Aiello M, Cavaliere C, Salvatore M (2016) Hybrid PET/MR imaging and brain connectivity. Front NeuroSci 10:64
PubMed PubMed Central Google Scholar
Anand A, Jones SE, Lowe M, Karne H, Koirala P (2019) Resting state functional connectivity of dorsal Raphe nucleus and ventral tegmental area in medication-free young adults with major depression. Front Psychiatry 9:765
PubMed PubMed Central Google Scholar
Bär KJ, de la Cruz F, Schumann A, Koehler S, Sauer H, Critchley H, Wagner G (2016) Functional connectivity and network analysis of midbrain and brainstem nuclei. NeuroImage 134:53–63
Beliveau V, Svarer C, Frokjaer VG, Knudsen GM, Greve DN, Fisher PM (2015) Functional connectivity of the dorsal and median Raphe nuclei at rest. NeuroImage 116:187–195
Beliveau V, Ganz M, Feng L, Ozenne B, Højgaard L, Fisher PM, Knudsen GM (2017) A high-resolution in vivo atlas of the human brain’s serotonin system. J Neurosci 37(1):120–128
CAS PubMed PubMed Central Google Scholar
Bosulu J, Luo Y, Hétu S (2022) Common brain areas for processing physiologically and socially ‘needed’stimuli. BioRxiv, 2022–2009
Bremner JD, Krystal JH, Southwick SM, Charney DS (1996) Noradrenergic mechanisms in stress and anxiety: I. Preclinical studies. Synapse 23(1):28–38
Briand LA, Gritton H, Howe WM, Young DA, Sarter M (2007) Modulators in concert for cognition: modulator interactions in the prefrontal cortex. Prog Neurobiol 83(2):69–91
CAS PubMed PubMed Central Google Scholar
Bruinsma TJ, Sarma VV, Oh Y, Jang DP, Chang SY, Worrell GA, Min HK (2018) The relationship between dopamine neurotransmitter dynamics and the blood-oxygen-level-dependent (BOLD) signal: a review of Pharmacological functional magnetic resonance imaging. Front NeuroSci 12:238
PubMed PubMed Central Google Scholar
Buckner RL, Andrews-Hanna JR, Schacter DL (2008) The brain’s default network: anatomy, function, and relevance to disease. Ann N Y Acad Sci 1124(1):1–38
Carandini T, Mancini M, Bogdan I, Rae CL, Barritt AW, Clerico M, Cercignani M (2021) In vivo evidence of functional Disconnection between brainstem monoaminergic nuclei and brain networks in multiple sclerosis. Multiple Scler Relat Disorders 56:103224
Cauzzo S, Singh K, Stauder M, García-Gomar MG, Vanello N, Passino C, Bianciardi M (2022) Functional connectome of brainstem nuclei involved in autonomic, limbic, pain and sensory processing in living humans from 7 Tesla resting state fMRI. NeuroImage 250:118925
Chandler DJ, Lamperski CS, Waterhouse BD (2013) Identification and distribution of projections from monoaminergic and cholinergic nuclei to functionally differentiated subregions of prefrontal cortex. Brain Res 1522:38–58
Chondrogiannis S, Marzola MC, Al-Nahhas A, Venkatanarayana TD, Mazza A, Opocher G, Rubello D (2013) Normal biodistribution pattern and physiologic variants of 18F-DOPA PET imaging. Nucl Med Commun 34(12):1141–1149
CAS PubMed PubMed Central Google Scholar
Charnay Y, Léger L (2022) Brain serotonergic circuitries. Dialogues Clinical Neurosci
Conio B, Martino M, Magioncalda P, Escelsior A, Inglese M, Amore M, Northoff G (2020) Opposite effects of dopamine and serotonin on resting-state networks: review and implications for psychiatric disorders. Mol Psychiatry 25(1):82–93
Del Cerro I, Villarreal MF, Abulafia C, Duarte-Abritta B, Sánchez SM, Castro MN, Guinjoan SM (2020) Disrupted functional connectivity of the locus coeruleus in healthy adults with parental history of alzheimer’s disease. J Psychiatr Res 123:81–88
