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The Cerebellum ,[object Object],Cerebellum
The Cerebellum ,[object Object],[object Object]
Cerebellum:  Gross Anatomy ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],nodulus flocculus tonsil Ventral View
Anatomy of the Cerebellum 2 symmetrical hemispheres connected medially by the Vermis  Folia: Transversely oriented gyri 3 lobes in each hemisphere: Anterior, Posterior, Flocculonodular (FN) Neural arrangement:  Gray matter (Cortex), White matter (Internal),  Scattered cerebellar nuclei: dentate, globose, emboliform, fastigial  Arbor vitae (tree of life): distinctive treelike pattern of the white matter Folium
Divisions of the Cerebellum nodulus flocculus Ant Lobe Ant Lobe Post Lobe Post Lobe tonsil Ventral View Superior Surface vermis hemisphere Ant Lobe Post Lobe nodulus flocculus Schematic
Cerebellum Regulation of  muscle tone, coordination of  skilled voluntary  movement Planning of  voluntary activity Maintenance of  balance, control  of eye movements Anterior Lobe Posterior  Lobe Flocculo-Nodular  Lobe (FN lobe) Folia Primary fissure Vestibulocerebellum Spinocerebellum Cerebrocerebelum
Cerebellar Subdivisions ,[object Object],[object Object],Archicerebellum-vestibulocerebellum Paleocerebellum-spinocerebellum Neocerebellum-pontocerebellum/cerebrocerebellum
Cerebellar   Peduncles Medulla Inferior (ICP) Pons Middle (MCP) Midbrain Superior (SCP) Connects to Peduncle SCP SCP SCP MCP MCP MCP ICP ICP ICP
The Macroscopic Anatomy of the Cerebellum ,[object Object],[object Object],[object Object],[object Object]
The Evolutionary & Functional Division of the Cerebellum ,[object Object],[object Object],[object Object]
Cerebellar Subdivisions ,[object Object],[object Object],Archicerebellum-vestibulocerebellum Paleocerebellum-spinocerebellum Neocerebellum-pontocerebellum/cerebrocerebellum
The Evolutionary Division of the Cerebellum ,[object Object],[object Object],[object Object],[object Object]
Functional Division of the Cerebellum ,[object Object],[object Object]
The Archicerebellum ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
The Paleocerebellum ,[object Object],[object Object]
The Paleocerebellum ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
The Neocerebellum ,[object Object],[object Object],[object Object],[object Object],[object Object]
The Neocerebellum ,[object Object],[object Object],[object Object],[object Object],[object Object]
Longitudinal Cerebellar Regions ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Deep Cerebellar nuclei ,[object Object],[object Object],[object Object],[object Object],Interposed Fast G E Dent
Simplified Cerebellar Circuitry Spinal Cord, Cerebral Cortex  (via pontine nuclei), Vestibular System Cerebellar Cortex Inferior Olive Deep Cerebellar Nuclei Brainstem, thalamus, midbrain Mossy Fibers Climbing Fibers Spinal cord, Cerebral Cortex + - + INPUT
Microscopic Sections Cortex Mol Gr WM Purkinje Molecular Granular Inner Middle Outer Granular layer Purkinje cell layer Molecular layer Granule cells, Golgi cells Purkinje cells Stellate cells, Basket cells
Major Cell Types ,[object Object],[object Object],[object Object],[object Object],[object Object],***The Purkinje cell is the only output of the cerebellar cortex Glutamate GABA GABA GABA GABA
5 cell types Stellate (inhibitory) Basket (inhibitory) (molecular layer) Purkinje (inhibitory) (Purkinje layer) Golgi (inhibitory) Granule (excitatory) (Granular layer) Microcircuitry of cerebellum
[object Object],[object Object],[object Object],[object Object],[object Object]
Internal circuitry  ,[object Object],[object Object],[object Object],[object Object]
Purkinje Cell Recieves + inputs from parallel fibers and climbing fibers Recieves - inputs from basket cells, Golgi cells, stellate cells Heavily invested with glial processes
[object Object],[object Object],[object Object],[object Object],[object Object],complex spike
[object Object],[object Object],[object Object],[object Object],[object Object],glomeruli simple spikes
Inhibition: focusing in time and space ,[object Object],[object Object],[object Object],[object Object],[object Object],+ _ _
[object Object],[object Object]
[object Object],[object Object]
Cerebellar Peduncles Superior peduncles (to the midbrain): Fibers originate from neurons in the deep cerebellar nuclei & communicates with the  motor cortex  via the midbrain and  the diencephalon (thalamus) Middle peduncles (to the pons): Cerebellum receives information advising it of voluntary motor activities initiated by  motor cortex Inferior peduncles (to the medulla): Afferents conveying sensory information from muscle proprioceptors throughout the body & from the  vestibular  nuclei of the  brainstem  (Spinal cord)
