Deck 5: Praxis and Dyspraxia
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ملء الشاشة (f)
Deck 5: Praxis and Dyspraxia
1
Apraxia is used to describe motor planning deficits that are developmental in nature.
False
2
According to Ayers, dyspraxia is primarily a problem of motor execution.
False
3
Developmental coordination disorder (DCD) shares characteristics common to the concept of dyspraxia.
True
4
According to Ayers, tactile awareness contributes to development of a semiconscious body scheme.
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5
In the sensory integration (SI) approach, passive movement is preferred over active movement.
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6
The visual system has strong neuroanatomical and functional connections to the vestibular system.
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7
The auditory and vestibular systems are functionally and neuroanatomically interrelated as they both respond to vibration, are housed in the same bony structure, and fibers carrying auditory and vestibular inputs form cranial nerve VIII (CNVIII).
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8
Tactile and proprioceptive sensations are the only sensory systems that contribute to the development of an adequate body scheme.
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9
The Sensory Integration and Praxis Test (SIPT) is primarily used to assess ideational praxis.
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10
Individuals with bilateral integration and sequencing (BIS) deficits often score within normal limits on the Sensory Integration and Praxis Test (SIPT), but with a pattern of low scores.
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11
Standardized assessments are the only method for assessing praxis in children.
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12
Ideational difficulties do not occur in individuals with above-average intelligence and language skills.
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13
Somatodyspraxia does not need to be accompanied by evidence of poor somatosensory processing to have a sensory integrative (SI) basis.
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14
Bilateral integration and sequencing (BIS) deficits indicate a severe practic disorder and would be obvious to most parents, teachers, and clinicians.
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15
The neurological structure responsible for developmental dyspraxia is located in the prefrontal cortex, which is responsible for producing a goal-directed sequence of movements.
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16
The left dorsal premotor cortex (lPMC) plays a critical role in motor learning, whereas the lateral premotor cortex and medial sensory motor area (SMA) play an important role in motor planning.
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17
Children with practic disorders outgrow many of the deficits by adolescence and adulthood.
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18
All children who have dyspraxia have sensory integrative (SI) dysfunction.
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19
Developmental coordination disorder (DCD) and Deficits in Attention, Motor Control, and Perception (DAMP) have symptoms that overlap with dyspraxia.
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20
Ayers believed sensory integration (SI) intervention was a transaction among client, task, and environment.
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21
In sensory integration (SI) intervention, passive interventions (e.g., passive range of motion and joint compression) are frequently used to help develop body scheme and facilitate improved praxis skills.
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22
Motor learning is best facilitated in blocked practice.
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23
Blood flow to the sensory motor area (SMA), premotor, and frontal cortices increases during mental practice.
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24
The vestibular system provides a sensory foundation for the development of _________.
A)Proper force and timing needed to act on objects
B)Refined manual dexterity and manipulation
C)Bilateral coordination and planning of anticipatory movements
D)Postural flexion through activation of tonic labyrinthine response
A)Proper force and timing needed to act on objects
B)Refined manual dexterity and manipulation
C)Bilateral coordination and planning of anticipatory movements
D)Postural flexion through activation of tonic labyrinthine response
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25
Which of these does the vestibular system NOT contribute to?
A)Detection of location and qualities of external stimuli applied to the skin
B)Maintenance of a stable visual field
C)Development of balance, postural control, and integration of postural reflexes
D)Development of neuronal models of how it feels to perform a given movement
A)Detection of location and qualities of external stimuli applied to the skin
B)Maintenance of a stable visual field
C)Development of balance, postural control, and integration of postural reflexes
D)Development of neuronal models of how it feels to perform a given movement
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26
The gold standard for assessing praxis is ___________.
A)Test of ideational praxis
B)See if the individual can follow motor demonstrations
C)Bruininks-Oseretsky Test of Motor Proficiency (BOT-2)
D)Sensory Integration and Praxis Test (SIPT)
A)Test of ideational praxis
B)See if the individual can follow motor demonstrations
C)Bruininks-Oseretsky Test of Motor Proficiency (BOT-2)
D)Sensory Integration and Praxis Test (SIPT)
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27
Ideation involves all of the following EXCEPT ________________.
