Tapered Fibers Combined With a Multi-Electrode Array for Optogenetics in Mouse Medial Prefrontal Cortex DOI Creative Commons

Leonardo Sileo,

Sebastian H. Bitzenhofer, Barbara Spagnolo

и другие.

Frontiers in Neuroscience, Год журнала: 2018, Номер 12

Опубликована: Окт. 26, 2018

Optogenetics offers many advantages in terms of cell-type specificity, allowing to investigate functional connectivity between different brain areas at high spatial and neural population selectivity. In order obtain simultaneous optical control electrical readout activity, devices called "optrodes" are employed. They typically composed a linear array microelectrodes integrated on slender probe shafts combined with flat-cleaved fibers (FF) placed above the recording sites. However, due tissue absorption scattering, light delivered by FF unevenly illuminates region interest. This issue is particular relevance when cellular populations disposed along dorso-ventral axis, such as medial prefrontal cortex (mPFC) where cortical layers aligned vertically. The study presented here aims using tapered (TFs) combination 16-electrode better access distributed axis mPFC newborn mice, restricting delivery over specific portion layer Half TF surface coated reflecting metal blocking enable from one side probe's shaft only, base being designed host fiber without interfering wire-bonds that connect sites printed circuit board. Monte-Carlo simulations have been implemented define relative TF-probe position identify intensity distribution vivo recordings indicate stimulation activity benefit use engineered TF-based optrode more uniform possibility subset

Язык: Английский

Prefrontal Cortex Development in Health and Disease: Lessons from Rodents and Humans DOI Creative Commons
Mattia Chini, Ileana L. Hanganu‐Opatz

Trends in Neurosciences, Год журнала: 2020, Номер 44(3), С. 227 - 240

Опубликована: Ноя. 24, 2020

The role of the prefrontal cortex (PFC) takes center stage among unanswered questions in modern neuroscience. PFC has a Janus-faced nature: it enables sophisticated cognitive and social abilities that reach their maximum expression humans, yet underlies some devastating symptoms psychiatric disorders. Accordingly, appropriate development is crucial for many high-order dysregulation this process been linked to various neuropsychiatric diseases. Reviewing recent advances field, with primary focus on rodents we highlight why, despite differences across species, cross-species approach fruitful strategy understanding development. We briefly review developmental contribution molecules extensively discuss how electrical activity controls early maturation wiring areas, as well emergence refinement input-output circuitry involved processing. Finally, mechanisms dysfunction relevance

Язык: Английский

Процитировано

196

Specialized Subpopulations of Deep-Layer Pyramidal Neurons in the Neocortex: Bridging Cellular Properties to Functional Consequences DOI Open Access
Arielle L. Baker, Brian Kalmbach, Mieko Morishima

и другие.

Journal of Neuroscience, Год журнала: 2018, Номер 38(24), С. 5441 - 5455

Опубликована: Май 21, 2018

Neocortical pyramidal neurons with somata in layers 5 and 6 are among the most visually striking enigmatic brain. These deep-layer (DLPNs) integrate a plethora of cortical extracortical synaptic inputs along their impressive dendritic arbors. The pattern output to both local long-distance targets is sculpted by unique physiological properties specific DLPN subpopulations. Here we revisit two broad subpopulations: those that send axons within telencephalon (intratelencephalic neurons) project additional target areas outside (extratelencephalic neurons). While neuroscientists across many subdisciplines have characterized intrinsic subpopulations, our increasing ability selectively manipulate these neuron subtypes advances understanding distinct functional contributions. This Viewpoints article summarizes current knowledge about DLPNs highlights recent work elucidating differences between

Язык: Английский

Процитировано

173

An increase of inhibition drives the developmental decorrelation of neural activity DOI Creative Commons
Mattia Chini, Thomas Pfeffer, Ileana L. Hanganu‐Opatz

и другие.