Somatotopic Organization ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
The Cerebellum ,[object Object]
Afferent Connections  (1): 1. Inferior Cerebellar Peduncle Restiform Body Posterior Spinocerebellar Tract Olivocerebellar tract Cuneocerebellar Tract Reticulocerebellar Tract Juxtarestiform Body Vestibulocerebellar Tract Cerebellum  Connections
Afferent Connections  (2): 2. Middle Cerebellar Peduncle Pontocerebellar fiber Fibers from raphe nuclei  3. Superior Cerebellar Peduncle Anterior Spinocerebellar Tract Tecto-cerebellar tract  Trigemino-cerebellar tract  Fibres from locus coeruleus Cerebellum  Connections
Efferent Connections  : 1. Superior Cerebellar Peduncle Cerebellothalamic fiber - from 3 deep nuclei to VPLo, VLc, CL Cerebellorubral fiber - from nucleus interpositus  and dentate nucleus both goes to cortex Cerebello-rubro-spinal tract  Fibers to reticular formation and olivary complex  2. Inferior Cerebellar Peduncle Fastigiovestibular fiber Cerebello-reticular  cerebello- olivary tract  Cerebellum  Connections
Outputs of the Cerebellum Dentate nuclei:  project contralaterally through   the superior cerebellar peduncle to    neurons in the contralateral thalamus &   from thalamus to motor cortex Func.: influence planning  and  initiation of    voluntary movement Emboliform & Globose nuclei:  project mainly   to the contralateral red nuclei & a small    group is projected to the motor cortex   Red Nuclei    Rubrospinal Tract    control of proximal limb muscles   Fastigial nuclei:  project to the vestibular nuclei   & to the pontine and medullary reticular   formation    Vestibulospinal & Reticulospinal tracts Cerebellar nuclei:  dentate, globose, emboliform, fastigial
 
MLF Main Connections of the Vestibulocerebellum lower motor neuron LMN vestibulospinal tract FASTIGIAL NUCLEUS Vestibular Organ Floculonodular Lobe Vermis ARCHICEREBELLUM VESTIBULAR NUCLEUS
Main Connections of the Paleocerebellum lower motor neuron SPINAL CORD rubrospinal  tract NUCLEUS INTERPOSITUS Inferior Olivry Nucleus ANTERIOR  LOBE PARAVERMAL  ZONE PALEOCEREBELLUM RED NUCLEUS spinocerebellar  tract
CEREBRAL CORTEX DENTATE NUCLEUS Main Connections of the Neocerebellum lower motor neuron LMN pyramidal  tract POSTERIOR  LOBE CEREBELLAR HEMISPHERE THALAMUS NEOCEREBELLUM Pontine Nucleus
upper motor neuron UMN BASAL GANGLIA Pyramidal Tract and Associated Circuits lower motor neuron UMN pyramidal  tract Cerebellum
Reticular Formation CEREBELLUM Cerebellum and Automatic Motor Control Lower Motor Neuron (LMN) Motor Cortex Red Nucleus Vestibular  Nucleus Proprioceptors
Olivocerebellar Connections Caudal portion of medial and dorsal accessory olivary nucleus ----------------- vermis of cerebellar cortex (A and B) fastigial nucleus vestibular nucleus Rostral portion of medial and dorsal accessory olivary nucleus ----------------- paravermal region (C 1 , C 2 , C 3 ) nucleus interpositus Principal Inferior Olivary  Nucleus ----------------- cerebellar hemisphere  (D 1 , D 2 )   dentate nucleus Cerebellum  Connections
Cerebellum   Function    Maintenance of Equilibrium - balance, posture, eye movement     Coordination of half-automatic movement of walking and posture maintenance - posture, gait     Adjustment of Muscle Tone    Motor Learning – Motor Skills    Cognitive Function
Cerebellum: Control of Voluntary Movement All three lobes of cerebellum work together- Comparator of a servo-mechanism  ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Cerebellum and Motor Learning ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Cerebellar Processing - 1 ,[object Object],[object Object]
Cerebellar Processing - 2 ,[object Object],[object Object],[object Object],[object Object],[object Object]
Cerebellar Processing - 3 ,[object Object],[object Object],[object Object],[object Object]
Cerebellar Processing - 4 ,[object Object],[object Object]
The Cerebellum ,[object Object],[object Object]
The Cerebellum ,[object Object]
Clinical Considerations ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Clinical Considerations 2 ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Clinical Considerations 3 ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Cerebellar Pathologies ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Posture Gait – Ataxia Tremor
Cerebellar  Ataxia Ataxic gait and position:  Left cerebellar tumor a. Sways to the right in standing position b. Steady on the  right  leg c. Unsteady on the  left leg d. ataxic gait a b c d
Cerebellar tumors on  vermis - Truncal Ataxia - Frequent Falling The child in this picture: - would not try to stand  unsupported - would not let go of the bed rail if she was stood on the floor. Cerebellar  Medulloblastoma

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Cns 9

  • 1.
