BACKGROUND: Brown adipose tissue (BAT) is metabolically activatable and plays an important role in obesity and metabolic diseases. With reduced fat-water-fraction (FWF) compared with white adipose tissue (WAT), BAT mass and its functional activation may be quantified with Z-spectra MRI, with built-in FWF and the metabolic amide proton transfer (APT) contrasts. PURPOSE: To investigate if Z-spectral MRI can quantify the mass and metabolic activity of adipose tissues. STUDY TYPE: Prospective. SUBJECTS: Seven groups of 8-week-old male rats, including two groups (nâ=â7 per group) for in vivo MRI study and five groups (nâ=â5 per group) for ex vivo validation; 12 young and healthy volunteers with 6 male and 6 female. FIELD STRENGTH/SEQUENCE: The 7 T small animal and 3 T clinical systems, T(2)-weighted imaging, Rapid Acquisition with Relaxation Enhancement (RARE) readout based chemical exchange saturation transfer (CEST) Z-spectral MRI sequence. ASSESSMENT: Quantified FWF and APT from Z-spectra in rats before and after norepinephrine (NE) stimulation and in healthy human subjects; ex vivo measurements of total proteins in BAT from rats. STATISTICAL TESTS: Two-tailed unpaired Student's t-tests and repeated measures ANOVA. P-value <0.05 was considered significant. RESULTS: Decreased FWF (from 39.6%â±â7.2% before NE injection to 16.4%â±â7.2% 120 minutes after NE injection, Pâ<â0.0001) and elevated APT (from 1.1%â±â0.5% before NE injection to 2.9%â±â0.5% 120 minutes after NE injection, Pâ<â0.0001) signals in BAT were observed with in vivo Z-spectral MRI in rats injected with NE at 7 T MRI. At clinical 3 T, Z-spectral MRI was used to quantify the FWF (58.5%â±â7.2% in BAT and 73.7%â±â6.5% in WAT with Pâ<â0.0001) and APT (2.6%â±â0.8% in BAT and 0.9%â±â0.3% in WAT with Pâ<â0.0001) signals in healthy volunteers. APT signals of BAT were negatively correlated with the BMI in humans (râ=â0.71). DATA CONCLUSION: Endogenous Z-spectral MRI was demonstrated to simultaneously quantify BAT mass and function based on its FWF and APT contrasts. TECHNICAL EFFICACY STAGE: 1.
Z-Spectral MRI Quantifies the Mass and Metabolic Activity of Adipose Tissues With Fat-Water-Fraction and Amide-Proton-Transfer Contrasts.
Z 光谱 MRI 利用脂肪-水分数和酰胺-质子转移对比来量化脂肪组织的质量和代谢活性
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作者:Cai Zimeng, Zhong Qiaoling, Zhang Daming, Feng Yanqiu, Wang Qian, Yang Yuanbo, Xu Yongzhou, Liang Changhong, Liu Zaiyi, Cai Kejia
| 期刊: | Journal of Magnetic Resonance Imaging | 影响因子: | 3.500 |
| 时间: | 2025 | 起止号: | 2025 Apr;61(4):1905-1913 |
| doi: | 10.1002/jmri.29598 | 研究方向: | 代谢 |
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