Dong Minghao, Zhang Peiming, Chai Weilu, Zhang Xiaoyan, Chen Bihong T, Wang Hongmei, Wu Jia, Chen Chao, Niu Yi, Liang Jimin, Shi Guangming, Jin Chenwang
Engineering Research Center of Molecular and Neuro Imaging of Ministry of Education, School of Life Science and Technology, Xidian University, Xi'an City, Shaanxi 710071, China.
Xian Key Laboratory of Intelligent Sensing and Regulation of tran-Scale Life Information, Xi'an City, Shaanxi 710071, China.
Psychoradiology. 2022 Dec 9;2(4):199-206. doi: 10.1093/psyrad/kkac024. eCollection 2022 Dec.
The visual system and its inherent functions undergo experience-dependent changes through the lifespan, enabling acquisition of new skills. Previous fMRI studies using tasks reported increased specialization in a number of cortical regions subserving visual expertise. Although ample studies focused on representation of long-term visual expertise in the brain, i.e. in terms of year, monthly-based early-stage representation of visual expertise remains unstudied. Given that spontaneous neuronal oscillations actively encode previous experience, we propose brain representations in the resting state is fundamentally important.
The current study aimed to investigate how monthly-based early-stage visual expertise are represented in the resting state using the expertise model of radiologists.
In particular, we investigated the altered local clustering pattern of spontaneous brain activity using regional homogeneity (ReHo). A cohort group of radiology interns (n = 22) after one-month training in X-ray department and matched laypersons (n = 22) were recruited after rigorous behavioral assessment.
The results showed higher ReHo in the right hippocampus (HIP) and the right ventral anterior temporal lobe (vATL) (corrected by Alphasim correction, ). Moreover, ReHo in the right HIP correlated with the number of cases reviewed during intern radiologists' training (corrected by Alphasim correction, ).
In sum, our results demonstrated that the early stage of visual expertise is more concerned with stabilizing visual feature and domain-specific knowledge into long-term memory. The results provided novel evidence regarding how early-stage visual expertise is represented in the resting brain, which help further elaborate how human visual expertise is acquired. We propose that our current study may provide novel ideas for developing new training protocols in medical schools.
视觉系统及其固有功能在整个生命周期中会经历依赖经验的变化,从而能够获得新技能。先前使用任务的功能磁共振成像研究报告称,在许多支持视觉专业知识的皮质区域中,专业化程度有所提高。尽管有大量研究关注大脑中长期视觉专业知识的表征,即按年计算,但基于月度的视觉专业知识早期阶段表征仍未得到研究。鉴于自发神经元振荡会积极编码先前的经验,我们提出静息状态下的大脑表征至关重要。
本研究旨在使用放射科医生的专业知识模型,研究基于月度的早期视觉专业知识在静息状态下是如何表征的。
具体而言,我们使用局部一致性(ReHo)研究了自发脑活动的局部聚类模式变化。经过严格的行为评估后,招募了一组在放射科实习一个月后的放射科实习生(n = 22)和匹配的外行人员(n = 22)。
结果显示右侧海马体(HIP)和右侧腹侧前颞叶(vATL)的ReHo较高(经Alphasim校正)。此外,右侧HIP的ReHo与实习放射科医生培训期间审查的病例数相关(经Alphasim校正)。
总之,我们的结果表明,视觉专业知识的早期阶段更关注将视觉特征和特定领域知识稳定到长期记忆中。这些结果为早期视觉专业知识在静息大脑中的表征提供了新证据,有助于进一步阐述人类视觉专业知识是如何获得的。我们提出,我们目前的研究可能为医学院开发新的培训方案提供新思路。