A)Conceptualizing the goal for an action and some idea of how to achieve that goal
B)Cognitive processes that contribute to a child's ability to be creative and playful
C)Knowing what do with toys and objects
D)Coordinated use of the two body sides
A)Conceptualizing the goal for an action and some idea of how to achieve that goal
B)Cognitive processes that contribute to a child's ability to be creative and playful
C)Knowing what do with toys and objects
D)Coordinated use of the two body sides
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28
When observing a student during recess, you notice the child sits on the sideline of the pick-up soccer game and uses playground equipment inappropriately. The student's teacher reports that the child has a difficult time figuring out what to make when given free time in art class, or deciding what to write about during morning journal time. These observations indicate the student most likely has deficits with __________ (choose the BEST answer).
A)Ideation
B)Somatodyspraxia
C)Social interaction
D)Bilateral coordination
A)Ideation
B)Somatodyspraxia
C)Social interaction
D)Bilateral coordination
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29
Your client has difficulty doing jumping jacks and skipping in physical education. In the classroom, the client avoids stabilizing his or her paper when writing. Your client most likely ____________.
A)Has visuodyspraxia
B)Is careless and rushes through activities
C)Has bilateral integration and sensory (BIS)deficits
D)Has poor tactile discrimination
A)Has visuodyspraxia
B)Is careless and rushes through activities
C)Has bilateral integration and sensory (BIS)deficits
D)Has poor tactile discrimination
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30
Individuals with somatodyspraxia will benefit MOST from engaging in which activity?
A)Repetitively going through a "steam roller"
B)Brainstorming ideas about how to use an everyday object in new ways
C)Throwing bean bags into a bucket while swinging
D)Repeatedly practicing shoe tying and buttoning techniques
A)Repetitively going through a "steam roller"
B)Brainstorming ideas about how to use an everyday object in new ways
C)Throwing bean bags into a bucket while swinging
D)Repeatedly practicing shoe tying and buttoning techniques
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31
Which theory purports that spatial knowledge of the external world is derived from movement experiences associated with vision and memory?
A)Motor control theory
B)Ecological theory
C)Visuo-spatial theory
D)Theory of dyspraxia
A)Motor control theory
B)Ecological theory
C)Visuo-spatial theory
D)Theory of dyspraxia
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32
Children with somatodyspraxia are likely to have difficulties with all of the following EXCEPT ____________.
A)Sequential finger touching
B)Supine flexion
C)Rapid alternating forearm movements
D)Visual tracking
A)Sequential finger touching
B)Supine flexion
C)Rapid alternating forearm movements
D)Visual tracking
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33
Which of the following statements BEST describes dynamical systems theory?
A)Behaviors are fluid, highly variable, and rely on interaction or exploration within the environment.
B)Integration of sensory inputs is necessary for organization of behavior.
C)Repetition of motor skills is needed for them to be stored and retrieved in an adaptive manner.
D)Skills are acquired in a hierarchical manner over the course of development.
A)Behaviors are fluid, highly variable, and rely on interaction or exploration within the environment.
B)Integration of sensory inputs is necessary for organization of behavior.
C)Repetition of motor skills is needed for them to be stored and retrieved in an adaptive manner.
D)Skills are acquired in a hierarchical manner over the course of development.
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34
Match the brain structure to the function.
-Structure-Lateral premotor cortex (lPMC)
A)Function-Plays major role in planning and execution of coordinated movement; regulates timing and force of movements
B)Function-Plays major role in setting goals; active when we perform
C)Function-Active when movement occurs in response to external events
D)Function-Initiates complex movement; active during completion of movement
E)Function-Major site of convergence of bilateral somatosensory inputs from the body with input from other sensory systems
F)Function-Depends primarily on proprioceptive inputs and is active when action is self-initiated
-Structure-Lateral premotor cortex (lPMC)
A)Function-Plays major role in planning and execution of coordinated movement; regulates timing and force of movements
B)Function-Plays major role in setting goals; active when we perform
C)Function-Active when movement occurs in response to external events
D)Function-Initiates complex movement; active during completion of movement
E)Function-Major site of convergence of bilateral somatosensory inputs from the body with input from other sensory systems
F)Function-Depends primarily on proprioceptive inputs and is active when action is self-initiated
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35
Match the brain structure to the function.
