An anesthetic protocol for preserving functional network structure in the marmoset monkey brain

M. Ortiz-Rios, Nikoloz Sirmpilatze, Jessica König, Susann Boreitus
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Abstract

Abstract Initiatives towards acquiring large-scale neuroimaging data in non-human primates promise improving translational neuroscience and cross-species comparisons. Crucial among these efforts is the need to expand sample sizes while reducing the impact of anesthesia on the functional properties of brain networks. Yet, the effects of anesthesia on non-human primate brain networks remain unclear. Here, we demonstrate using functional magnetic resonance imaging (fMRI) at 9.4 tesla that isoflurane anesthesia induces a variety of brain states in the marmoset brain with dramatically altered functional connectivity profiles. As an alternative, we recommend using a continuous infusion of the sedative medetomidine, supplemented with a low concentration of isoflurane. Using this protocol in eight marmosets, we observed robust visual activation during flickering light stimulation and identified resting-state networks similar to the awake state. In contrast, isoflurane alone led to a suppressed visual activation and the absence of awake-like network patterns. Comparing states using a graph-theoretical approach, we confirmed that the structure of functional networks is preserved under our proposed anesthesia protocol but is lost using isoflurane alone at concentration levels greater than 1%. We believe that the widespread adoption of this protocol will be a step towards advancing translational neuroscience initiatives in non-human primate neuroimaging. To promote the collaborative use of neuroimaging resources, we openly share our datasets (https://zenodo.org/records/11118775).
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保留狨猴大脑功能网络结构的麻醉方案
摘要 在非人灵长类动物中获取大规模神经成像数据的举措有望改善转化神经科学和跨物种比较。其中最关键的是需要扩大样本量,同时减少麻醉对大脑网络功能特性的影响。然而,麻醉对非人灵长类大脑网络的影响仍不清楚。在这里,我们利用9.4特斯拉的功能磁共振成像(fMRI)证明,异氟醚麻醉会诱发狨猴大脑的多种状态,并显著改变其功能连接特征。作为替代方案,我们建议使用持续输注镇静剂美托咪定,辅以低浓度异氟醚。通过在八只狨猴中使用这种方案,我们观察到了闪烁光刺激时的强视觉激活,并发现了与清醒状态类似的静息态网络。相比之下,仅使用异氟醚会导致视觉激活受到抑制,并缺乏类似于清醒状态的网络模式。通过使用图论方法对各种状态进行比较,我们证实,在我们提出的麻醉方案下,功能网络的结构得以保留,但在浓度水平超过1%时,仅使用异氟醚则会失去这种结构。我们相信,该方案的广泛采用将是推动非人灵长类神经成像转化神经科学计划的一个步骤。为了促进神经成像资源的合作使用,我们公开共享我们的数据集 (https://zenodo.org/records/11118775)。
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