Proton nuclear(^(1)H)is the observed nucleus on which most magnetic resonance imaging(MRI)applications depend.Most traditional^(1)H MRI can provide structural and functional information about organisms,while various n...Proton nuclear(^(1)H)is the observed nucleus on which most magnetic resonance imaging(MRI)applications depend.Most traditional^(1)H MRI can provide structural and functional information about organisms,while various non-proton nuclei(X-nuclei)MRI can provide more metabolic information.However,due to the relatively poor signal-to-noise ratio(SNR)of X-nuclei MRI,their applications are quite rare compared to^(1)H.Benefit from the rapid developments of MRI hardware and software technologies,X-nuclei MRI has recently attracted increasing interests in biomedical research.This review firstly introduces some current methods to improve the SNR of X-nuclei MRI.Secondly,this review describes biomedical applications of X-nuclei MRI,especially focusing on the current use of X-nuclei(^(13)C,^(17)O,^(19)F,^(23)Na and^(31)P)MRI to study related diseases in different organs,including the brain,liver,kidney,heart and bone.Finally,perspectives studies on X-nuclei imaging and its potential applications are described in biomedical research.展开更多
SF_6气体由于其优异的电气性能而广泛应用于电力行业,然而,由于其全球变暖潜能值极高,国内外学者在过去的几十年里对SF_6替代气体做了广泛研究,但由于它们都各有缺陷,故很难在实际生产中加以应用。文中以C_5F_(10)O/CO_2混合气体作为主...SF_6气体由于其优异的电气性能而广泛应用于电力行业,然而,由于其全球变暖潜能值极高,国内外学者在过去的几十年里对SF_6替代气体做了广泛研究,但由于它们都各有缺陷,故很难在实际生产中加以应用。文中以C_5F_(10)O/CO_2混合气体作为主要研究对象、以SF_6气体作为对照,研究了混合气体中C_5F_(10)O分压力分别为20 k Pa和40 k Pa、总压力为0.1~0.5 MPa时的工频耐压和雷电冲击(lightning impulse,LI)性能,并分析了其作为SF_6替代气体的可能性。实验结果表明,0.2 MPa的混合气体中混入20 k Pa和40 k Pa的C_5F_(10)O,可分别使混合气体的工频放电电压达到相同气压下SF_6气体的61.89%和81.99%。C_5F_(10)O分压力40 k Pa、总压力0.5 MPa的混合气体正、负极性雷电冲击放电电压分别是0.3 MPa时SF_6气体的88.9%和89.9%。因此,通过增加C_5F_(10)O的含量或提高混合气体的总压力,均可有效提高混合气体的绝缘性能,其中,前者更为有效。展开更多
基金supported by Chinese Academy of Sciences MRI Technology Alliance under Grant 2020GZ1003.
文摘Proton nuclear(^(1)H)is the observed nucleus on which most magnetic resonance imaging(MRI)applications depend.Most traditional^(1)H MRI can provide structural and functional information about organisms,while various non-proton nuclei(X-nuclei)MRI can provide more metabolic information.However,due to the relatively poor signal-to-noise ratio(SNR)of X-nuclei MRI,their applications are quite rare compared to^(1)H.Benefit from the rapid developments of MRI hardware and software technologies,X-nuclei MRI has recently attracted increasing interests in biomedical research.This review firstly introduces some current methods to improve the SNR of X-nuclei MRI.Secondly,this review describes biomedical applications of X-nuclei MRI,especially focusing on the current use of X-nuclei(^(13)C,^(17)O,^(19)F,^(23)Na and^(31)P)MRI to study related diseases in different organs,including the brain,liver,kidney,heart and bone.Finally,perspectives studies on X-nuclei imaging and its potential applications are described in biomedical research.
文摘SF_6气体由于其优异的电气性能而广泛应用于电力行业,然而,由于其全球变暖潜能值极高,国内外学者在过去的几十年里对SF_6替代气体做了广泛研究,但由于它们都各有缺陷,故很难在实际生产中加以应用。文中以C_5F_(10)O/CO_2混合气体作为主要研究对象、以SF_6气体作为对照,研究了混合气体中C_5F_(10)O分压力分别为20 k Pa和40 k Pa、总压力为0.1~0.5 MPa时的工频耐压和雷电冲击(lightning impulse,LI)性能,并分析了其作为SF_6替代气体的可能性。实验结果表明,0.2 MPa的混合气体中混入20 k Pa和40 k Pa的C_5F_(10)O,可分别使混合气体的工频放电电压达到相同气压下SF_6气体的61.89%和81.99%。C_5F_(10)O分压力40 k Pa、总压力0.5 MPa的混合气体正、负极性雷电冲击放电电压分别是0.3 MPa时SF_6气体的88.9%和89.9%。因此,通过增加C_5F_(10)O的含量或提高混合气体的总压力,均可有效提高混合气体的绝缘性能,其中,前者更为有效。