Department of Chemistry, Integrative Biosciences (Ibio), Karmanos Cancer Institute (KCI), Wayne State University, Detroit, Michigan, 48202, United States.
Institute of Microstructure Technology, Karlsruhe Institute of Technology, 76344, Eggenstein-Leopoldshafen, Karlsruhe, Germany.
Angew Chem Int Ed Engl. 2024 Sep 9;63(37):e202406551. doi: 10.1002/anie.202406551. Epub 2024 Jul 12.
It has recently been shown that a bolus of hyperpolarized nuclear spins can yield stimulated emission signals similar in nature to maser signals, potentially enabling new ways of sensing hyperpolarized contrast media, including most notably [1-C]pyruvate that is under evaluation in over 50 clinical trials for metabolic imaging of cancer. The stimulated NMR signal emissions lasting for minutes do not require radio-frequency excitation, offering unprecedented advantages compared to conventional MR sensing. However, creating nuclear spin maser emission is challenging in practice due to stringent fundamental requirements, making practical in vivo applications hardly possible using conventional passive MR detectors. Here, we demonstrate the utility of a wireless NMR maser detector, the quality factor of which was enhanced 22-fold (to 1,670) via parametric pumping. This active-feedback technique breaks the intrinsic fundamental limit of NMR detector circuit quality factor. We show the use of parametric pumping to reduce the threshold requirement for inducing nuclear spin masing at 300 MHz resonance frequency in a preclinical MRI scanner. Indeed, stimulated emission from hyperpolarized protons was obtained under highly unfavorable conditions of low magnetic field homogeneity (T* of 3 ms). Greater gains of the quality factor of the MR detector (up to 1 million) were also demonstrated.
最近已经证明,超极化核自旋的脉冲可以产生类似于脉泽信号的受激辐射信号,这可能为超极化对比剂的检测开辟新的途径,包括目前正在 50 多项临床试验中评估用于癌症代谢成像的 [1-C]丙酮酸。持续数分钟的受激 NMR 信号发射不需要射频激发,与传统的磁共振检测相比具有前所未有的优势。然而,由于严格的基本要求,在实践中产生核自旋脉泽发射具有挑战性,使得使用传统的无源磁共振探测器进行实际的体内应用几乎不可能。在这里,我们展示了一种无线 NMR 脉泽探测器的实用性,通过参量泵浦,其品质因数提高了 22 倍(达到 1670)。这种主动反馈技术打破了 NMR 探测器电路品质因数的固有基本限制。我们展示了参量泵浦在降低 300MHz 共振频率下诱导核自旋脉泽所需的阈值要求方面的应用,在磁场均匀性低(T*为 3ms)的极不利条件下获得了超极化质子的受激辐射。还证明了磁共振探测器的品质因数(高达 100 万)的更大增益。