  • 2.
  • 3.
  • 4. Anatomy of the Cerebellum 2 symmetrical hemispheres connected medially by the Vermis Folia: Transversely oriented gyri 3 lobes in each hemisphere: Anterior, Posterior, Flocculonodular (FN) Neural arrangement: Gray matter (Cortex), White matter (Internal), Scattered cerebellar nuclei: dentate, globose, emboliform, fastigial Arbor vitae (tree of life): distinctive treelike pattern of the white matter Folium
  • 5. Divisions of the Cerebellum nodulus flocculus Ant Lobe Ant Lobe Post Lobe Post Lobe tonsil Ventral View Superior Surface vermis hemisphere Ant Lobe Post Lobe nodulus flocculus Schematic
  • 6. Cerebellum Regulation of muscle tone, coordination of skilled voluntary movement Planning of voluntary activity Maintenance of balance, control of eye movements Anterior Lobe Posterior Lobe Flocculo-Nodular Lobe (FN lobe) Folia Primary fissure Vestibulocerebellum Spinocerebellum Cerebrocerebelum
  • 7.
  • 8. Cerebellar Peduncles Medulla Inferior (ICP) Pons Middle (MCP) Midbrain Superior (SCP) Connects to Peduncle SCP SCP SCP MCP MCP MCP ICP ICP ICP
  • 9.
  • 10.
  • 11.
  • 12.
  • 13.
  • 14.
  • 15.
  • 16.
  • 17.
  • 18.
  • 19.
  • 20.
  • 21. Simplified Cerebellar Circuitry Spinal Cord, Cerebral Cortex (via pontine nuclei), Vestibular System Cerebellar Cortex Inferior Olive Deep Cerebellar Nuclei Brainstem, thalamus, midbrain Mossy Fibers Climbing Fibers Spinal cord, Cerebral Cortex + - + INPUT
  • 22. Microscopic Sections Cortex Mol Gr WM Purkinje Molecular Granular Inner Middle Outer Granular layer Purkinje cell layer Molecular layer Granule cells, Golgi cells Purkinje cells Stellate cells, Basket cells
  • 23.
  • 24. 5 cell types Stellate (inhibitory) Basket (inhibitory) (molecular layer) Purkinje (inhibitory) (Purkinje layer) Golgi (inhibitory) Granule (excitatory) (Granular layer) Microcircuitry of cerebellum
  • 25.
  • 26.
  • 27. Purkinje Cell Recieves + inputs from parallel fibers and climbing fibers Recieves - inputs from basket cells, Golgi cells, stellate cells Heavily invested with glial processes
  • 28.
  • 29.
  • 30.
  • 31.
  • 32.
  • 33. Cerebellar Peduncles Superior peduncles (to the midbrain): Fibers originate from neurons in the deep cerebellar nuclei & communicates with the motor cortex via the midbrain and the diencephalon (thalamus) Middle peduncles (to the pons): Cerebellum receives information advising it of voluntary motor activities initiated by motor cortex Inferior peduncles (to the medulla): Afferents conveying sensory information from muscle proprioceptors throughout the body & from the vestibular nuclei of the brainstem (Spinal cord)
  • 34.
