type II cells - перевод на арабский
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type II cells - перевод на арабский

TYPE OF INTERNEURON
Golgi cells; Golgi II; Golgi I; Golgi type I; Golgi type II

type II cells      
‎ الخَلاَيا السِّنْخِيَّةُ مِنَ النَّمَطِ الثَّانِي‎
Type I error         
  • The results obtained from negative sample (left curve) overlap with the results obtained from positive samples (right curve). By moving the result cutoff value (vertical bar), the rate of false positives (FP) can be decreased, at the cost of raising the number of false negatives (FN), or vice versa (TP = True Positives, TPR = True Positive Rate, FPR = False Positive Rate, TN = True Negatives).
CONCEPTS FROM STATISTICAL HYPOTHESIS TESTING
Type I error; Type II error; Type I error rate; Type 1 error; Type 2 error; Failed to show; Type one error; Type II Error; Type I Error; Error of the first kind; Error of the second kind; Error of the third kind; Error of the fourth kind; Type I and Type II errors; Α error; Β error; A error; B error; Alpha level; Type I errors; Type 1 and type 2 error; False Alarm Rate; Alpha error; Beta error; Level of significance; Types of error; Type I and type II error; Type i and type ii error; Type 1 and Type 2 errors; Type II errors; False alarm rate
‎ خَطَأٌ مِنَ النَّمَطِ الأَوَّل‎
Type II error         
  • The results obtained from negative sample (left curve) overlap with the results obtained from positive samples (right curve). By moving the result cutoff value (vertical bar), the rate of false positives (FP) can be decreased, at the cost of raising the number of false negatives (FN), or vice versa (TP = True Positives, TPR = True Positive Rate, FPR = False Positive Rate, TN = True Negatives).
CONCEPTS FROM STATISTICAL HYPOTHESIS TESTING
Type I error; Type II error; Type I error rate; Type 1 error; Type 2 error; Failed to show; Type one error; Type II Error; Type I Error; Error of the first kind; Error of the second kind; Error of the third kind; Error of the fourth kind; Type I and Type II errors; Α error; Β error; A error; B error; Alpha level; Type I errors; Type 1 and type 2 error; False Alarm Rate; Alpha error; Beta error; Level of significance; Types of error; Type I and type II error; Type i and type ii error; Type 1 and Type 2 errors; Type II errors; False alarm rate
‎ خَطَأٌ مِنَ النَّمَطِ الثانِي‎

Определение

type specimen
¦ noun Botany & Zoology the specimen, or each of a set of specimens, on which the description and name of a new species is based. See also holotype, syntype.

Википедия

Golgi cell

In neuroscience, Golgi cells are inhibitory interneurons found within the granular layer of the cerebellum. They were first identified as inhibitory in 1964. It was also the first example of an inhibitory feedback network, where the inhibitory interneuron was identified anatomically. These cells synapse onto the dendrite of granule cells and unipolar brush cells. They receive excitatory input from mossy fibres, also synapsing on granule cells, and parallel fibers, which are long granule cell axons. Thereby this circuitry allows for feed-forward and feed-back inhibition of granule cells.

The main synapse made by these cells is a synapse onto the mossy fibre - granule cell excitatory synapse in a glomerulus. The glomerulus is made up of the mossy fibre terminal, granule cell dendrites, the Golgi terminal and is enclosed by a glial coat. The Golgi cell acts by altering the mossy fibre - granule cell synapse.

The Golgi cells use GABA as their neurotransmitter. The basal level of GABA produces a postsynaptic leak conductance by tonically activating alpha 6-containing GABA-A receptors on the granule cell. These high-affinity receptors are located both synaptically and extrasynaptically on the granule cell. The synaptic receptors mediate phasic contraction, duration of around 20-30ms whereas the extrasynapatic receptors mediate tonic inhibition of around 200ms, and are activated by synapse spill over.

Additionally the GABA acts on GABA-B receptors which are located presynaptically on the mossy fibre terminal. These inhibit the mossy fibre evoked EPSCs of the granule cell in a temperature and frequency dependent manner. At high mossy firing frequency (10 Hz) there is no effect of GABA acting on presynaptic GABA-B receptors on evoked EPSCs. However, at low (1 Hz) firing the GABA does have an effect on the EPSCs mediated via these presynaptic GABA-B receptors.