Department of Physical Medicine and Rehabilitation, College of Medicine, Yeungnam University, Namku, Taegu, South Korea.
Med Sci Monit. 2022 Feb 8;28:e936131. doi: 10.12659/MSM.936131.
BACKGROUND Little is known about the structural neural connectivity between the primary auditory cortex and cognition-related brain areas in the human brain. This study aimed to evaluate the structural neural connectivity between the primary auditory cortex and cognition-related brain areas in normal subjects, using diffusion tensor tractography (DTT). MATERIAL AND METHODS Forty-three healthy subjects with no prior history of audiological, neurological, physical, or psychiatric illnesses were recruited for this study. Diffusion tensor imaging data analysis was performed using the Oxford Centre for Functional Magnetic Resonance Imaging of Brain (FMRIB) Software Library. In each subject, a region of interest was set on the primary auditory cortex, including the subcortical white matter. We assessed the neural connectivity between the primary auditory cortex and cognition-related brain areas (the dorsolateral prefrontal cortex [DLPFC]; ventrolateral prefrontal cortex [VLPFC]; orbitofrontal cortex [OFC]; hippocampus; parahippocampal cortex; amygdala, anterior and posterior cingulate gyrus; and fornix). RESULTS According to the results of DTT, the primary auditory cortex showed neural connectivity (over 50%) with the following areas: the threshold of 1 streamline - the VLPFC (94.2%), OFC (84.9%), fornix (80.2%), hippocampus (76.7%), parahippocampal cortex(74.4%) and DLPFC (58.1%); the threshold of 5 streamlines - the VLPFC (88.4%), OFC (81.4%), fornix (66.3%), hippocampus (55.8%), and parahippocampal cortex (53.5%); and the threshold of 15 streamlines - the VLPFC (82.6%), OFC (74.4%), and fornix (53.5%). CONCLUSIONS In normal human subjects, DTT showed that the primary auditory cortex had a high degree of neural connectivity with the prefrontal cortex, fornix, hippocampus, and parahippocampal cortex, which are brain areas associated with cognition and memory.
人类大脑初级听觉皮层与认知相关脑区之间的结构神经连接知之甚少。本研究旨在使用弥散张量纤维束成像(DTI)评估正常受试者初级听觉皮层与认知相关脑区之间的结构神经连接。
本研究共纳入 43 名无听力、神经、躯体或精神病史的健康受试者。使用牛津功能磁共振成像脑功能连接中心(FMRIB)软件库对弥散张量成像数据进行分析。在每个受试者中,在初级听觉皮层上设置一个感兴趣区,包括皮质下白质。我们评估了初级听觉皮层与认知相关脑区(背外侧前额叶皮层[DLPFC];腹外侧前额叶皮层[VLPFC];眶额皮层[OFC];海马体;海马旁回;杏仁核,前后扣带回;穹窿)之间的神经连接。
根据 DTI 的结果,初级听觉皮层与以下区域存在神经连接(超过 50%):1 条轨迹的阈值-VLPFC(94.2%)、OFC(84.9%)、穹窿(80.2%)、海马体(76.7%)、海马旁回(74.4%)和 DLPFC(58.1%);5 条轨迹的阈值-VLPFC(88.4%)、OFC(81.4%)、穹窿(66.3%)、海马体(55.8%)和海马旁回(53.5%);15 条轨迹的阈值-VLPFC(82.6%)、OFC(74.4%)和穹窿(53.5%)。
在正常人类受试者中,DTI 显示初级听觉皮层与前额叶皮层、穹窿、海马体和海马旁回等与认知和记忆相关的脑区具有高度的神经连接。