首页> 外文期刊>Molecular imaging and biology: MIB : the official publication of the Academy of Molecular Imaging >Magnetic resonance imaging based bone marrow segmentation for quantitative calculation of pure red marrow metabolism using 2-deoxy-2-(F-18)fluoro-D-glucose-positron emission tomography: a novel application with significant implications for combined s
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Magnetic resonance imaging based bone marrow segmentation for quantitative calculation of pure red marrow metabolism using 2-deoxy-2-(F-18)fluoro-D-glucose-positron emission tomography: a novel application with significant implications for combined s

机译:基于磁共振成像的骨髓分割,使用2-脱氧-2-(F-18)氟-D-葡萄糖-正电子发射断层显像技术定量计算纯红细胞的新陈代谢:对联合应用具有重大意义的新型应用

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AIMS: The aim of this study was to introduce a new concept for accurate measurement of the global metabolic activity of the red marrow by combining segmented volumetric data from structural imaging techniques such as magnetic resonance imaging (MRI) and quantitative metabolic information provided by functional modalities such as positron emission tomography (PET). MATERIALS AND METHODS: Imaging studies from five subjects who had undergone both MRI and 2-deoxy-2-[F-18]fluoro-D-glucose(FDG)-PET were selected for this analysis to test the feasibility of this approach. In none of the subjects, there were any marrow abnormalities as determined either by the MRI or by FDG-PET studies. The mean blood glucose level was 96+/-25 mg/dl. The first step was to calculate vertebral volume at L1, L3, and L5 from the available MRI studies. The red and yellow marrows were then segmented within the lumbar vertebrae using the 3DVIEWNIX software system from which the respective volumes were also calculated for each. This also allowed calculating the bone volume in each of the vertebral bodies examined. By employing the standard techniques, the mean of the maximum standardized uptake values (mean SUVmax) for the bone marrow were calculated in L1, L3 and L5 of the lumbar spine, and then global red marrow activity was calculated using the following approach: (1) Whole vertebral metabolic activity (WVMA)=vertebral volume x mean SUVmax of the entire marrow, (2) whole vertebral metabolic activity for yellow marrow (WVMAYM)=yellow marrow volume x mean SUVmax of fat (obtained from measurements of subcutaneous fat), (3) whole vertebral metabolic activity for red marrow (WVMARM)=WVMA-WVMAYM; and finally, (4) SUVmax for pure red marrow=whole vertebral metabolic activity for red marrow (WVMARM)/red marrow volume (obtained from the segmentation data). RESULTS: The mean volume of the lumbar vertebral body was 15.6+/-1.4 cm3, the bone marrow mean SUVmax was 1.5+/-0.3, and the MVP for the lumbar vertebral body was 23.4+/-5.9. The mean volumeof the yellow marrow in the lumbar vertebral body was 7.7+/-1.1 cm3, the yellow marrow mean SUVmax was estimated to be 0.38+/-0.1 and the MVP for the yellow marrow in the lumbar vertebral body was 2.9+/-0.9. The mean volume of the red marrow in lumbar vertebral body was 7.9+/-1.1 cm3, the red marrow mean SUVmax was estimated to be 2.6+/-0.6, and the MVP for the red marrow in the lumbar vertebral body was 20.5+/-5.9. CONCLUSION: Estimation of the individual component of the bone marrow is plausible using medical image segmentation with combined structure-function approach. This can have potential research and clinical applications concerning the study of global metabolic activity of the individual component and diagnosis of benign and malignant bone marrow disorders.
机译:目的:本研究的目的是通过结合结构成像技术(例如磁共振成像(MRI))的分段体积数据和功能性方式提供的定量代谢信息,引入一种新概念,用于准确测量红骨髓的全球代谢活性例如正电子发射断层扫描(PET)。材料与方法:选择来自五个同时接受了MRI和2-脱氧-2- [F-18]氟-D-葡萄糖(FDG)-PET的受试者的影像学研究,以测试该方法的可行性。在所有受试者中,均未通过MRI或FDG-PET研究确定有任何骨髓异常。平均血糖水平为96 +/- 25 mg / dl。第一步是从可用的MRI研究中计算L1,L3和L5的椎骨体积。然后使用3DVIEWNIX软件系统在腰椎内分割红色和黄色的骨髓,并从中分别计算出相应的体积。这也允许计算每个检查的椎体中的骨量。通过采用标准技术,在腰椎的L1,L3和L5中计算出骨髓的最大标准化摄取值的平均值(平均SUVmax),然后使用以下方法计算总体红骨髓活动:(1 )整个椎骨代谢活性(WVMA)=椎骨体积x整个骨髓的平均SUVmax,(2)黄骨髓的整个椎骨代谢活性(WVMAYM)=黄色的骨髓体积x脂肪的平均SUVmax(通过皮下脂肪测量获得), (3)整个椎体的红骨髓代谢活动(WVMARM)= WVMA-WVMAYM;最后,(4)纯红骨髓的SUVmax =红骨髓的整个椎体代谢活性(WVMARM)/红骨髓的体积(从分割数据中获得)。结果:腰椎椎体的平均体积为15.6 +/- 1.4 cm3,骨髓平均SUVmax为1.5 +/- 0.3,腰椎椎体的MVP为23.4 +/- 5.9。腰椎体中黄骨髓的平均体积为7.7 +/- 1.1 cm3,腰椎SUVmax的平均估计值为0.38 +/- 0.1,腰椎体中黄骨髓的MVP为2.9 +/- 0.9。腰椎体中红骨髓的平均体积为7.9 +/- 1.1 cm3,红骨髓平均SUVmax估计为2.6 +/- 0.6,腰椎体中红骨髓的MVP为20.5 + / -5.9。结论:采用结合结构-功能方法的医学图像分割来估计骨髓的单个成分是合理的。这可能具有潜在的研究和临床应用,涉及单个成分的整体代谢活性的研究以及良性和恶性骨髓疾病的诊断。

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