eLife, Год журнала: 2022, Номер 11

Опубликована: Авг. 17, 2022

Throughout development, the brain transits from early highly synchronous activity patterns to a mature state with sparse and decorrelated neural activity, yet mechanisms underlying this process are poorly understood. The developmental transition has important functional consequences, as latter is thought allow for more efficient storage, retrieval, processing of information. Here, we show that, in mouse medial prefrontal cortex (mPFC), during first two postnatal weeks decorrelates following specific spatial patterns. This accompanied by concomitant tilting excitation-inhibition (E-I) ratio toward inhibition. Using optogenetic manipulations network modeling, that phenomena mechanistically linked, relative increase inhibition drives decorrelation activity. Accordingly, mice mimicking etiology neurodevelopmental disorders, subtle alterations E-I associated impairments correlational structure spike trains. Finally, capitalizing on EEG data newborn babies, an analogous takes place also human brain. Thus, changes control (de)correlation and, these means, its imbalance might contribute pathogenesis disorders.

Язык: Английский

Процитировано

118

Early-life stress impairs postnatal oligodendrogenesis and adult emotional behaviour through activity-dependent mechanisms DOI Creative Commons
Anne Teissier, Corentin Le Magueresse, Jimmy Olusakin

и другие.

Molecular Psychiatry, Год журнала: 2019, Номер 25(6), С. 1159 - 1174

Опубликована: Авг. 22, 2019

Exposure to stress during early life (infancy/childhood) has long-term effects on the structure and function of prefrontal cortex (PFC), increases risk for adult depression anxiety disorders. However, little is known about molecular cellular mechanisms these effects. Here, we focused changes induced by chronic maternal separation first 2 weeks postnatal life. Unbiased mRNA expression profiling in medial PFC (mPFC) maternally separated (MS) pups identified an increased myelin-related genes a decreased immediate genes. Oligodendrocyte lineage markers birthdating experiments indicated precocious oligodendrocyte differentiation mPFC at P15, leading depletion progenitor pool MS adults. We tested role neuronal activity oligodendrogenesis, using designed receptors exclusively activated drugs (DREADDs) techniques. hM4Di or hM3Dq constructs were transfected into neurons fast-acting AAV8 viruses. Reduction neuron excitability caused premature oligodendrocytes similar pups, while chemogenetic activation normalised it animals. Bidirectional manipulation P2–P14 period had long lasting emotional behaviours temporal object recognition: mimicked effects, prevented pro-depressive short-term memory impairment MS. Thus, our results identify as critical target early-life demonstrate its controlling both oligodendrogenesis mPFC-related behaviours.

Язык: Английский

Процитировано

133

Microglia: Brain cells on the move DOI
Sophie Smolders, Sofie Kessels, Tim Vangansewinkel

и другие.

Progress in Neurobiology, Год журнала: 2019, Номер 178, С. 101612 - 101612

Опубликована: Апрель 4, 2019

Язык: Английский

Процитировано

95

A transient developmental increase in prefrontal activity alters network maturation and causes cognitive dysfunction in adult mice DOI Creative Commons
Sebastian H. Bitzenhofer, Jastyn A. Pöpplau, Mattia Chini

и другие.

Neuron, Год журнала: 2021, Номер 109(8), С. 1350 - 1364.e6

Опубликована: Март 7, 2021

Disturbed neuronal activity in neuropsychiatric pathologies emerges during development and might cause multifold dysfunction by interfering with apoptosis, dendritic growth, synapse formation. However, how altered electrical early life affects function behavior adults is unknown. Here, we address this question transiently increasing the coordinated of layer 2/3 pyramidal neurons medial prefrontal cortex neonatal mice monitoring long-term functional behavioral consequences. We show that increased causes premature maturation interneuronal density. Consequently, inhibitory feedback fast-spiking interneurons excitation/inhibition imbalance circuits young result weaker evoked synchronization gamma frequency. These structural changes ultimately lead to poorer mnemonic social abilities. Thus, actively controls cognitive performance be critical for symptoms diseases.

Язык: Английский

Процитировано

80

Whole-brain mapping of effective connectivity by fMRI with cortex-wide patterned optogenetics DOI Creative Commons
Seonghoon Kim, Hyun Seok Moon, Thanh Tan Vo

и другие.