-Structure-Supplemental motor area (SMA)
A)Function-Plays major role in planning and execution of coordinated movement; regulates timing and force of movements
B)Function-Plays major role in setting goals; active when we perform
C)Function-Active when movement occurs in response to external events
D)Function-Initiates complex movement; active during completion of movement
E)Function-Major site of convergence of bilateral somatosensory inputs from the body with input from other sensory systems
F)Function-Depends primarily on proprioceptive inputs and is active when action is self-initiated
-Structure-Supplemental motor area (SMA)
A)Function-Plays major role in planning and execution of coordinated movement; regulates timing and force of movements
B)Function-Plays major role in setting goals; active when we perform
C)Function-Active when movement occurs in response to external events
D)Function-Initiates complex movement; active during completion of movement
E)Function-Major site of convergence of bilateral somatosensory inputs from the body with input from other sensory systems
F)Function-Depends primarily on proprioceptive inputs and is active when action is self-initiated
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36
Match the brain structure to the function.
-Structure-Cerebellum
A)Function-Plays major role in planning and execution of coordinated movement; regulates timing and force of movements
B)Function-Plays major role in setting goals; active when we perform
C)Function-Active when movement occurs in response to external events
D)Function-Initiates complex movement; active during completion of movement
E)Function-Major site of convergence of bilateral somatosensory inputs from the body with input from other sensory systems
F)Function-Depends primarily on proprioceptive inputs and is active when action is self-initiated
-Structure-Cerebellum
A)Function-Plays major role in planning and execution of coordinated movement; regulates timing and force of movements
B)Function-Plays major role in setting goals; active when we perform
C)Function-Active when movement occurs in response to external events
D)Function-Initiates complex movement; active during completion of movement
E)Function-Major site of convergence of bilateral somatosensory inputs from the body with input from other sensory systems
F)Function-Depends primarily on proprioceptive inputs and is active when action is self-initiated
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37
Match the brain structure to the function.
-Structure- Prefrontal cortex
A)Function-Plays major role in planning and execution of coordinated movement; regulates timing and force of movements
B)Function-Plays major role in setting goals; active when we perform
C)Function-Active when movement occurs in response to external events
D)Function-Initiates complex movement; active during completion of movement
E)Function-Major site of convergence of bilateral somatosensory inputs from the body with input from other sensory systems
F)Function-Depends primarily on proprioceptive inputs and is active when action is self-initiated
-Structure- Prefrontal cortex
A)Function-Plays major role in planning and execution of coordinated movement; regulates timing and force of movements
B)Function-Plays major role in setting goals; active when we perform
C)Function-Active when movement occurs in response to external events
D)Function-Initiates complex movement; active during completion of movement
E)Function-Major site of convergence of bilateral somatosensory inputs from the body with input from other sensory systems
F)Function-Depends primarily on proprioceptive inputs and is active when action is self-initiated
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38
Match the brain structure to the function.
-Structure-Areas 5 and 7
A)Function-Plays major role in planning and execution of coordinated movement; regulates timing and force of movements
B)Function-Plays major role in setting goals; active when we perform
C)Function-Active when movement occurs in response to external events
D)Function-Initiates complex movement; active during completion of movement
E)Function-Major site of convergence of bilateral somatosensory inputs from the body with input from other sensory systems
F)Function-Depends primarily on proprioceptive inputs and is active when action is self-initiated
-Structure-Areas 5 and 7
A)Function-Plays major role in planning and execution of coordinated movement; regulates timing and force of movements
B)Function-Plays major role in setting goals; active when we perform
C)Function-Active when movement occurs in response to external events
D)Function-Initiates complex movement; active during completion of movement
E)Function-Major site of convergence of bilateral somatosensory inputs from the body with input from other sensory systems
F)Function-Depends primarily on proprioceptive inputs and is active when action is self-initiated
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39
Match the brain structure to the function.
-Structure-Basal ganglia
A)Function-Plays major role in planning and execution of coordinated movement; regulates timing and force of movements
B)Function-Plays major role in setting goals; active when we perform
C)Function-Active when movement occurs in response to external events
D)Function-Initiates complex movement; active during completion of movement
E)Function-Major site of convergence of bilateral somatosensory inputs from the body with input from other sensory systems
F)Function-Depends primarily on proprioceptive inputs and is active when action is self-initiated
-Structure-Basal ganglia
A)Function-Plays major role in planning and execution of coordinated movement; regulates timing and force of movements
B)Function-Plays major role in setting goals; active when we perform
C)Function-Active when movement occurs in response to external events
D)Function-Initiates complex movement; active during completion of movement
E)Function-Major site of convergence of bilateral somatosensory inputs from the body with input from other sensory systems
F)Function-Depends primarily on proprioceptive inputs and is active when action is self-initiated
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