Exploring the impact of biological alterations in the superior thalamic radiations on exploratory eye movements in attenuated psychosis syndrome

Yu Arai, Naoyuki Katagiri, H. Tagata, Takashi Uchino, Junichi Saito, Yusuke Shido, K. Kamiya, Masaaki Hori, M. Mizuno, T. Nemoto
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Abstract

Aberrant fixation and scan paths in visual searches have been repeatedly reported in schizophrenia. The frontal eye fields (FEF) and thalamus may be responsible for fixation and scan paths. These two regions are connected by superior thalamic radiation (STR) in humans. Studies have reported reduced fixation numbers and shortened scan path lengths in individuals with attenuated psychosis syndrome (APS) and schizophrenia. In this study, we hypothesized that STRs in the white matter fiber bundles of impairments underlie abnormalities in fixation and scan path length in individuals with APS.Twenty-one individuals with APS and 30 healthy controls participated in this study. All participants underwent diffusion tensor imaging, and fractional anisotropy (FA) values of the left and right STR were analyzed using the novel method TractSeg. The number of eye fixations (NEF), total eye scanning length (TESL), and mean eye scanning length (MESL), derived using the exploratory eye movement (EEM) test, were adopted to evaluate the fixation and scan path length. We compared the FA values of the bilateral STR and EEM parameters between the APS and healthy control groups. We investigated the correlation between bilateral STR and EEM parameters in the APS and healthy control groups.NEF, TESL, MESL, and the FA values of the left STR were significantly reduced in individuals with APS compared to healthy controls. The left STR FA value in the APS group was significantly positively correlated with the MESL (r = 0.567, p = 0.007). In addition, the right STR FA value of the APS group was significantly correlated with the TESL (r = 0.587, p = 0.005) and MESL (r = 0.756, p = 0.7×10-4).These results demonstrate that biological changes in the STR, which connects the thalamus and FEF, underlie abnormalities in fixation and scanning. Recently, aberrations in the thalamus–frontal connection have been shown to underlie the emergence of psychotic symptoms. STR impairment may be a part of the biological basis of APS in individuals with subthreshold psychotic symptoms.
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探讨丘脑上部放射线的生物改变对减弱型精神病综合征患者探索性眼球运动的影响
精神分裂症患者在进行视觉搜索时,会反复出现定点和扫描路径异常的现象。额叶眼区(FEF)和丘脑可能是造成定点和扫描路径的原因。在人类中,这两个区域通过丘脑上部辐射(STR)相连。有研究报告称,减弱性精神病综合征(APS)和精神分裂症患者的定点次数减少,扫描路径长度缩短。在本研究中,我们假设白质纤维束中的 STR 损伤是 APS 患者定点和扫描路径长度异常的原因。所有参与者都接受了弥散张量成像,并使用新方法 TractSeg 分析了左右 STR 的分数各向异性(FA)值。采用探索性眼动(EEM)测试得出的眼球固定次数(NEF)、眼球扫描总长度(TESL)和眼球扫描平均长度(MESL)来评估固定和扫描路径长度。我们比较了 APS 组和健康对照组的双侧 STR 和 EEM 参数的 FA 值。与健康对照组相比,APS患者的NEF、TESL、MESL和左侧STR的FA值显著降低。APS 组的左侧 STR FA 值与 MESL 呈显著正相关(r = 0.567,p = 0.007)。此外,APS 组的右侧 STR FA 值与 TESL(r = 0.587,p = 0.005)和 MESL(r = 0.756,p = 0.7×10-4)呈显著正相关。这些结果表明,连接丘脑和 FEF 的 STR 的生物学变化是固定和扫描异常的基础。最近,丘脑-额叶连接的异常被证明是精神病症状出现的基础。STR损伤可能是阈下精神病症状患者APS的部分生物学基础。
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