  • 35.
  • 36. Afferent Connections (1): 1. Inferior Cerebellar Peduncle Restiform Body Posterior Spinocerebellar Tract Olivocerebellar tract Cuneocerebellar Tract Reticulocerebellar Tract Juxtarestiform Body Vestibulocerebellar Tract Cerebellum Connections
  • 37. Afferent Connections (2): 2. Middle Cerebellar Peduncle Pontocerebellar fiber Fibers from raphe nuclei 3. Superior Cerebellar Peduncle Anterior Spinocerebellar Tract Tecto-cerebellar tract Trigemino-cerebellar tract Fibres from locus coeruleus Cerebellum Connections
  • 38. Efferent Connections : 1. Superior Cerebellar Peduncle Cerebellothalamic fiber - from 3 deep nuclei to VPLo, VLc, CL Cerebellorubral fiber - from nucleus interpositus and dentate nucleus both goes to cortex Cerebello-rubro-spinal tract Fibers to reticular formation and olivary complex 2. Inferior Cerebellar Peduncle Fastigiovestibular fiber Cerebello-reticular cerebello- olivary tract Cerebellum Connections
  • 39. Outputs of the Cerebellum Dentate nuclei: project contralaterally through the superior cerebellar peduncle to neurons in the contralateral thalamus & from thalamus to motor cortex Func.: influence planning and initiation of voluntary movement Emboliform & Globose nuclei: project mainly to the contralateral red nuclei & a small group is projected to the motor cortex Red Nuclei  Rubrospinal Tract control of proximal limb muscles Fastigial nuclei: project to the vestibular nuclei & to the pontine and medullary reticular formation Vestibulospinal & Reticulospinal tracts Cerebellar nuclei: dentate, globose, emboliform, fastigial
  • 40.  
  • 41. MLF Main Connections of the Vestibulocerebellum lower motor neuron LMN vestibulospinal tract FASTIGIAL NUCLEUS Vestibular Organ Floculonodular Lobe Vermis ARCHICEREBELLUM VESTIBULAR NUCLEUS
  • 42. Main Connections of the Paleocerebellum lower motor neuron SPINAL CORD rubrospinal tract NUCLEUS INTERPOSITUS Inferior Olivry Nucleus ANTERIOR LOBE PARAVERMAL ZONE PALEOCEREBELLUM RED NUCLEUS spinocerebellar tract
  • 43. CEREBRAL CORTEX DENTATE NUCLEUS Main Connections of the Neocerebellum lower motor neuron LMN pyramidal tract POSTERIOR LOBE CEREBELLAR HEMISPHERE THALAMUS NEOCEREBELLUM Pontine Nucleus
  • 44. upper motor neuron UMN BASAL GANGLIA Pyramidal Tract and Associated Circuits lower motor neuron UMN pyramidal tract Cerebellum
  • 45. Reticular Formation CEREBELLUM Cerebellum and Automatic Motor Control Lower Motor Neuron (LMN) Motor Cortex Red Nucleus Vestibular Nucleus Proprioceptors
  • 46. Olivocerebellar Connections Caudal portion of medial and dorsal accessory olivary nucleus ----------------- vermis of cerebellar cortex (A and B) fastigial nucleus vestibular nucleus Rostral portion of medial and dorsal accessory olivary nucleus ----------------- paravermal region (C 1 , C 2 , C 3 ) nucleus interpositus Principal Inferior Olivary Nucleus ----------------- cerebellar hemisphere (D 1 , D 2 ) dentate nucleus Cerebellum Connections
  • 47. Cerebellum Function  Maintenance of Equilibrium - balance, posture, eye movement  Coordination of half-automatic movement of walking and posture maintenance - posture, gait  Adjustment of Muscle Tone  Motor Learning – Motor Skills  Cognitive Function
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  • 60. Posture Gait – Ataxia Tremor
  • 61. Cerebellar Ataxia Ataxic gait and position: Left cerebellar tumor a. Sways to the right in standing position b. Steady on the right leg c. Unsteady on the left leg d. ataxic gait a b c d
  • 62. Cerebellar tumors on vermis - Truncal Ataxia - Frequent Falling The child in this picture: - would not try to stand unsupported - would not let go of the bed rail if she was stood on the floor. Cerebellar Medulloblastoma