与显微镜、核磁共振成像技术和解剖学研究兼容的人脑固定体外原位灌注方案。

IF 2.1 4区 医学 Q1 ANATOMY & MORPHOLOGY Frontiers in Neuroanatomy Pub Date : 2023-03-23 eCollection Date: 2023-01-01 DOI:10.3389/fnana.2023.1149674
Ricardo Insausti, Ana María Insausti, Mónica Muñoz López, Isidro Medina Lorenzo, Maria Del Mar Arroyo-Jiménez, María Pilar Marcos Rabal, Carlos de la Rosa-Prieto, José Carlos Delgado-González, Javier Montón Etxeberria, Sandra Cebada-Sánchez, Juan Francisco Raspeño-García, María Mercedes Iñiguez de Onzoño, Francisco Javier Molina Romero, Ruth Benavides-Piccione, Silvia Tapia-González, Laura E M Wisse, Sadhana Ravikumar, David A Wolk, Javier DeFelipe, Paul Yushkevich, Emilio Artacho-Pérula
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引用次数: 0

摘要

我们介绍了一种人脑固定方法,该方法是在用生理盐水冲洗后通过颈动脉同时灌注 4% 多聚甲醛。左侧颈动脉插管用于灌注 10%福尔马林,以便将尸体进一步用于解剖研究或教学。我们的方法旨在通过改编实验动物研究中常用的方案,开发一种人脑血管固定方案。我们的研究表明,可以进行各种组织学程序(细胞和髓质结构、组织化学、免疫组化、细胞内注射和电子显微镜)。此外,还可以在相同的标本中获得体外、原位高分辨率核磁共振成像(9.4T)。这种方法所获得的形态学特征与实验动物血管内灌注所获得的形态学特征相似,前提是所使用的几种技术的死后间隔时间不超过 10 小时,细胞内注射和电子显微镜检查的死后间隔时间不超过 4 小时。与传统技术相比,使用血管内固定技术将大脑固定在颅骨内,可获得与颅骨完美贴合的固定全人脑,其变形可忽略不计。鉴于体外原位固定的这一特点,这种方法可能被认为是最适合用于脑部体外磁共振成像扫描的方法。我们介绍了所提出的人脑血管内固定方法与出于解剖学目的固定捐赠者身体的兼容性。因此,人体捐献计划可以提供人脑组织,而人体的其余部分也可以固定用于解剖学研究。因此,这种通过颈动脉系统固定人脑的方法优化了人脑组织的获取,使人们对人类神经系统疾病有了更深入的了解,同时也使解剖学部门受益匪浅,可以将身体的其余部分用于教学目的。
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Ex vivo, in situ perfusion protocol for human brain fixation compatible with microscopy, MRI techniques, and anatomical studies.

We present a method for human brain fixation based on simultaneous perfusion of 4% paraformaldehyde through carotids after a flush with saline. The left carotid cannula is used to perfuse the body with 10% formalin, to allow further use of the body for anatomical research or teaching. The aim of our method is to develop a vascular fixation protocol for the human brain, by adapting protocols that are commonly used in experimental animal studies. We show that a variety of histological procedures can be carried out (cyto- and myeloarchitectonics, histochemistry, immunohistochemistry, intracellular cell injection, and electron microscopy). In addition, ex vivo, ex situ high-resolution MRI (9.4T) can be obtained in the same specimens. This procedure resulted in similar morphological features to those obtained by intravascular perfusion in experimental animals, provided that the postmortem interval was under 10 h for several of the techniques used and under 4 h in the case of intracellular injections and electron microscopy. The use of intravascular fixation of the brain inside the skull provides a fixed whole human brain, perfectly fitted to the skull, with negligible deformation compared to conventional techniques. Given this characteristic of ex vivo, in situ fixation, this procedure can probably be considered the most suitable one available for ex vivo MRI scans of the brain. We describe the compatibility of the method proposed for intravascular fixation of the human brain and fixation of the donor's body for anatomical purposes. Thus, body donor programs can provide human brain tissue, while the remainder of the body can also be fixed for anatomical studies. Therefore, this method of human brain fixation through the carotid system optimizes the procurement of human brain tissue, allowing a greater understanding of human neurological diseases, while benefiting anatomy departments by making the remainder of the body available for teaching purposes.

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来源期刊
Frontiers in Neuroanatomy
Frontiers in Neuroanatomy ANATOMY & MORPHOLOGY-NEUROSCIENCES
CiteScore
4.70
自引率
3.40%
发文量
122
审稿时长
>12 weeks
期刊介绍: Frontiers in Neuroanatomy publishes rigorously peer-reviewed research revealing important aspects of the anatomical organization of all nervous systems across all species. Specialty Chief Editor Javier DeFelipe at the Cajal Institute (CSIC) is supported by an outstanding Editorial Board of international experts. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
期刊最新文献
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