Mirrashed Fakhereh, Sharp Jonathan C
Institute for Biodiagnostics, National Research Council Canada, Winnipeg, Canada.
Skin Res Technol. 2004 Aug;10(3):149-60. doi: 10.1111/j.1600-0846.2004.00071.x.
BACKGROUND/PURPOSE: Quantitative assessments in skin layers using images obtained with standard magnetic resonance imaging (MRI) sequences are limited, since the stratum corneum and dermis, the layers of most clinical interest, have low signal due to their short spin-spin relaxation, T2.
In the present work, different methods of MRI contrast, such as magnetisation transfer contrast (MTC), T1-weighting (where T1 is spin-lattice relaxation time), T2*-weighting (where T2* is the combination of T2 and magnetic field in-homogeneity effect) and chemical shift, were used. These techniques were combined with high-resolution MRI.
We found that skin is a very MT active tissue, and MTC provides data enabling the evaluation of how the tissue in skin layers interacts with the interstitial fluids. Details obtained from high-resolution high-quality in vivo skin images with different contrast allowed for differentiation of skin layers, sub-layers and excellent correlation of MR data with known histological features and water constituent of skin layers.
Combining MT and other MRI data employing other contrast mechanisms provides a superior non-invasive in vivo technique for visualisation and also quantitative assessment of the constituents of the stratum corneum, epidermis, papillary dermis, reticular dermis and hypodermis as major structural layers of the skin. This type of study can be extended to cutaneous disease states or skin ageing, where defects in water mobility, concentration and/or macromolecular structural changes are expected.
背景/目的:使用标准磁共振成像(MRI)序列获取的图像对皮肤各层进行定量评估存在局限性,因为最具临床意义的角质层和真皮层由于其短的自旋-自旋弛豫时间T2而信号较低。
在本研究中,使用了不同的MRI对比方法,如磁化传递对比(MTC)、T1加权(其中T1是自旋-晶格弛豫时间)、T2加权(其中T2是T2与磁场不均匀性效应的组合)和化学位移。这些技术与高分辨率MRI相结合。
我们发现皮肤是一种MT活性很强的组织,MTC提供的数据能够评估皮肤层中的组织与细胞间液的相互作用方式。从具有不同对比度的高分辨率高质量体内皮肤图像中获得的细节能够区分皮肤层、亚层,并且MR数据与已知的组织学特征以及皮肤层的水分成分具有良好的相关性。
将MT与采用其他对比机制的其他MRI数据相结合,为可视化以及定量评估角质层、表皮、乳头层真皮网、状真皮和皮下组织等皮肤主要结构层的成分提供了一种卓越的非侵入性体内技术。这类研究可以扩展到皮肤疾病状态或皮肤老化领域,在这些情况下预计会出现水流动性、浓度和/或大分子结构变化方面的缺陷。