Department of Urology, Xi'An DaXing Hospital of Shaanxi University of Chinese Medicine, Xi'an, China; Department of Andrology, XiYuan Hospital, China Academy of Chinese Medical Sciences, Beijing, China.
Life Science Research Center, School of Life Science and Technology, Xidian University, Xi'an, Shaanxi, China; Engineering Research Center of Molecular and Neuro Imaging Ministry of Education, School of Life Science and Technology, Xidian University, Xi'an, Shaanxi, China.
Urology. 2022 Jan;159:133-138. doi: 10.1016/j.urology.2021.10.010. Epub 2021 Oct 22.
To detect seed-based functional connectivity (FC) between various cortical sub-regions and the thalamus in lifelong premature ejaculation (LPE) patients and explore whether specific thalamocortical networks are significantly altered in PE patients compared to healthy controls (HCs) METHODS: Fifty non-medicated LPE patients and 40 age-matched HCs underwent a resting-state functional MRI. FC was adopted to identify specific thalamocortical connectivity between the thalamus and 6 cortical regions of interest (i.e., the motor cortex/supplementary motor, the prefrontal cortex, the temporal lobe, the posterior parietal cortex, the somatosensory cortex and the occipital lobe). In LPE patients, regression analysis was subsequently conducted to assess relationships of thalamocortical connectivity with the Premature Ejaculation Diagnostic Tool (PEDT) score and the Intravaginal Ejaculatory Latency Time (IELT).
LPE patients had significantly decreased FC between the motor cortex and bilateral ventral thalamus, between the prefrontal cortex and left dorsomedial thalamus, as well as between the temporal cortex and bilateral ventromedial thalamus. In LPE patients, PEDT score was significantly positively associated with the thalamus-posterior parietal cortex FC, and negatively associated with the thalamus-temporal cortex FC, while IELT was positively associated with the thalamus-temporal cortex and thalamus-motor cortex FC.
These results enrich the imaging evidence for the understanding of the neurobiological mechanisms and/or consequences of LPE.
在终身早泄(LPE)患者中检测不同皮质亚区与丘脑之间基于种子的功能连接(FC),并探讨与健康对照组(HCs)相比,PE 患者是否存在特定的丘脑皮质网络显著改变。
50 名未服用药物的 LPE 患者和 40 名年龄匹配的 HCs 接受了静息态功能磁共振成像。采用 FC 来识别丘脑与 6 个感兴趣的皮质区域(即运动皮质/辅助运动皮质、前额叶皮质、颞叶、顶叶后皮质、体感皮质和枕叶)之间的特定丘脑皮质连接。在 LPE 患者中,随后进行回归分析,以评估丘脑皮质连接与早泄诊断工具(PEDT)评分和阴道内射精潜伏期时间(IELT)之间的关系。
LPE 患者的运动皮质与双侧腹侧丘脑之间、前额叶皮质与左侧背内侧丘脑之间以及颞叶与双侧腹侧丘脑之间的 FC 显著降低。在 LPE 患者中,PEDT 评分与丘脑-顶叶后皮质 FC 呈显著正相关,与丘脑-颞叶 FC 呈显著负相关,而 IELT 与丘脑-颞叶和丘脑-运动皮质 FC 呈正相关。
这些结果丰富了对 LPE 神经生物学机制和/或后果的理解的影像学证据。