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创伤性脑损伤患者信息处理速度缓慢的神经基础:基于束路径的空间统计学的见解。

Neural underpinnings of the slowness of information processing in patients with traumatic brain injury: insights from tract-based spatial statistics.

机构信息

Department of Psychology, "Sapienza" University of Rome, Via dei Marsi, 78, 00185, Rome, Italy.

Cognitive and Motor Rehabilitation and Neuroimaging Unit, Santa Lucia Foundation (IRCCS Fondazione Santa Lucia), Rome, Italy.

出版信息

Neurol Sci. 2022 Aug;43(8):5083-5086. doi: 10.1007/s10072-022-06150-4. Epub 2022 May 18.

Abstract

Slowness of information processing (SIP) is frequently reported after traumatic brain injury (TBI). Previous studies point toward a pivotal role of white matter damage on speed of information processing. However, little is known about the more comprehensive and ecological assessment of SIP in TBI. Here, we combined an ecological assessment of SIP with the use of tract-based spatial statistics (TBSS) on individuals' fractional anisotropy (FA) maps. Twenty-six moderate-to-severe patients with TBI (21 males and 5 females) participated in this study: 10 individuals were classified as not having SIP (SIP-) and 16 were classified as having SIP (SIP +). SIP + showed lower FA in bilateral anterior thalamic radiation, corticospinal tract, cingulum, and forceps, as well as in bilateral inferior fronto-occipital, inferior and superior longitudinal fasciculi and uncinate fasciculus. Overall, this result is consistent with and expands previous reports on information processing speed to a more comprehensive and ecological perspective on SIP in TBI.

摘要

信息处理速度缓慢(SIP)在创伤性脑损伤(TBI)后经常被报道。先前的研究表明,白质损伤对信息处理速度起着关键作用。然而,对于 TBI 中 SIP 的更全面和生态评估知之甚少。在这里,我们将 SIP 的生态评估与基于体素的空间统计学(TBSS)在个体各向异性分数(FA)图上的使用相结合。26 名中度至重度 TBI 患者(21 名男性和 5 名女性)参与了这项研究:10 名患者被归类为没有 SIP(SIP-),16 名患者被归类为有 SIP(SIP+)。SIP+在双侧前丘脑辐射、皮质脊髓束、扣带束和内囊、双侧下额枕下束、下和上纵束以及钩束中表现出较低的 FA。总的来说,这一结果与之前关于信息处理速度的报告一致,并将 TBI 中 SIP 的更全面和生态评估扩展到了这一结果中。

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