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Vertaling en analyse van woorden door kunstmatige intelligentie ChatGPT

Op deze pagina kunt u een gedetailleerde analyse krijgen van een woord of zin, geproduceerd met behulp van de beste kunstmatige intelligentietechnologie tot nu toe:

  • hoe het woord wordt gebruikt
  • gebruiksfrequentie
  • het wordt vaker gebruikt in mondelinge of schriftelijke toespraken
  • opties voor woordvertaling
  • Gebruiksvoorbeelden (meerdere zinnen met vertaling)
  • etymologie

fünf Sinne - vertaling naar Engels


five senses         
  • Sensation consists of signal collection and transduction.
PHYSIOLOGICAL CAPACITY OF ORGANISMS THAT PROVIDES DATA FOR PERCEPTION
Senses; Exteroception; Sensory organ; The five senses; The 5 senses; 5 senses; Sensation (psychology); Five sense organs; Human senses; Sensual; Sensory organs; Sensuality; Sense organs; Sense organ; Aesthesia; The senses; Sensation and perception psychology; Sensation and perception; Sensed; Sensualization; Sensualizations; Sensualize; Sensualizes; Sensualized; Sensualizing; Sensualizer; Sensualizers; Sensualisation; Sensualisations; Sensualise; Sensualises; Sensualised; Sensualising; Sensualiser; Sensualisers; The Senses; Introception; Physical senses; Sensory information; Five senses; 5 Senses; Coenesthesis; Enteroception; Animal senses; Plant sensation; Nonhuman sensory perception
fünf Sinne
sense of taste         
  • Taste buds and papillae of the tongue
  • This diagram linearly (unless otherwise mentioned) tracks the projections of all known structures that allow for taste to their relevant endpoints in the human brain.
  • The diagram depicted above shows the signal transduction pathway of the bitter taste. Bitter taste has many different receptors and signal transduction pathways. Bitter indicates poison to animals. It is most similar to sweet. Object A is a taste bud, object B is one taste cell, and object C is a neuron attached to object B. I. Part I is the reception of a molecule.1. A bitter substance such as quinine, is consumed and binds to G Protein-coupled receptors.II. Part II is the transduction pathway 2. Gustducin, a G protein second messenger, is activated. 3. Phosphodiesterase, an enzyme, is then activated. 4. Cyclic nucleotide, cNMP, is used, lowering the concentration 5. Channels such as the K+, potassium, channels, close. III. Part III is the response of the taste cell. 6. This leads to increased levels of Ca+. 7. The neurotransmitters are activated. 8. The signal is sent to the neuron.
  • The diagram depicts the signal transduction pathway of the sour or salty taste. Object A is a taste bud, object B is a taste receptor cell within object A, and object C is the neuron attached to object B.

I. Part I is the reception of hydrogen ions or sodium ions.

1. If the taste is sour, H<sup>+</sup> ions, from acidic substances, pass through H<sup>+</sup> channels. Depolarization takes place

II. Part II is the transduction pathway of the relay molecules. 2. Cation, such as K<sup>+</sup>, channels are opened.

III. Part III is the response of the cell.

3. An influx of Ca<sup>+</sup> ions is activated.

4. The Ca<sup>+</sup> activates neurotransmitters.

5. A signal is sent to the neuron attached to the taste bud.
  • The diagram above depicts the signal transduction pathway of the sweet taste. Object A is a taste bud, object B is one taste cell of the taste bud, and object C is the neuron attached to the taste cell. I. Part I shows the reception of a molecule. 1. Sugar, the first messenger, binds to a protein receptor on the cell membrane. II. Part II shows the transduction of the relay molecules. 2. G Protein-coupled receptors, second messengers, are activated. 3. G Proteins activate adenylate cyclase, an enzyme, which increases the cAMP concentration. Depolarization occurs. 4. The energy, from step 3, is given to activate the K+, potassium, protein channels.III. Part III shows the response of the taste cell. 5. Ca+, calcium, protein channels is activated.6. The increased Ca+ concentration activates neurotransmitter vesicles. 7. The neuron connected to the taste bud is stimulated by the neurotransmitters.
SENSE THAT DETECTS TYPES OF CHEMICALS THAT TOUCH THE TONGUE
Basic taste; Basic tastes; Gustatory; Gustatory system; Sour; Bitter (taste); Sourness; Bitter taste; Yumminess; Saltiness; Primary tastes; Gustation; Tasteful; Sense of taste; Four tastes; Gustatory sense; Gustatory sensation; Tangiest; Sour taste; Tartness; Bitterness (taste); Tart (flavor); Gustaoception; Kokumi; Gustatory systems; Oleogustus; Draft:Oleogustus; Oiliogustus; Oliogustus; Bitter flavor; Primary taste; Taſte; Taste perception; Taste threshold; Salty taste; Salty (taste); Sour (taste); Flavor (taste); Flavour (taste)
Geschmacksinn (einer der fünf Sinne)
sense of smell         
  • ''[[The Lady and the Unicorn]]'', a Flemish tapestry depicting the sense of smell, 1484–1500. ''[[Musée national du Moyen Âge]]'', Paris.
  • Schematic of the early olfactory system including the olfactory epithelium and bulb. Each ORN expresses one OR that responds to different odorants. Odorant molecules bind to ORs on cilia. ORs activate ORNs that transduce the input signal into action potentials. In general, glomeruli receive input from ORs of one specific type and connect to the principal neurons of the OB, mitral and tufted cells (MT cells).
SENSE THAT DETECTS ODORS
Olfactory; Olfactory sense; Olfaction; Olefactory; Odorless; Olfactory perception; Classification of smells; Smelling; Accessory olfactory system; Osmesis; Olfactics; Olfactories; Osphresis; Macrosmatic; Olfactory sensation; Olfactory groove; Olfacoception; Olfacception; Science of smells; Smell disorders; Smell disorder; Smell (sense); Neuroscience of olfaction
Geruchssinn (einer der fünf Sinne)

Wikipedia

Fünf Sinne