Possible Factors Influencing /R/ Production Ability In Children
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Transcript Possible Factors Influencing /R/ Production Ability In Children
By: Jill Vogt
Eastern Illinois University
Faculty Chairs: Rebecca Throneburg,
PhD., CCC-SLP and Beth Bergstrom,
M.S., CCC-SLP
Auditory Discrimination/Image for /r/
◦ Poor auditory discrimination skills between /r/, /w/, and
/l/ (Aungst & Frick, 1964).
◦ Poor auditory image for how a correct /r/ should sound
(Aungst & Frick, 1964; Shuster, 1998; Hoffman, Stager,
& Daniloff, 1983).
Sub-Types of Errors
◦ Possible subtypes based on the nature of speech sound
errors – Shriberg Type 1 or Type 2 (Shriberg, 1980).
◦ Clinical implications from Marshalla (2007) suggested
some children misarticulate /r/ due to incorrect
articulator placement of the tongue, lips, and/or jaw.
Foundational motor skills require stabilization/isolation.
McNutt (1977) investigated oral-sensory motor
skills of children who misarticulate /r/
compared to children with normal articulation.
◦ The investigator reported that children who
misarticulated /r/ had:
fewer syllables produced per second on syllable repetition
tasks revealing deficient oral alternate motion rates
sensory discrimination deficits that resulted in sensory
motor difficulties
McNutt suggested that /r/ articulation disorders may not
simply be a functional articulation disorder.
1) Is there a difference in oral-motor skills
and discrimination skills between children
with typical articulation, children with /r/
errors who are stimulable for correct /r/, and
children with /r/ errors who are not
stimulable for /r/?
2) Is a difference in the number and type of other
speech errors between children who are and are not
stimulable for /r/ production?
Typical (T)
N=9
R-Errors but
Stimulable (RS)
N=8
R-ErrorsNonstimulable
(RNS) N=13
Significant
Difference
Age
9.51 yrs
7.92-12.00
9.69 yrs
7.00-11.50
8.59 yrs
7.33-12.33
NS
Past Speech Therapy
None
4.75 yrs
1-6 yrs
3.08 yrs
1-7 yrs
Peabody Picture
Vocabulary Test
117.50
94-135
113.38
96-130
102.67
93-135
NS
Goldman-Fristoe
Test of Articulation
105.33
101-108
85.89
65-103
78.54
52-87
p<.001
T>RS & RNS
R-Accuracy on World
of R Word Level
Screening
All 100%
44%
3-100%
3%
0-7%
p<.001
T>RS & RNS
RS>RNS
R-Accuracy in
Conversational
All 100%
35%
0-76%
2%
0-7%
Speech Sound
Discrimination and
Awareness for /r/
◦ An informal discrimination
task was administered to
evaluate the participants
ability to discriminate
/r/ presence in words
Word placement of /r/ (I,M,F)
Correctness of /r/ from
recordings of investigator
Shriberg’s (1980) liquids,
glides, vowel assessment
◦ (Type 1/Type 2 Errors)Number and type of additional
speech sound errors
(Shriberg’s 1980 speech tasks)
Structure and Function of
the Oral Mechanism
◦ The Marshalla Oral
Sensorimotor Test (MOST)
was administered, along with
informal supplementary tasks
developed by the current
investigator.
Tongue Tasks
Jaw Tasks
Lip Tasks
Oscillation Tasks
A protocol for obtaining
Maximum Performance Tasks
developed by Thoonen et al.
(1999) was administered to
evaluate maximum duration
tasks and rate of syllable
repetition tasks.
