Multimodal MRI reveals brainstem connections that sustain wakefulness in human consciousness

Мультимодальная МРТ выявляет стволовые связи, поддерживающие бодрствование в человеческом сознании
Robin L. Haynes, Juan Eugenio Iglesias, Bruce Fischl, Lilla Zöllei, Emery N. Brown, Douglas N. Greve, Joseph T. Giacino, Yelena G. Bodien, Christophe Destrieux, Allison Stevens, André van der Kouwe, Brian L. Edlow, Samuel B. Snider, Jian Li, Hannah C. Kinney, Mark Olchanyi, Holly J. Freeman, Chiara Maffei, Jean C. Augustinack, Bram R. Diamond, Rebecca D. Folkerth, Holly J. Freeman
2024-05-01

7-tesla resting-state functional MRIdefault ascending arousal network (dAAN)ex vivo diffusion MRI tractographymultimodal MRIventral tegmental area (VTA)
Consciousness is composed of arousal (i.e., wakefulness) and awareness. Substantial progress has been made in mapping the cortical networks that underlie awareness in the human brain, but knowledge about the subcortical networks that sustain arousal in humans is incomplete. Here, we aimed to map the connectivity of a proposed subcortical arousal network that sustains wakefulness in the human brain, analogous to the cortical default mode network (DMN) that has been shown to contribute to awareness. We integrated data from ex vivo diffusion magnetic resonance imaging (MRI) of three human brains, obtained at autopsy from neurologically normal individuals, with immunohistochemical staining of subcortical brain sections. We identified nodes of the proposed default ascending arousal network (dAAN) in the brainstem, hypothalamus, thalamus, and basal forebrain. Deterministic and probabilistic tractography analyses of the ex vivo diffusion MRI data revealed projection, association, and commissural pathways linking dAAN nodes with one another and with DMN nodes. Complementary analyses of in vivo 7-tesla resting-state functional MRI data from the Human Connectome Project identified the dopaminergic ventral tegmental area in the midbrain as a widely connected hub node at the nexus of the subcortical arousal and cortical awareness networks. Our network-based autopsy methods and connectivity data provide a putative neuroanatomic architecture for the integration of arousal and awareness in human consciousness.
1
A proposed default ascending arousal network (dAAN) was identified with nodes in the brainstem, hypothalamus, thalamus, and basal forebrain based on ex vivo diffusion MRI and immunohistochemistry.
2
Deterministic and probabilistic tractography revealed projection, association, and commissural pathways linking dAAN nodes to each other and to cortical default mode network (DMN) nodes.
3
In vivo 7-tesla resting-state fMRI showed the dopaminergic ventral tegmental area (VTA) acts as a widely connected hub at the interface of subcortical arousal (dAAN) and cortical awareness (DMN) networks.
4
The combined network-based autopsy and multimodal connectivity data provide a putative neuroanatomic architecture for how arousal and awareness are integrated in human consciousness.

Proposed default ascending arousal network (dAAN) in the human brain, including brainstem, hypothalamus, thalamus, and basal forebrain nodes and their connections to the cortical default mode network

Structural and functional connectivity architecture of the dAAN: projection, association, and commissural pathways among dAAN nodes and between dAAN and DMN nodes, and identification of hub nodes (e.g., ventral tegmental area) that sustain wakefulness

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2024-05-01
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Authors
Robin L. Haynes
Juan Eugenio Iglesias
Bruce Fischl
Lilla Zöllei
Emery N. Brown
Douglas N. Greve
Joseph T. Giacino
Yelena G. Bodien
Christophe Destrieux
Allison Stevens
André van der Kouwe
Brian L. Edlow
Samuel B. Snider
Jian Li
Hannah C. Kinney
Mark Olchanyi
Holly J. Freeman
Chiara Maffei
Jean C. Augustinack
Bram R. Diamond
Rebecca D. Folkerth
Holly J. Freeman
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