution is obtained in the frequency domain. The application of a time harmonic concentrated and distributed loads have been considered to show the utility of the solution obtained. The transformed components of displacement, stress, temperature distribution and chemical potential distribution are inverted numerically, using a numerical inversion technique. Effect of diffusion on the resulting expressions have been depicted graphically for Green and Lindsay (G-L) and coupled (C-T) theories of thermoelasticity.

EXACT SOLUTION FOR STEADY PAINT FILM FLOW OF A PSEUDO PLASTIC FLUID DOWN A VERTICAL WALL BY GRAVITY

  • Alam, M.K.;Rahim, M.T.;Islam, S.;Siddiqui, A.M.
    • Journal of the Korean Society for Industrial and Applied Mathematics
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    • 제16권3호
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    • pp.181-192
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    • 2012
  • Here in this paper, the steady paint film flow on a vertical wall of a non-Newtonian pseudo plastic fluid for drainage problem has been investigated. The exact solution of the nonlinear problem is obtained for the velocity profile. Also the average velocity, volume flux, shear stress on the wall, force to hold the wall in position and normal stress difference have been derived. We retrieve Newtonian case, when material constant ${\mu}_1$ and relaxation time ${\lambda}_1$ equal zero. The results for co-rotational Maxwell fluid is also obtained by taking material constant ${\mu}_1$ = 0. The effect of the zero shear viscosity ${\eta}_0$, the material constant ${\mu}_1$, the relaxation time ${\lambda}_1$ and gravitational force on the velocity profile for drainage problem are discussed and plotted.

ASYMPTIOTIC BEHAVIOR FOR THE VISCOELASTIC KIRCHHOFF TYPE EQUATION WITH AN INTERNAL TIME-VARYING DELAY TERM

  • Kim, Daewook
    • East Asian mathematical journal
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    • 제32권3호
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    • pp.399-412
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    • 2016
  • In this paper, we study the viscoelastic Kirchhoff type equation with the following nonlinear source and time-varying delay $$u_{tt}-M(x,t,{\parallel}{\nabla}u(t){\parallel}^2){\Delta}u+{\int_{0}^{t}}h(t-{\tau})div[a(x){\nabla}u({\tau})]d{\tau}\\+{\parallel}u{\parallel}^{\gamma}u+{\mu}_1u_t(x,t)+{\mu}_2u_t(x,t-s(t))=0.$$ Under the smallness condition with respect to Kirchhoff coefficient and the relaxation function and other assumptions, we prove the uniform decay rate of the Kirchhoff type energy.

EPR을 통한 상자성 자기공명 조영제의 전자스핀 이완시간의 결정 (Determination of Electron Spin Relaxation Time of the Gadolinium-Chealted MRI Contrast Agents by Using an X-band EPR Technique)

  • Sung-wook Hong;Yongmin Chang;Moon-jung Hwang;Il-su Rhee;Duk-Sik Kang
    • Investigative Magnetic Resonance Imaging
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    • 제4권1호
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    • pp.27-33
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    • 2000
  • 목적: 전자상자성 공명(Electron Paramagnetic Resonance EPR)을 사용하여, 현재 상용되고 있는 세가지 상자성 자기공명 조영제, Gd-DTPA, Gd-DTPA-BMA, Gd-DOTA의 전자스핀 이완시간 $T_{le}$를 결정하고자 한다. 대상 및 방법: 본 연구에 사용된 상자성 자기공명 조영제는 Gd-DTPA(Magnevist), Gd-DTPA-BMA(OMNISCAN), Gd-DOTA(Dotarem)이다. 이들 자기공명 조영제들은 2:1 부피 비율의 메탄올과 물의 혼합용액에 희석하여 저온의 glassy상태에서 EPR스펙트럼을 얻었으며, 또한 주어진 영 자기장 갈라지기 (zero-field splitting, ZFS)변수를 $3{\times}3$ 텐서량으로 계산하는 컴퓨터 시뮬레이션 프로그램 'GEN'을 사용하여, 이들 조영제들에 대한 각각 다른 ZFS변수를 가지는 시뮬레이션 스펙트럼을 만들었다. 이 결과들과 McLachlan의 평균이완율 이론을 적용하여 전자스핀 이완시간이 결정되었다. 결과: 상자성 자기공명 조영제 Gd-DTPA, Gd-DTPA-BMA, Gd-DOTA의 전자 횡축 스핀이완시간($T_{2e}$)은 각각 0.113ns, 0.147ns, 1.81ns, g-value는 1,9737, 1.9735, 1.9830, 전자스핀 이완시간($T_{le}$)는 18.70ns, 33.40ns, $1.66{\mu}s$로 결정되었다. 결론: 실험 결과로부터 상자성 자기공명 조영제의 ZFS변수가 클수록 짧은 전자스핀 이완시간 $T_{le}$를 가진다는 일반적인 사실을 재 확인할 수 있었다. 본 연구에 사용된 3가지 자기 공명 조영제들 중에는 화학적으로 환상구조 배위자를 갖는 Gd-DOTA가 가장 긴 전자스핀 이완시간 $T_{le}$를 가지는 것으로 나타나서 일반적으로 환상구조 배위자를 갖는 조영제들이 선상구조 배위자를 갖는 조영제에 비해 전자적인 성질은 우수한 것으로 나타났고 결론적으로 상자성 조명제가 물분자의 자기이완시간에 미치는 영향을 평가하고 고효율 상자성 자기 공명 조영제 개발에는 정확한 ZFS변수 결정이 매우 중요하다는 것을 알 수 있었다.

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Nuclear Magnetic Resonance Study of 23Na Nucleus in NaBrO3 Single Crystal

  • Yeom, Tae Ho
    • Journal of Magnetics
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    • 제20권4호
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    • pp.342-346
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    • 2015
  • The nuclear magnetic resonance of the $^{23}Na$ nucleus in a $NaBrO_3$ single crystal was investigated at the temperature range of 200 K~410 K. The tendencies of temperature dependence of the nuclear quadrupole coupling for the two magnetically inequivalent Na(I) and Na(II) centers are found to be opposite to each other. The nuclear spin-lattice relaxation mechanism of $^{23}Na$ in the $NaBrO_3$ crystal is investigated, and the result revealed that the Raman process is dominant in the temperature range investigated. The relaxation process of the $^{23}Na$ nuclear spins was well described by a single exponential function in time. The $T_1$ values of the $^{23}Na$ nuclei in the $NaBrO_3$ single crystal decreased with increasing temperature. The calculated activation energy for the $^{23}Na$ is $0.032{\pm}0.002eV$.

Proton Magnetic Resonance Study of the Amino Group of Thioacetamide (TA) I. Quadrupole Relaxation Effects in NH$_2$ of Thioacetamide

  • Suhr, Jae-Ryun;Yoon, Chang-Ju;Ro, Seong-Gu;Choi, Young-Sang
    • Bulletin of the Korean Chemical Society
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    • 제8권4호
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    • pp.230-232
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    • 1987
  • Nitrogen-14 quadrupolar relaxation has been observed in the amino proton nmr spectra of TA in acetone and methanol solutions over the temperature range $-83^{\circ}C\; to\;+35^{\circ}C.$ The proton nmr lineshapes were analyzed to yield a $^{14}N$ spin lattice relaxation time $(T_1)_N$ as a function of temperature. Activation energies and correlation times at $25^{\circ}C$ for the molecular reorientation in the two solution phases have been calculated and the results are discussed.