Excitatory synapseAn excitatory synapse is a synapse in which an action potential in a presynaptic neuron increases the probability of an action potential occurring in a postsynaptic cell. Neurons form networks through which nerve impulses travels, each neuron often making numerous connections with other cells of neurons. These electrical signals may be excitatory or inhibitory, and, if the total of excitatory influences exceeds that of the inhibitory influences, the neuron will generate a new action potential at its axon hillock, thus transmitting the information to yet another cell.
NeuromodulationLe mot neuromodulation a un sens différent en neuroscience et en médecine. Dans ce domaine, la neuromodulation est le processus par lequel plusieurs classes de neurotransmetteurs du système nerveux régulent plusieurs populations de neurones. À l'opposé de la transmission synaptique, dans laquelle un neurone présynaptique influence directement un pair postsynaptique, les transmetteurs neuromodulateurs sécrétés par un groupe restreint de neurones se diffusent à travers le système nerveux, ayant un impact sur de multiples neurones.
Chemical synapseChemical synapses are biological junctions through which neurons' signals can be sent to each other and to non-neuronal cells such as those in muscles or glands. Chemical synapses allow neurons to form circuits within the central nervous system. They are crucial to the biological computations that underlie perception and thought. They allow the nervous system to connect to and control other systems of the body. At a chemical synapse, one neuron releases neurotransmitter molecules into a small space (the synaptic cleft) that is adjacent to another neuron.
NeurotransmetteurLes neurotransmetteurs, ou neuromédiateurs, sont des composés chimiques libérés par les neurones (et parfois par les cellules gliales) agissant sur d'autres neurones, appelés neurones postsynaptiques, ou, plus rarement, sur d'autres types de cellules (comme les cellules musculaires et les cellules gliales comme les astrocytes). Les neurotransmetteurs sont stockés au niveau de l'élément présynaptique dans des vésicules. Le contenu de ces vésicules est libéré (de à molécules en moyenne) dans l'espace synaptique au moment de l'arrivée d'un potentiel d'action.
Patch-sequencingPatch-sequencing (patch-seq) is a method designed for tackling specific problems involved in characterizing neurons. As neural tissues are one of the most transcriptomically diverse populations of cells, classifying neurons into cell types in order to understand the circuits they form is a major challenge for neuroscientists. Combining classical classification methods with single cell RNA-sequencing post-hoc has proved to be difficult and slow.
Cable theoryClassical cable theory uses mathematical models to calculate the electric current (and accompanying voltage) along passive neurites, particularly the dendrites that receive synaptic inputs at different sites and times. Estimates are made by modeling dendrites and axons as cylinders composed of segments with capacitances and resistances combined in parallel (see Fig. 1). The capacitance of a neuronal fiber comes about because electrostatic forces are acting through the very thin lipid bilayer (see Figure 2).
Single-unit recordingIn neuroscience, single-unit recordings (also, single-neuron recordings) provide a method of measuring the electro-physiological responses of a single neuron using a microelectrode system. When a neuron generates an action potential, the signal propagates down the neuron as a current which flows in and out of the cell through excitable membrane regions in the soma and axon. A microelectrode is inserted into the brain, where it can record the rate of change in voltage with respect to time.
Ganglions de la baseLes ganglions de la base (autrement appelés noyaux gris centraux ou noyaux de la base) sont un ensemble de structures sous-corticales constitué par des noyaux pairs, interconnectés au niveau télencéphalique (hémisphères cérébraux) et diencéphalique. Leur structure peut varier selon qu'on les définit de manière anatomique ou fonctionnelle.
Turing patternThe Turing pattern is a concept introduced by English mathematician Alan Turing in a 1952 paper titled "The Chemical Basis of Morphogenesis" which describes how patterns in nature, such as stripes and spots, can arise naturally and autonomously from a homogeneous, uniform state. The pattern arises due to Turing instability which in turn arises due to the interplay between differential diffusion (i.e., different values of diffusion coefficients) of chemical species and chemical reaction.
Substance grisethumb|Hémisphère droit d'un cerveau humain disséqué à la suite d'une coupe sagittale, révélant la substance grise dans la partie externe et la substance blanche dans la partie interne. La substance grise est la partie des tissus du système nerveux central composée essentiellement des corps cellulaires et de l'arbre dendritique des neurones ainsi que de certaines cellules gliales. Au microscope, la substance grise apparaît plus sombre que le reste du tissu nerveux, dit substance blanche, qui est essentiellement constitué des faisceaux de fibres axonales gainées de myéline, à la couleur blanchâtre.