Neuron, Год журнала: 2023, Номер 111(11), С. 1732 - 1747.e6

Опубликована: Март 30, 2023

Язык: Английский

Процитировано

27

Episodic memory development: Bridging animal and human research DOI Creative Commons
Juraj Bevandić, Loïc J. Chareyron, Jocelyne Bachevalier

и другие.

Neuron, Год журнала: 2024, Номер 112(7), С. 1060 - 1080

Опубликована: Фев. 14, 2024

Human episodic memory is not functionally evident until about 2 years of age and continues to develop into the school years. Behavioral studies have elucidated this developmental timeline its constituent processes. In tandem, lesion neurophysiological in non-human primates rodents identified key neural substrates circuit mechanisms that may underlie development. Despite progress, collaborative efforts between psychologists neuroscientists remain limited, hindering progress. Here, we seek bridge human development research by offering a comparative review using humans, primates, rodents. We highlight critical theoretical methodological issues limit cross-fertilization propose common framework, adaptable different species, facilitate cross-species endeavors.

Язык: Английский

Процитировано

12

Acute Intermittent Theta‐Burst Stimulation Produces Antidepressant‐Like Effects by Modulating Neuronal Oscillations and Serotonin Levels of the Medial Prefrontal Cortex in Experimental Parkinson's Disease DOI Open Access
Yixuan Wang, Jian Liu, Yanping Hui

и другие.

Journal of Neuroscience Research, Год журнала: 2025, Номер 103(2)

Опубликована: Фев. 1, 2025

ABSTRACT Parkinson's disease (PD)‐related depression is associated with aberrant neuronal oscillations and 5‐hydroxytryptamine (5‐HT) neurotransmission in the medial prefrontal cortex (mPFC). Intermittent theta‐burst stimulation (iTBS), an updated pattern of high‐frequency repetitive transcranial magnetic stimulation, has possible efficacy PD‐related depression. However, whether iTBS alleviates through modulating 5‐HT levels mPFC not been determined. In this study, male Sprague–Dawley rats were used to establish a unilateral 6‐hydroxydopamine‐induced PD model. Then, acute was applied parkinsonian rats, behavioral, neurochemical, electrophysiological experiments performed. We found that exhibited increased immobility time decreased sucrose preference accompanied by increase δ power decrease θ compared sham‐operated rats. One block (1 block‐iTBS, 300 stimuli) alleviated depressive‐like behaviors elevated sham‐iTBS. Additionally, it altered opposite fashion suppressing rhythm enhancing β rhythms sham‐iTBS, suggesting induces hyperactivity mPFC. With paradigm, we also observed parvalbumin expression mPFC, reflecting reduced cortical inhibition. Finally, correlation analyses showed strong between after 1 block‐iTBS. These findings suggest application produces antidepressant‐like effects, which may be normalized

Язык: Английский

Процитировано

1

Calcium activation of cortical neurons by continuous electrical stimulation: Frequency dependence, temporal fidelity, and activation density DOI
Nicholas J. Michelson,

James R. Eles,

Alberto L. Vazquez

и другие.

Journal of Neuroscience Research, Год журнала: 2018, Номер 97(5), С. 620 - 638

Опубликована: Дек. 26, 2018

Abstract Electrical stimulation of the brain has become a mainstay fundamental neuroscience research and an increasingly prevalent clinical therapy. Despite decades use in basic growing prevalence neuromodulation therapies, gaps knowledge regarding activation or inactivation neural elements over time have limited its ability to adequately interpret evoked downstream responses fine‐tune parameters focus on desired responses. In this work, vivo two‐photon microscopy was used image neuronal calcium activity layer 2/3 neurons somatosensory cortex (S1) male C57BL/6J‐Tg(Thy1‐GCaMP6s)GP4.3Dkim/J mice during 30 s continuous electrical at varying frequencies. We show frequency–dependent differences spatial temporal somatic stimulation. Our results elucidate conflicting from prior studies reporting either dense spherical somas biased toward those near electrode, sparse distance via axons electrode. These findings indicate that element specific response local stimulating electrode changes as function applied charge density frequency. need be considered properly circuit determining mechanisms action science experiments therapeutic applications.

Язык: Английский

Процитировано

80