| Literature DB >> 32240530 |
Vilakshan Alambyan1, Jonathan Pace2, Persen Sukpornchairak2, Xin Yu3,4,5, Hamza Alnimir2, Ryan Tatton3, Gautham Chitturu6, Anisha Yarlagadda6, Ciro Ramos-Estebanez7.
Abstract
Modern neurocritical care relies on ancillary diagnostic testing in the form of multimodal monitoring to address acute changes in the neurological homeostasis. Much of our armamentarium rests upon physiological and biochemical surrogates of organ or regional level metabolic activity, of which a great deal is invested at the metabolic-hemodynamic-hydrodynamic interface to rectify the traditional intermediaries of glucose consumption. Despite best efforts to detect cellular neuroenergetics, current modalities cannot appreciate the intricate coupling between astrocytes and neurons. Invasive monitoring is not without surgical complication, and noninvasive strategies do not provide an adequate spatial or temporal resolution. Without knowledge of the brain's versatile behavior in specific metabolic states (glycolytic vs oxidative), clinical practice would lag behind laboratory empiricism. Noninvasive metabolic imaging represents a new hope in delineating cellular, nigh molecular level energy exchange to guide targeted management in a diverse array of neuropathology.Entities:
Keywords: Brain metabolism; MRI; Metabolic imaging; Neurocritical care; Neuroenergetics; Stroke
Mesh:
Year: 2020 PMID: 32240530 PMCID: PMC7283376 DOI: 10.1007/s13311-020-00843-4
Source DB: PubMed Journal: Neurotherapeutics ISSN: 1878-7479 Impact factor: 7.620