| Keyword search (4,163 papers available) | ![]() |
"Zadeh M" Authored Publications:
| Title | Authors | PubMed ID | |
|---|---|---|---|
| 1 | The Bug-Network (BugNet): A Global Experimental Network Testing the Effects of Invertebrate Herbivores and Fungal Pathogens on Plant Communities and Ecosystem Function in Open Ecosystems | Kempel A; Adamidis GC; Anadón JD; Atkinson J; Auge H; Avtzis D; Bachelot B; Bashirzadeh M; Bota JL; Classen A; Constantinou I; Crawley M; de Bellis T; Dostal P; Ebeling A; Eisenhauer N; Eldridge DJ; Encina G; Estrada C; Everingham S; Fanin N; Feng Y; Gaspar M; Gooriah L; Graff P; Montalván EG; Montalván PG; Hartke TR; Huang L; Jochum M; Kaljund K; Karmiris I; Koorem K; Korell L; Laine AL; le Provost G; Lessard JP; Liu M; Liu X; Liu Y; Llancabure J; Loïez S; Loydi A; Marrero H; Gockel S; Montoya A; Münzbergo | 41080499 ENCS |
| 2 | A database of magnetic resonance imaging-transcranial ultrasound co-registration | Alizadeh M; Collins DL; Kersten-Oertel M; Xiao Y; | 39920905 SOH |
| 3 | Virtual and Augmented Reality in Ventriculostomy: A Systematic Review | Alizadeh M; Xiao Y; Kersten-Oertel M; | 38823448 ENCS |
| 4 | Lactate's behavioral switch in the brain: An in-silico model | Soltanzadeh M; Blanchard S; Soucy JP; Benali H; | 37865309 PERFORM |
| 5 | Corrigendum: Deep Learning-Based Haptic Guidance for Surgical Skills Transfer | Fekri P; Dargahi J; Zadeh M; | 34026860 ENCS |
| 6 | Deep Learning-Based Haptic Guidance for Surgical Skills Transfer. | Fekri P, Dargahi J, Zadeh M | 33553246 ENCS |
| 7 | MAP Kinase Regulation of the Candida albicans Pheromone Pathway. | Rastghalam G, Omran RP, Alizadeh M, Fulton D, Mallick J, Whiteway M | 30787119 BIOLOGY |
| Title: | Lactate's behavioral switch in the brain: An in-silico model | ||||
| Authors: | Soltanzadeh M, Blanchard S, Soucy JP, Benali H | ||||
| Link: | https://pubmed.ncbi.nlm.nih.gov/37865309/ | ||||
| DOI: | 10.1016/j.jtbi.2023.111648 | ||||
| Publication: | Journal of theoretical biology | ||||
| Keywords: | Astrocytes; Brain Metabolism; Lactate; Mathematical Modeling; Optimization; | ||||
| PMID: | 37865309 | Category: | Date Added: | 2023-10-23 | |
| Dept Affiliation: |
PERFORM
1 PERFORM Centre, Concordia University, Montreal, Canada; Electrical and Computer Engineering Department, Concordia University, Montreal, Canada. Electronic address: milad.soltanzadeh@mail.utoronto.ca. 2 University of Rennes, INSERM, LTSI-UMR 1099, F-35000, Rennes, France. 3 PERFORM Centre, Concordia University, Montreal, Canada; Brain Imaging Centre, Montreal Neurological Institute, McGill University, Montreal, Canada. Electronic address: jean-paul.soucy@mcgill.ca. 4 PERFORM Centre, Concordia University, Montreal, Canada; Electrical and Computer Engineering Department, Concordia University, Montreal, Canada. Electronic address: habib.benali@concordia.ca. |
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Description: |
Emerging evidence emphasizes lactate's involvement in both physiological processes (energy metabolism, memory, etc.) and disease (traumatic brain injury, epilepsy, etc.). Furthermore, the usefulness of mathematical modeling in deciphering underlying dynamics of the brain to investigate lactate roles and mechanisms of action has been well established. Here, we analyze a novel mathematical model of brain lactate exchanges between four compartments: neurons, astrocytes, capillaries, and extracellular space. A system of four ordinary differential equations is proposed to explain interactions between these compartments. We first optimize and analyze the model's parameters under normal, resting state conditions, and then use it to simulate changes linked to elevated arterial lactate. Our results show that even though increased arterial lactate results in increased uptake by astrocytes and release to the extracellular space, it cannot strongly recover the initial drop in neuronal lactate concentration. Also, we show that the direction of lactate transport between the compartments is influenced by the maximum astrocyte production rate and the transport rate between astrocytes and extracellular space. |



