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Cortex for Newbies. Neocortex Gyri (plural: singular = gyrus) – convolution or bump – protruding rounded surfaces (folds) Sulci (plural: singular = sulcus)

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Presentation on theme: "Cortex for Newbies. Neocortex Gyri (plural: singular = gyrus) – convolution or bump – protruding rounded surfaces (folds) Sulci (plural: singular = sulcus)"— Presentation transcript:

1 Cortex for Newbies

2 Neocortex

3 Gyri (plural: singular = gyrus) – convolution or bump – protruding rounded surfaces (folds) Sulci (plural: singular = sulcus) – valley between gyri or enfolded regions that appears as surface lines (gaps between gyri) Fissure – very deep sulcus The Neocortex - Gyri and Sulci. gray matter (dendrites & synapses) white matter (axons) FUNDUS BANK SULCUS

4 Brodmann’s Areas most common cortical map more recent schemes subdivide areas monkey and human areas are not necessarily equivalent. Brodmann (1905)

5 Lobes of cerebral cortex Sulci and gyri maximize surface area - triples area of the brain

6 Cortical folding.  The degree of cortical folding is correlated with intelligence.

7 Cortical folding http://brainmuseum.org/

8 Proportions of brain also differ across species

9 Cortical folding.  The proportion of frontal cortex to the rest of the brain is also thought to be correlated with intelligence. ratio of frontal to total cortex lemurgibbonchimpanzee human 0.1 0.2 0.3

10 But mammalian nervous systems are very similar Fig 6.7 Species comparisons can yield insight into brain function

11 Specializations of the human brain larger representations of the hands neocortical specializations for speech extreme hemispheric specialization expanded prefrontal cortex

12 Interspecies Comparisons Figure H shows the macaque monkey visual areas morphed onto human cortex based on the placement of sulcal landmarks (Van Essen et al., 2001) Can we assume humans are just morphed monkeys? In some areas the human cortical surface area is slightly larger than in the macaque (e.g., visual cortex: 2X); in others it is considerably larger (e.g., parietal cortex: 20X) Are individual areas larger? Are there more areas?

13 Maps in the Mind  The occipital lobe contains many maps of the visual world Visual maps in the macaque monkey brain Visual maps in the human brain derived from fMRI

14 Defining the lobeslobes frontal lobe temporal lobe occipital lobe sylvyan (lateral) fissure central (rolandic) sulcus parietal lobe

15 Longitudinal Fissure  also known as the interhemispheric fissure as it divides the two hemispheres

16 Midline structures of the brain

17 Visual Cortex upper bank of calcarine (cuneus) – lower visual field lower bank of the calcarine (lingual) – upper visual field calcarine sulcus parieto-occipital sulcus cuneus lingual gyrus

18 Retinotopy – mapping the visual world onto the visual cortex.

19 Visual field defects.

20 Parietal Cortex frontal lobe temporal lobe occipital lobe parietal lobe

21 Parietal Association Cortex integrates sensory information from multiple modalities integrating internal states (intentions, proprioception etc.) with external information or goals (e.g., directing eye and hand movements) goal-relevant processing (macaque examples) left and right inferior parietal cortex play different roles left inferior parietal damage – apraxia right inferior parietal damage – neglect superior parietal cortex damage – optic ataxia, Balint’s syndrome Primary somatosensory cortex: The region of the anterior parietal lobe whose primary input is from the somatosensory system.

22 Hemispatial Neglect Damage to the right parietal lobe often results in a failure to attend to or represent information appearing on the left side of space despite intact sensory processing and visual acuity. Unable to construct adequate representations of the left side of space. debilitating in every day life

23 Temporal Cortex frontal lobe temporal lobe occipital lobe parietal lobe

24 Temporal Cortex object and facial recognition (agnosia and prosopagnosia) auditory processing language – Wernicke’s area Memory emotional processing – the limbic system

25 Frontal Cortex frontal lobe temporal lobe occipital lobe parietal lobe

26 Frontal Cortex – the “executive” brain! executive control – planning and guiding behaviour, judgement damage can lead to disorganized behaviour, disinhibition and inappropriate social behaviour, impaired abstract thinking, rigidity in thought, perseveration, personality changes, emotional lability (inappropriate laughing or crying)damage not fully developed until late teens/early twenties

27 Primary motor cortex: The region of the posterior frontal lobe that contains neurons that control movements of skeletal muscle.

28 Contralateral Motor Control Left motor strip represents right sided motor control and vice versa. Same organization for the somatosensory strip LEFT RIGHT LEFT RIGHT LEFT RIGHT

29 Association Cortex Sensory association cortex: Those regions of the cerebral cortex that receive information from regions of the primary sensory cortex. Motor association cortex: The region of the frontal lobe rostral to the primary cortex; also known as the premotor cortex.


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