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首页> 外文期刊>Investigative radiology >Validation of interventional fiber optic spectroscopy with MR Spectroscopy, MAS-NMR spectroscopy, high-performance thin-layer chromatography, and histopathology for accurate hepatic fat quantification
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Validation of interventional fiber optic spectroscopy with MR Spectroscopy, MAS-NMR spectroscopy, high-performance thin-layer chromatography, and histopathology for accurate hepatic fat quantification

机译:用MR光谱,MAS-NMR光谱,高效薄层色谱和组织病理学对介入性光纤光谱进行验证,以进行准确的肝脂肪定量

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Objectives: To validate near-infrared (NIR)-based optical spectroscopy measurements of hepatic fat content using a minimally invasive needle-like probe with integrated optical fibers, enabling real-time feedback during percutaneous interventions. The results were compared with magnetic resonance spectroscopy (MRS) as validation and with histopathology, being the clinical gold standard. Additionally, ex vivo magic angle spinning nuclear magnetic resonance spectroscopy and high-performance thin-layer chromatography were performed for comparison. Materials and Methods: Ten mice were used for the study, of which half received a regular chow diet and the other half received a high-fat diet to induce obesity and hepatosteatosis. The mice were imaged with a clinical 3-Tesla MR to select a region of interest within the right and left lobes of the liver, where MRS measurements were acquired in vivo. Subsequently, optical spectra were measured ex vivo at the surface of the liver at 6 different positions immediately after resection. Additionally, hepatic fat was determined by magic angle spinning nuclear magnetic resonance spectroscopy and high-performance thin-layer chromatography. Histopathologic analyses were performed and used as the reference standard. Pearson correlation and linear regression analyses were performed to assess the correlation of the various techniques with NIR. A 1-way analysis of variance including post hoc Tukey multiple comparison tests was used to study the difference in fat estimation between the various techniques. Results: For both the mice groups, the estimated fat fractions by the various techniques were significantly similar (P = 0.072 and 0.627 for chow diet and high-fat diet group, respectively). The Pearson correlation value between NIR and the other techniques for fat determination showed the same strong linear correlation (P above 0.990; P < 0.001), whereas for histopathologic analyses, which is a rather qualitative measure, the Pearson correlation value was slightly lower (P = 0.925, P < 0.001) . Linear regression coefficient computed to compare NIR with the other techniques resulted in values close to unity with MRS having the narrowest confidence interval (r = 0.935, 95% confidence interval: 0.860-1.009), demonstrating highly correlating results between NIR and MRS. Conclusions: NIR spectroscopy measurements from a needle-like probe with integrated optical fibers for sensing at the tip of the needle can quickly and accurately determine hepatic fat content during an interventional procedure and might therefore be a promising novel diagnosing tool in the clinic.
机译:目标:使用带有集成光纤的微创针状探针,验证基于近红外(NIR)的肝脂肪含量的光谱学测量,从而在经皮干预期间实现实时反馈。将结果与磁共振波谱(MRS)进行比较,并与组织病理学(临床金标准)进行比较。另外,进行了离体魔角旋转核磁共振波谱和高性能薄层色谱法进行比较。材料和方法:十只小鼠用于研究,其中一半接受常规饮食,另一半接受高脂饮食以诱发肥胖和肝脂肪变性。用临床3-Tesla MR对小鼠进行成像,以选择肝脏左右叶内的目标区域,在该区域内可在体内获取MRS测量值。随后,在切除后立即在六个不同位置在肝脏表面离体测量光谱。另外,通过魔术角旋转核磁共振波谱法和高性能薄层色谱法测定肝脂肪。进行组织病理学分析并用作参考标准。进行了Pearson相关性和线性回归分析,以评估各种技术与NIR的相关性。使用方差单向分析(包括事后Tukey多重比较测试)来研究各种技术之间的脂肪估计差异。结果:对于这两个小鼠组,通过各种技术估算的脂肪含量均显着相似(松鼠饮食组和高脂饮食组分别为P = 0.072和0.627)。 NIR与其他脂肪测定技术之间的Pearson相关值显示出相同的强线性相关性(P高于0.990; P <0.001),而对于组织病理学分析(这是一种定性指标),Pearson相关值略低(P = 0.925,P <0.001)。计算线性回归系数以将NIR与其他技术进行比较,得出的值接近于MRS,其置信区间最窄(r = 0.935,95%置信区间:0.860-1.009),证明了NIR与MRS之间的相关性很高。结论:从带有集成光纤的针状探针进行近红外光谱测量可在针尖进行传感,可以在介入过程中快速,准确地确定肝脂肪含量,因此可能是临床上有希望的新型诊断工具。

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