da S Senra Filho Antonio Carlos, Murta Junior Luiz Otávio, Monteiro Paschoal André
Department of Cosmic Rays and Chronology, University of Campinas, São Paulo, Brazil.
Department of Computing and Mathematics, University of Sao Paulo, São Paulo, Brazil.
MAGMA. 2024 Jul 28. doi: 10.1007/s10334-024-01185-4.
Diffusion-weighted imaging (DWI) and diffusion tensor imaging (DTI) are well-known and powerful imaging techniques for MRI. Although DTI evaluation has evolved continually in recent years, there are still struggles regarding quantitative measurements that can benefit brain areas that are consistently difficult to measure via diffusion-based methods, e.g., gray matter (GM). The present study proposes a new image processing technique based on diffusion distribution evaluation of López-Ruiz, Mancini and Calbet (LMC) complexity called diffusion complexity (DC).
The OASIS-3 and TractoInferno open-science databases for healthy individuals were used, and all the codes are provided as open-source materials.
The DC map showed relevant signal characterization in brain tissues and structures, achieving contrast-to-noise ratio (CNR) gains of approximately 39% and 93%, respectively, compared to those of the FA and ADC maps.
In the special case of GM tissue, the DC map obtains its maximum signal level, showing the possibility of studying cortical and subcortical structures challenging for classical DTI quantitative formalism. The ability to apply the DC technique, which requires the same imaging acquisition for DTI and its potential to provide complementary information to study the brain's GM structures, can be a rich source of information for further neuroscience research and clinical practice.
扩散加权成像(DWI)和扩散张量成像(DTI)是磁共振成像(MRI)中著名且强大的成像技术。尽管近年来DTI评估不断发展,但在定量测量方面仍存在困难,对于那些一直难以通过基于扩散的方法测量的脑区,如灰质(GM),仍缺乏有效的测量手段。本研究提出了一种基于洛佩斯 - 鲁伊斯、曼奇尼和卡尔韦特(LMC)复杂性的扩散分布评估的新图像处理技术,称为扩散复杂性(DC)。
使用了针对健康个体的OASIS - 3和TractoInferno开放科学数据库,所有代码均作为开源材料提供。
与FA图和ADC图相比,DC图在脑组织和结构中显示出相关的信号特征,对比度噪声比(CNR)分别提高了约39%和93%。
在GM组织的特殊情况下,DC图获得了其最大信号水平,这表明有可能研究对经典DTI定量形式主义具有挑战性的皮质和皮质下结构。应用DC技术的能力,该技术与DTI需要相同的成像采集,并且有潜力提供补充信息以研究大脑的GM结构,可为进一步的神经科学研究和临床实践提供丰富的信息来源。