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唤醒对髓纹的神经精神学研究:这一关键边缘结构的弥散加权成像纤维束成像方案的开发

Awakening Neuropsychiatric Research Into the Stria Medullaris: Development of a Diffusion-Weighted Imaging Tractography Protocol of This Key Limbic Structure.

作者信息

Roddy Darren W, Roman Elena, Rooney Shane, Andrews Sinaoife, Farrell Chloe, Doolin Kelly, Levins Kirk J, Tozzi Leonardo, Tierney Paul, Barry Denis, Frodl Thomas, O'Keane Veronica, O'Hanlon Erik

机构信息

REDEEM Group, Department of Psychiatry, Trinity College Dublin, Dublin, Ireland.

Department of Anaesthesia, Intensive Care and Pain Medicine, St. Vincent's Hospital, Dublin, Ireland.

出版信息

Front Neuroanat. 2018 May 8;12:39. doi: 10.3389/fnana.2018.00039. eCollection 2018.

Abstract

The Stria medullaris (SM) Thalami is a discrete white matter tract that directly connects frontolimbic areas to the habenula, allowing the forebrain to influence midbrain monoaminergic output. Habenular dysfunction has been shown in various neuropsychiatric conditions. However, there exists a paucity of research into the habenula's principal afferent tract, the SM. Diffusion-weighted tractography may provide insights into the properties of the SM , opening up investigation of this tract in conditions of monoamine dysregulation such as depression, schizophrenia, addiction and pain. We present a reliable method for reconstructing the SM using diffusion-weighted imaging, and examine the effects of age and gender on tract diffusion metrics. We also investigate reproducibility of the method through inter-rater comparisons. In consultation with neuroanatomists, a Boolean logic gate protocol was developed for use in to extract the SM from constrained spherical deconvolution based whole brain tractography. Particular emphasis was placed on the reproducibility of the tract, attention to crossing white matter tract proximity and anatomical consistency of anterior and posterior boundaries. The anterior commissure, pineal gland and mid point of the thalamus were defined as anatomical fixed points used for reconstruction. Fifty subjects were scanned using High Angular Resolution Diffusion Imaging (HARDI; 61 directions, -value 1500 mm). Following constrained spherical deconvolution whole brain tractography, two independent raters isolated the SM. Each output was checked, examined and cleaned for extraneous streamlines inconsistent with known anatomy of the tract by the rater and a neuroanatomist. A second neuroanatomist assessed tracts for face validity. The SM was reconstructed with excellent inter-rater reliability for dimensions and diffusion metrics. Gender had no effect on the dimensions or diffusion metrics, however radial diffusivity (RD) showed a positive correlation with age. Reliable identification and quantification of diffusion metrics of the SM invites further exploration of this key habenula linked structure in neuropsychiatric disorders such as depression, anxiety, chronic pain and addiction. The accurate anatomical localization of the SM may also aid preoperative stereotactic localization of the tract for deep brain stimulation (DBS) treatment.

摘要

丘脑髓纹(SM)是一条离散的白质束,直接连接额叶边缘区域与缰核,使前脑能够影响中脑单胺能输出。缰核功能障碍在多种神经精神疾病中均有表现。然而,对于缰核的主要传入束——SM的研究却很少。扩散加权纤维束成像可能有助于了解SM的特性,从而开启在单胺调节异常的疾病(如抑郁症、精神分裂症、成瘾和疼痛)中对该束的研究。我们提出了一种使用扩散加权成像重建SM的可靠方法,并研究年龄和性别对纤维束扩散指标的影响。我们还通过评估者间比较来研究该方法的可重复性。在与神经解剖学家协商后,开发了一种布尔逻辑门协议,用于从基于约束球面反卷积的全脑纤维束成像中提取SM。特别强调了纤维束的可重复性、对白质束交叉接近度的关注以及前后边界的解剖一致性。将前连合、松果体和丘脑中点定义为用于重建的解剖固定点。使用高角分辨率扩散成像(HARDI;61个方向,值1500 mm²)对50名受试者进行扫描。在进行约束球面反卷积全脑纤维束成像后,两名独立的评估者分离出SM。评估者和一名神经解剖学家会检查、审视并清理每个输出,去除与该束已知解剖结构不一致的多余流线。另一名神经解剖学家评估纤维束的表面效度。SM在维度和扩散指标方面具有出色的评估者间可靠性。性别对维度或扩散指标没有影响,然而,径向扩散率(RD)与年龄呈正相关。对SM扩散指标的可靠识别和量化有助于在抑郁症、焦虑症、慢性疼痛和成瘾等神经精神疾病中进一步探索这个与缰核相关的关键结构。SM的精确解剖定位也可能有助于术前对该束进行立体定向定位,以便进行深部脑刺激(DBS)治疗。

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