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探讨与松果体相连的白质束:一项 DTI 研究。

Exploration of the white matter bundles connected to the pineal gland: A DTI study.

机构信息

Department of Neuroscience and Addiction Studies, School of Advanced Technologies in Medicine, Tehran University of Medical Sciences, No.88, Italia Street, Keshavarz Boulevard, Tehran, Iran.

Department of Anatomy, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran.

出版信息

Surg Radiol Anat. 2024 Oct;46(10):1571-1584. doi: 10.1007/s00276-024-03445-3. Epub 2024 Aug 5.

Abstract

PURPOSE

Pineal gland (PG) is a structure located in the midline of the brain, and is considered as a main part of the epithalamus. There are reports on the role of this area for brain function by hormone secretion, as well as few reports on its role in brain cognition. However, little knowledge is available on the PG, and in particular on the structural connectivity of this region with the other brain structures.

METHODS

Using diffusion-weighted images collected by a 3T MRI scanner, and using a sample of 61 (29 F) mentally and physically healthy young individuals in the age range of 20-30 years old, we tried to extract the white matter bundles connected to the PG. Based on prior knowledge, seven target bundles were suggested to be between the PG body and the PG roots, Pons, Periventricular region, thalamus, caudate, lentiform, suprachiasmatic nuclei, and the supercervical ganglia.

RESULTS

Nearly all the target bundles were successfully extracted, with the exception of the lentiform. Rate of identification of the tracts was different, with the bundle between the PG body and roots having the highest identification rate (97%); then it was with the Pons (70%), Periventricular region (57%), SCN (55%), left thalamus (52%), right thalamus (47%), left caudate (27%) and right caudate (22%).

CONCLUSION

This study is an attempt to expand our knowledge on the neuroanatomy of the PG, which might help for identifying further roles for it in brain functionality, and also be a help for the treatment of some disorders in the future.

摘要

目的

松果体(PG)位于大脑中线,被认为是上丘脑的主要部分。有关于该区域通过激素分泌对大脑功能的作用的报道,以及关于其在大脑认知中的作用的少量报道。然而,对于 PG 知之甚少,特别是对于该区域与其他大脑结构的结构连接知之甚少。

方法

使用 3T MRI 扫描仪收集的弥散加权图像,并使用年龄在 20-30 岁之间的 61 名(29 名女性)身心健康的年轻个体的样本,我们试图提取与 PG 相连的白质束。基于先前的知识,建议在 PG 体和 PG 根部、脑桥、脑室周围区域、丘脑、尾状核、豆状核、视交叉上核和颈上交感神经节之间存在七个目标束。

结果

除了豆状核外,几乎所有的目标束都成功提取出来。各束的识别率不同,PG 体和根部之间的束具有最高的识别率(97%);其次是脑桥(70%)、脑室周围区域(57%)、SCN(55%)、左侧丘脑(52%)、右侧丘脑(47%)、左侧尾状核(27%)和右侧尾状核(22%)。

结论

本研究试图扩展我们对 PG 神经解剖学的认识,这可能有助于进一步确定其在大脑功能中的作用,也有助于未来治疗某些疾病。

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