NMR relaxation - traducción al ruso
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NMR relaxation - traducción al ruso

IN NUCLEAR MAGNETIC RESONANCE AND MAGNETIC RESONANCE IMAGING, THE WAY SIGNALS CHANGE WITH TIME
T1 (MRI); Magnetic relaxation; 1/T1; Spin-saturation transfer; NMR relaxation; T1 mri
  • Spin echo pulse sequence and magnetization decay animation.
  • Visual representation of the spin of a proton under a constant magnetic field B<sub>0</sub>. Visualization of the <math>T_1</math> and <math>T_2</math> relaxation times.

NMR relaxation         

общая лексика

ЯМР-релаксация

relaxation technique         
ANY METHOD, PROCESS, PROCEDURE, OR ACTIVITY THAT HELPS A PERSON TO RELAX
Relaxation techniques; Relaxation training; Mindbody relaxation; Mindbody Relaxation; Relaxation exercise; Human relaxation; Relaxation therapy

общая лексика

релаксационный метод

proton magnetic resonance         
  • H]] atoms in ethyl acetate regarding NMR.  The hydrogens (H) on the CH<sub>3</sub>COO- ([[acetate]]) group are not coupling with the other H atoms and appear as a singlet, but the -CH<sub>2</sub>- and -CH<sub>3</sub> hydrogens of the [[ethyl group]] (-CH<sub>2</sub>CH<sub>3</sub>) are coupling with each other, resulting in a quartet and triplet respectively.
  • H NMR spectrum of a solution of HD (labeled with red bars) and H<sub>2</sub> (blue bar).  The 1:1:1 triplet for HD arises from heteronuclear (different isotopes) coupling.
  • <sup>1</sup>H NMR spectrum predicted for 1,4-dimethylbenzene. Under ideal conditions, the ratio of integrated signal of protons A and B is related to the structure of this molecule.
NMR VIA PROTONS, HYDROGEN-1 NUCLEI
HNMR; H NMR; HNMR Spectroscopy; Proton NMR Spectroscopy; 1HNMR; 1H NMR; Proton NMR spectroscopy; H-1 NMR; Hydrogen-1 NMR; Hydrogen-1 NMR spectroscopy; H-1 NMR spectroscopy; Proton Magnetic Resonance; Proton magnetic resonance; Proton NMR; Proton resonance; H NMR spectrum

общая лексика

протонный магнитный резонанс

Definición

relaxed
1.
If you are relaxed, you are calm and not worried or tense.
As soon as I had made the final decision, I felt a lot more relaxed...
ADJ
2.
If a place or situation is relaxed, it is calm and peaceful.
The atmosphere at lunch was relaxed.
ADJ

Wikipedia

Relaxation (NMR)

In MRI and NMR spectroscopy, an observable nuclear spin polarization (magnetization) is created by a homogeneous magnetic field. This field makes the magnetic dipole moments of the sample precess at the resonance (Larmor) frequency of the nuclei. At thermal equilibrium, nuclear spins precess randomly about the direction of the applied field. They become abruptly phase coherent when they are hit by radiofrequent (RF) pulses at the resonant frequency, created orthogonal to the field. The RF pulses cause the population of spin-states to be perturbed from their thermal equilibrium value. The generated transverse magnetization can then induce a signal in an RF coil that can be detected and amplified by an RF receiver. The return of the longitudinal component of the magnetization to its equilibrium value is termed spin-lattice relaxation while the loss of phase-coherence of the spins is termed spin-spin relaxation, which is manifest as an observed free induction decay (FID).

For spin=½ nuclei (such as 1H), the polarization due to spins oriented with the field N relative to the spins oriented against the field N+ is given by the Boltzmann distribution:

N + N = e Δ E k T {\displaystyle {\frac {N_{+}}{N_{-}}}=e^{-{\frac {\Delta E}{kT}}}}

where ΔE is the energy level difference between the two populations of spins, k is the Boltzmann constant, and T is the sample temperature. At room temperature, the number of spins in the lower energy level, N−, slightly outnumbers the number in the upper level, N+. The energy gap between the spin-up and spin-down states in NMR is minute by atomic emission standards at magnetic fields conventionally used in MRI and NMR spectroscopy. Energy emission in NMR must be induced through a direct interaction of a nucleus with its external environment rather than by spontaneous emission. This interaction may be through the electrical or magnetic fields generated by other nuclei, electrons, or molecules. Spontaneous emission of energy is a radiative process involving the release of a photon and typified by phenomena such as fluorescence and phosphorescence. As stated by Abragam, the probability per unit time of the nuclear spin-1/2 transition from the + into the - state through spontaneous emission of a photon is a negligible phenomenon. Rather, the return to equilibrium is a much slower thermal process induced by the fluctuating local magnetic fields due to molecular or electron (free radical) rotational motions that return the excess energy in the form of heat to the surroundings.

¿Cómo se dice NMR relaxation en Ruso? Traducción de &#39NMR relaxation&#39 al Ruso