Dipasquale O, Selvaggi P, Veronese M, Gabay AS, Turkheimer F, Mehta MA (2019) Receptor-Enriched analysis of functional connectivity by targets (REACT): A novel, multimodal analytical approach informed by PET to study the pharmacodynamic response of the brain under MDMA. NeuroImage 195:252–260
Dukart J, Holiga Š, Chatham C, Hawkins P, Forsyth A, McMillan R, Sambataro F (2018) Cerebral blood flow predicts differential neurotransmitter activity. Sci Rep 8:4074
PubMed PubMed Central Google Scholar
Dukart J, Holiga S, Rullmann M, Lanzenberger R, Hawkins PC, Mehta MA, Eickhoff SB (2021) JuSpace: A tool for Spatial correlation analyses of magnetic resonance imaging data with nuclear imaging derived neurotransmitter maps, vol 42. John Wiley & Sons, Inc., Hoboken, USA, pp 555–566. 3
Fields HL, Margolis EB (2015) Understanding opioid reward. Trends Neurosci 38(4):217–225
CAS PubMed PubMed Central Google Scholar
Ganesana M, Lee ST, Wang Y, Venton BJ (2017) Analytical techniques in neuroscience: recent advances in imaging, separation, and electrochemical methods. Anal Chem 89(1):314–341
Geng H, Xu P, Aleman A, Qin S, Luo YJ (2024) Dynamic organization of large-scale functional brain networks supports interactions between emotion and executive control. Neurosci Bull 40(7):981–991
PubMed PubMed Central Google Scholar
Gillespie CF, Szabo ST, Nemeroff CB (2020) Unipolar depression. Rosenberg’s Molecular and Genetic Basis of Neurological and Psychiatric Disease. Academic, pp 613–631
Gómez FJG, Huertas I, Ramírez JAL, Solís DG (2018) Elaboración de Una Plantilla de SPM Para La normalización de Imágenes de PET Con 18F-DOPA. Imagen Diagnóstica 9:23–25
Gu Q (2002) Neuromodulatory transmitter systems in the cortex and their role in cortical plasticity. Neuroscience 111(4):815–835
Gu H, Salmeron BJ, Ross TJ, Geng X, Zhan W, Stein EA, Yang Y (2010) Mesocorticolimbic circuits are impaired in chronic cocaine users as demonstrated by resting-state functional connectivity. NeuroImage 53(2):593–601
Haber SN, Fudge JL (1997) The primate substantia Nigra and VTA: integrative circuitry and function. Crit Reviews™ Neurobiol, 11(4)
Hadley JA, Nenert R, Kraguljac NV, Bolding MS, White DM, Skidmore FM, Lahti AC (2014) Ventral tegmental area/midbrain functional connectivity and response to antipsychotic medication in schizophrenia. Neuropsychopharmacology 39(4):1020–1030
Hahn A, Wadsak W, Windischberger C, Baldinger P, Höflich A S., Losak J, Lanzenberger R (2012) Differential modulation of the default mode network via serotonin-1A receptors. Proc Natl Acad Sci 109(7):2619–2624
CAS PubMed PubMed Central Google Scholar
Hansen J, Shafiei G, Markello R, Smart K, Cox S, Wu Y, Misic B (2022) Mapping neurotransmitter systems to the structural and functional organization of the human neocortex. Nat Neurosci 25:1569–1581
CAS PubMed PubMed Central Google Scholar
Hansen JY, Cauzzo S, Singh K, García-Gomar MG, Shine JM, Bianciardi M, Misic B (2024) Integrating brainstem and cortical functional architectures. Nat Neurosci, 1–12
Hensler JG, Artigas F, Bortolozzi A, Daws LC, De Deurwaerdère P, Milan L, Koek W (2013) Catecholamine/serotonin interactions: systems thinking for brain function and disease. Adv Pharmacol 68:167–197
CAS PubMed PubMed Central Google Scholar
Herman T, Cascella M, Muzio MR (2024) Mu Receptors. StatPearls.
