{"title":"感官处理障碍儿童的大脑弥散张量成像:综述。","authors":"Woo-Hyuk Jang, Seon-Hee Lee","doi":"10.1111/jon.13186","DOIUrl":null,"url":null,"abstract":"<p>Sensory processing disorder (SPD) is a clinical condition characterized by difficulties in the neurological processes of registering, discriminating, organizing, and responding to various sensory sensations. This study aimed to review the association between impaired white matter (WM) tract structure and neurofunctional deficits in children with SPD using diffusion tensor imaging (DTI). A comprehensive literature search was conducted using the online databases Google Scholar and PubMed (from 2010 to July 2023), resulting in the selection of nine relevant studies. Findings revealed that the splenium of the corpus callosum (SCC), superior longitudinal fasciculus (SLF), posterior corona radiata (PCR), and posterior thalamic radiation (PTR) exhibited reduced microstructural integrity, strongly associated with SPD. Specifically, auditory over-responsivity, a subtype of SPD, was linked to impaired integrity of the PCR, PTR, anterior corona radiata, and SLF. Tactile over-responsivity (TOR) was correlated with markers of decreased integrity in the SCC, superior corona radiata, and left PTR. Among the DTI parameters, decreased fractional anisotropy (FA) emerged as the most reliable factor for identifying SPD, followed by increased radial diffusivity (RD) and mean diffusivity (MD). Notably, significant correlations were observed between with auditory over-responsivity and TOR with the DTI parameters (positive for FA and negative for RD and MD). Overall, this review confirms the impaired integrity of specific WM tracts in children with SPD and establishes correlations between DTI parameters and neurobehavioral deficits associated with the disorder. 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引用次数: 0
摘要
感觉处理障碍(SPD)是一种临床症状,其特征是对各种感觉的记录、辨别、组织和反应的神经过程存在困难。本研究旨在利用弥散张量成像(DTI)技术,探讨白质(WM)束结构受损与SPD患儿神经功能缺陷之间的关联。研究人员利用在线数据库谷歌学术(Google Scholar)和PubMed(2010年至2023年7月)进行了全面的文献检索,最终筛选出9项相关研究。研究结果显示,胼胝体脾(SCC)、上纵筋束(SLF)、放射状后冠(PCR)和丘脑后辐射(PTR)的微结构完整性降低,与SPD密切相关。具体来说,听觉过度反应(SPD的一种亚型)与PCR、PTR、放射状前冠和SLF的完整性受损有关。触觉过度反应(TOR)与SCC、放射状上冠状动脉和左侧PTR完整性下降的标志物相关。在 DTI 参数中,分数各向异性(FA)的降低是确定 SPD 的最可靠因素,其次是径向扩散率(RD)和平均扩散率(MD)的增加。值得注意的是,听觉过度反应和 TOR 与 DTI 参数之间存在明显的相关性(FA 为正,RD 和 MD 为负)。总之,本综述证实了 SPD 患儿特定 WM 束的完整性受损,并确定了 DTI 参数与该疾病相关的神经行为缺陷之间的相关性。从本综述中获得的见解有助于更好地理解 SPD,并对其诊断和治疗具有临床意义。
Diffusion tensor imaging of the brain in children with sensory processing disorder: A review
Sensory processing disorder (SPD) is a clinical condition characterized by difficulties in the neurological processes of registering, discriminating, organizing, and responding to various sensory sensations. This study aimed to review the association between impaired white matter (WM) tract structure and neurofunctional deficits in children with SPD using diffusion tensor imaging (DTI). A comprehensive literature search was conducted using the online databases Google Scholar and PubMed (from 2010 to July 2023), resulting in the selection of nine relevant studies. Findings revealed that the splenium of the corpus callosum (SCC), superior longitudinal fasciculus (SLF), posterior corona radiata (PCR), and posterior thalamic radiation (PTR) exhibited reduced microstructural integrity, strongly associated with SPD. Specifically, auditory over-responsivity, a subtype of SPD, was linked to impaired integrity of the PCR, PTR, anterior corona radiata, and SLF. Tactile over-responsivity (TOR) was correlated with markers of decreased integrity in the SCC, superior corona radiata, and left PTR. Among the DTI parameters, decreased fractional anisotropy (FA) emerged as the most reliable factor for identifying SPD, followed by increased radial diffusivity (RD) and mean diffusivity (MD). Notably, significant correlations were observed between with auditory over-responsivity and TOR with the DTI parameters (positive for FA and negative for RD and MD). Overall, this review confirms the impaired integrity of specific WM tracts in children with SPD and establishes correlations between DTI parameters and neurobehavioral deficits associated with the disorder. The insights gained from this review contribute to a better understanding of SPD and hold clinical implications for its diagnosis and treatment.
期刊介绍:
Start reading the Journal of Neuroimaging to learn the latest neurological imaging techniques. The peer-reviewed research is written in a practical clinical context, giving you the information you need on:
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and other new and upcoming neuroscientific modalities.The Journal of Neuroimaging addresses the full spectrum of human nervous system disease, including stroke, neoplasia, degenerating and demyelinating disease, epilepsy, tumors, lesions, infectious disease, cerebral vascular arterial diseases, toxic-metabolic disease, psychoses, dementias, heredo-familial disease, and trauma.Offering original research, review articles, case reports, neuroimaging CPCs, and evaluations of instruments and technology relevant to the nervous system, the Journal of Neuroimaging focuses on useful clinical developments and applications, tested techniques and interpretations, patient care, diagnostics, and therapeutics. Start reading today!