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观看面部时梭状回神经活动的成熟轨迹:从4个月到4岁。

Maturational trajectory of fusiform gyrus neural activity when viewing faces: From 4 months to 4 years old.

作者信息

Chen Yuhan, Allison Olivia, Green Heather L, Kuschner Emily S, Liu Song, Kim Mina, Slinger Michelle, Mol Kylie, Chiang Taylor, Bloy Luke, Roberts Timothy P L, Edgar J Christopher

机构信息

Lurie Family Foundations MEG Imaging Center, Children's Hospital of Philadelphia, Philadelphia, PA, United States.

Department of Psychiatry, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, United States.

出版信息

Front Hum Neurosci. 2022 Aug 12;16:917851. doi: 10.3389/fnhum.2022.917851. eCollection 2022.

Abstract

Infant and young child electrophysiology studies have provided information regarding the maturation of face-encoding neural processes. A limitation of previous research is that very few studies have examined face-encoding processes in children 12-48 months of age, a developmental period characterized by rapid changes in the ability to encode facial information. The present study sought to fill this gap in the literature a longitudinal study examining the maturation of a primary node in the face-encoding network-the left and right fusiform gyrus (FFG). Whole-brain magnetoencephalography (MEG) data were obtained from 25 infants with typical development at 4-12 months, and with follow-up MEG exams every ∼12 months until 3-4 years old. Children were presented with color images of Face stimuli and visual noise images (matched on spatial frequency, color distribution, and outer contour) that served as Non-Face stimuli. Using distributed source modeling, left and right face-sensitive FFG evoked waveforms were obtained from each child at each visit, with face-sensitive activity identified examining the difference between the Non-Face and Face FFG timecourses. Before 24 months of age (Visits 1 and 2) the face-sensitive FFG M290 response was the dominant response, observed in the left and right FFG ∼250-450 ms post-stimulus. By 3-4 years old (Visit 4), the left and right face-sensitive FFG response occurred at a latency consistent with a face-sensitive M170 response ∼100-250 ms post-stimulus. Face-sensitive left and right FFG peak latencies decreased as a function of age (with age explaining greater than 70% of the variance in face-sensitive FFG latency), and with an adult-like FFG latency observed at 3-4 years old. Study findings thus showed face-sensitive FFG maturational changes across the first 4 years of life. Whereas a face-sensitive M290 response was observed under 2 years of age, by 3-4 years old, an adult-like face-sensitive M170 response was observed bilaterally. Future studies evaluating the maturation of face-sensitive FFG activity in infants at risk for neurodevelopmental disorders are of interest, with the present findings suggesting age-specific face-sensitive neural markers of interest.

摘要

婴幼儿电生理研究提供了有关面部编码神经过程成熟度的信息。以往研究的一个局限性在于,很少有研究考察12至48个月大儿童的面部编码过程,而这一发育阶段的特点是面部信息编码能力迅速变化。本研究旨在填补文献中的这一空白——一项纵向研究,考察面部编码网络中一个主要节点——左右梭状回(FFG)的成熟情况。对25名发育正常的婴儿在4至12个月时获取全脑磁脑电图(MEG)数据,并每隔约12个月进行一次MEG随访检查,直至3至4岁。向儿童呈现面部刺激的彩色图像和视觉噪声图像(在空间频率、颜色分布和外部轮廓上匹配)作为非面部刺激。使用分布式源模型,每次访视时从每个儿童获取左右面部敏感FFG诱发波形,通过检查非面部和面部FFG时间过程之间的差异来识别面部敏感活动。在24个月之前(第1次和第2次访视),面部敏感FFG的M290反应是主要反应,在刺激后约250至450毫秒在左右FFG中观察到。到3至4岁(第4次访视)时,左右面部敏感FFG反应的潜伏期与刺激后约100至250毫秒的面部敏感M170反应一致。面部敏感的左右FFG峰值潜伏期随年龄增长而缩短(年龄解释了面部敏感FFG潜伏期方差的70%以上),在3至4岁时观察到类似成人的FFG潜伏期。因此,研究结果显示了生命最初4年中面部敏感FFG的成熟变化。在2岁以下观察到面部敏感的M290反应,到3至4岁时,双侧观察到类似成人的面部敏感M170反应。评估有神经发育障碍风险的婴儿面部敏感FFG活动成熟度的未来研究很有意义,本研究结果提示了特定年龄的面部敏感神经标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1d2/9411513/5c89a03e2eaa/fnhum-16-917851-g001.jpg

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