Hornung JP (2003) The human Raphe nuclei and the serotonergic system. J Chem Neuroanat 26(4):331–343
Huang KW, Ochandarena NE, Philson AC, Hyun M, Birnbaum JE, Cicconet M, Sabatini BL (2019) Molecular and anatomical organization of the dorsal Raphe nucleus. Elife 8:e46464
PubMed PubMed Central Google Scholar
Huang Y, Yu S, Wilson G, Park J, Cheng M, Kong X, Kong J (2021) Altered extended locus coeruleus and ventral tegmental area networks in boys with autism spectrum disorders: a resting-state functional connectivity study. Neuropsychiatr Dis Treat, 1207–1216
Izzi L, Charron F (2013) Comprehensive developmental neuroscience: cellular migration and formation of neuronal connections. Chapter 7. Nonconventional Axon Guidance Cues. Elsevier Inc. Chapters
Janet R, Derrington E, Dreher JC (2024) Relationships between serotonin transporter availability and the global efficiency of the executive control brain network. Int J Mol Sci 25(11):5713
CAS PubMed PubMed Central Google Scholar
Jaworska N, Cox SM, Tippler M, Castellanos-Ryan N, Benkelfat C, Parent S, Leyton M (2020) Extra-striatal D2/3 receptor availability in youth at risk for addiction. Neuropsychopharmacology 45(9):1498–1505
CAS PubMed PubMed Central Google Scholar
Kaller S, Rullmann M, Patt M, Becker G-A, Luthardt J, Girbardt J, Sabri O (2017) Test-retest measurements of dopamine D1-type receptors using simultaneous PET/MRI imaging. Eur J Nucl Med Mol Imaging 44:1025–1032
Kenna GA, Roder-Hanna N, Leggio L, Zywiak WH, Clifford J, Edwards S, Swift RM (2012) Association of the 5-HTT gene-linked promoter region (5-HTTLPR) polymorphism with psychiatric disorders: review of psychopathology and pharmacotherapy. Pharmacogenomics Personalized Med, 19–35
Keren NI, Lozar CT, Harris KC, Morgan PS, Eckert MA (2009) In vivo mapping of the human locus coeruleus. NeuroImage 47(4):1261–1267
Kish SJ, Furukawa Y, Chang LJ, Tong J, Ginovart N, Wilson A, Meyer JH (2005) Regional distribution of serotonin transporter protein in postmortem human brain: is the cerebellum a SERT-free brain region? Nucl Med Biol 32(2):123–128
Kline RL, Zhang S, Farr OM, Hu S, Zaborszky L, Samanez-Larkin GR, Li CSR (2016) The effects of methylphenidate on resting-state functional connectivity of the basal nucleus of meynert, locus coeruleus, and ventral tegmental area in healthy adults. Front Human Neurosci 10:149
Li L, Kang J, Lockhart SN, Adams J, Jagust WJ (2018) Spatially adaptive varying correlation analysis for multimodal neuroimaging data. IEEE Trans Med Imaging 38(1):113–123
PubMed PubMed Central Google Scholar
Liebe T, Dordevic M, Kaufmann J, Avetisyan A, Skalej M, Müller N (2022) Investigation of the functional pathogenesis of mild cognitive impairment by localisation-based locus coeruleus resting‐state fMRI. Human brain mapping
Liu KY, Marijatta F, Hämmerer D, Acosta-Cabronero J, Düzel E, Howard RJ (2017) Magnetic resonance imaging of the human locus coeruleus: A systematic review. Neurosci Biobehavioral Reviews 83:325–355
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