Maximum Duration (ah, mama)
Maximum Fricative Duration (f,s,z)
Monosyllable Repetition Rate
(papapapa, tatatata, kakaka)
Trisyllable Repetition Rate and
Accuracy (pataka- at least 5 with
accurate place)
Accurate /pataka/
Inaccurate /pataka/
100
95
Typical
90
R-Stimulable
85
R-Nonstimulable
80
75
70
Total
/r/
/r/ Word
/r/
Discrim
Presence
Place Task
Accuracy
Test
Task
Task
100
/r/ Stimulable
95
/r/ Nonstimulable
90
85
80
75
70
Shriberg
Shriberg
Shriberg
Shriberg
/l/
/w/
/j/
Vowel
accruacy
accuracy
accuracy
accuracy
• Children in the
Stimulable Group
produced 0-3 (M=
1.00) additional
phonemes in error
on the GFTA
• Children in the
Nonstimulable
Group produced 07 (M= 1.67)
additional
phonemes in error
on the GFTA
Typical
100
95
90
85
80
75
70
65
60
55
50
Total MOST
plus
Supplemental
Accuracy
/r/ Stimulable
Tongue Tasks
Jaw Tasks
/r/ Nonstimulable
Lip Tasks
Oscillation
Tasks
5
Typical
/r/ Stimulable
Seconds
4
2
1
/r/ Nonstimulable
0
5
Monosyllable Trisyllable
4
Rep Rate
3
2
1
0
Maximum
Maximum
Phonation
Fricative
Duration
Duration
Percent Accuracy
Seconds
3
Rep Rate
100
90
80
70
60
50
40
30
20
10
0
PaTaKa Accuracy
80
Typical
70
Stimulable/r/
60
Nonstimulable/r/
50
40
30
20
10
0
No Oral Motor
Difficulty
1 Indication
More than 1
O-M Difficulty Indication O-M
Difficulty
The data supports previous research.
◦ Shriberg (1980) & Marshalla (2007) suggested some
children with /r/ errors used exaggerated jaw
movements and had trouble holding the jaw stable.
◦ McNutt (1977) & Marshalla (2007) suggested that
children with /r/ articulation difficulties were
different based on their oral-motor skills.
(Slower syllable repetition rate)
◦ Shriberg (1980) suggested children are either Type
1 or Type 2 based on type of speech sound errors.
The data suggest
The main suggestion is that a thorough assessment should
be administered to a child with /r/ difficulties.
◦ Some children with /r/ errors have subtle oral-motor deficits
(planning/accuracy ptk, stabilization, tongue movements)
◦ There may be subgroups of children with /r/ errors who have
different patterns of strengths and weaknesses.
◦ The assessor should be aware of those foundational skills
(stabilization, isolation, and disassociation).
◦ The assessor should look for patterns of strengths and
weaknesses for each individual /r/ client.
Also, make sure the assessor is aware of the child’s oral-motor skills.
For example does the child have difficulties with discrimination of /r/,
planning control for articulators, tongue and jaw disassociation.
Further research on the impact of oral-motor skills on
children’s abilities to produce a correct /r/ is needed.
Aungst, L. F. & Frick, J. V. (1964). Auditory discrimination ability
and consistency of articulation of /r/. Journal of Speech and
Hearing Disorders, 29, 76-84.
Dunn., L, & Dunn., D. (2007). Peabody Picture Vocabulary Test,
Fourth Edition (PPVT-4). Minneapolis, MN: Pearson, Inc.
Goldman, R., & Fristoe, M. (2000). Goldman-Fristoe Test of
Articulation, Second Edition (GFTA-2). Circle Pines, MN: American
Guidance Service, Inc.
Hoffman, P. R., Stager, S., & Daniloff, R. G. (1983). Perception
and production of misarticulated /r/. Journal of Speech and
Hearing Disorders, 48, 210-215.
Marshalla, P. (2004). Oral-motor techniques in articulation &
phonological therapy. Kirkland, WA: Marshalla Speech and
Language.
Marshalla, P. (2007). Successful /r/ therapy. Kirkland, WA:
Marshalla Speech and Language.
Marshalla, P. (2007). Marshalla Oral Sensorimotor Test.
Greenville, SC: Super Duper Publications.
McNutt, J. C. (1977). Oral sensory of motor behaviors of children
with /s/ or /r/ misarticulations. Journal of Speech and Hearing
Research, 20, 694-703.
Ristuccia, C. (2006). The Entire World of R Advanced Screening.
Tybee Island, GA: Say It Right.
Secord, W., & Shine, R. (1997). Secord Contextual Articulation
Test (S-CAT) Storytelling Probes of Articulation Competence.
Sedona, AZ: Red Rock Educational Publications.
Shriberg, L. D. (1980). An intervention procedure for children
with persistent /r/ errors. Language Speech Hearing Services in
Schools, 11, 102-110.
Shuster, L. I. (1998). The perception of correctly and incorrectly
produced /r/. Journal of Speech, Language, and Hearing
Research, 41, 941-950.
Thoonen, G., Maassen, B., Gabreels, F., Schreuder, R. (1999).
Validity of maximum performance tasks to diagnose motor
speech disorders in children. Journal of Clinical Linguistics and
Phonetics, 13, 1-23.