The Somatosensory System 2 Flashcards
(42 cards)
What are sensory receptors
Transducers that converts energy from the environment into neuronal action potentials
What are the types of sensory neurones
Aβ-fibres
Aδ-fibres
C-fibres
Describe the Aβ-fibres
Innocuous mechanical stimualtion
Myelinated and large
very fast
Describe the Aδ-fibres
Noxious mechanical and thermal stimulation Myelinated and thinner than Ab
Fast
Describe the C-fibres
Noxious mechanical, thermal and chemical stimulation
Non-myelinated
Slow
What are the somatosensory modalities
Touch – detection of light mechanical stimuli
Thermal – detection of temperature
Nociceptor – noxious and pain
Proprioception – mechanical displacement of muscles and joints
What kind of nerve endings do thermo-, noci-, and mechano- receptors have have
Thermo receptors - free nerve
Nociceptors - free nerve
Mechanoreceptors - enclosed nerve endings
Describe thermoreceptors
Aδ- and C-fibres Free nerve ending Transient receptor potential (TRP) ion channels 4 are heat activated: TRPV1 - 4 2 are cold activated: TRPM8, TRPA1
What are the types of mechanoreceptor
Meissner’s corpuscle - fine discriminative touch, low frequency vibration
Merkel cells - light touch and superficial pressure
Pacinian corpuscle - Detects depp pressure, high frequency vibration and tickling
Ruffini endings - continuous pressure or touch and stretch
What is a threshold
Point of intensity at which the person can just detect the presence of a stimulus 50% of the time (absolute threshold)
What are tonic receptors
Detects continuous stimulus strength
Continues to transmit impulses to the brain as long as the stimulus is present
Keeps the brain constantly informed of the status of the body
Give an example of tonic receptors
Merkel cells
Slowly adapt allowing for superficial pressure and fine touch to be percieved
What are phasic receptors
Detects changes in stimulus strength
Transmits an impulse at the start and the end of the stimulus (when a change is taking place)
Give and example of phasic receptors
Pacinian receptors
Sudden pressure excites receptor
Transmits a signal again when pressure is released
What is a receptive field
Region on the skin which causes activation of a single sensory neurones when activated
Compare small to large receptive fields
small - allow for detection of fine detail over small areas, precise perception e.g. fingers have many densely packed mechanoreceptors with small receptive fields
Large - allows the cells to detect changes one a wider area, less precise
What is two point discrimination
Minimum distance at which two points are perceived as separate
Related to the size of the receptive field
Where are the cell bodies found for the body and the face
Dorsal root ganglia (body) Trigeminal ganglia (face)
What are the two types of dorsal horn neurons
Neurones with axons that project into the brain (projection neurons)
Neurons with axons that remain in the spinal cord (interneurons)
What is lateral inhibition
Prevents the overlap between two receptive fields
Facilitates pinpoint accuracy in localisation of the stimulus
Mediated by inhibitory interneurons within the dorsal horn of the spinal cord
Facilitates enhances sensory perception
Which vertebral level is the boundary for the somatosensory pathway for touch and proprioception for the upper and lower limbs
T6
Below T6 = lower
Above T6 = upper
What is the somatosensory pathway for touch and proprioception for the lower limbs (which vertebral level)
- Aβ fibres enter the dorsal horn
- Aβ fibres enter the ipsilateral ascending dorsal column pathway
- Information travels ipsilaterally along the gracile tract (inner)
- Synapse in the gracile nucleus
- Crosses/ decussate in the caudal medulla (second order) to form the contralateral medial lemniscus tract
- Projection to the ventral posterior lateral nucleus of the thalamus
- Projection to the somatosensory cortex (third order neuron)
What is the somatosensory pathway for touch and proprioception for the upper limbs (which vertebral level)
- Aβ fibres enter the dorsal horn
- Aβ fibres enter the ipsilateral ascending dorsal column pathway
- Information travels ipsilaterally along the cuneate tract (outer)
- Synapse in the cuneate nucleus
- Crosses/ decussate in the caudal medulla (second order) to form the contralateral medial lemniscus tract
- Projection to the ventral posterior lateral nucleus of the thalamus
- Projection to the somatosensory cortex (third order neuron)
What is size of somatotopic areas proportional to
Density of sensory receptors in that body region (somatosensory homunculus)
Pain and temp. localisation is not as precise)