Measuring and Training Speech-Language Pathologists’ Orofacial Cueing: A Pilot Demonstration

Author:

Namasivayam Aravind Kumar12ORCID,Bali Rohan1,Ward Roslyn34,Tieu Krystal Danielle1,Yan Tina1,Hayden Deborah5,van Lieshout Pascal126

Affiliation:

1. Oral Dynamics Lab, Department of Speech-Language Pathology, University of Toronto, Toronto, Ontario, Canada

2. Toronto Rehabilitation Institute, Toronto, Canada

3. Department of Paediatric Rehabilitation, Princess Margaret Hospital for Children, WA, Australia

4. Faculty of Medicine, School of Paediatrics and Child Health, Dentistry and Health Sciences, The University of Western Australia, Perth, WA, Australia

5. The PROMPT Institute, Santa Fe, New Mexico, USA

6. Rehabilitation Sciences Institute, University of Toronto, Toronto, Ontario, Canada

Abstract

Tactile-kinesthetic-proprioceptive (TKP) input used to facilitate speech motor control is considered an active ingredient within speech motor interventions. Objective metrics identifying skill level differences across speech-language pathologists (S-LP) providing TKP cues are crucial for monitoring treatment delivery fidelity. The study examined three kinematic measures indicating accuracy and consistency of TKP inputs by 3 S-LPs with varying experience levels (S-LP 1: novice; S-LP 2 and S-LP 3: advanced). Confidence interval measures were used to compare the accuracy of jaw movement amplitudes of the vowel /a/ made by a model participant versus S-LPs giving the TKP input. Generalised Orthogonal Procrustes Analysis (GPA) and cyclic Spatial Temporal Index (cSTI) were used to determine movement consistency. Results revealed passive jaw excursions induced by S-LP 2 and 3 to be not statistically significant from the model participant’s active jaw movements. cSTI values decreased with advanced level of experience (19.28, 12.14, and 9.33 for S-LP 1, S-LP 2, and S-LP 3, respectively). GPA analyses revealed a similar pattern for S-LPs with more experience demonstrating lower mean RMS values (0.22, 0.03, and 0.11 for S-LP 1, S-LP 2, and S-LP 3, respectively). Findings suggest kinematic measures adapted from the motor control literature can be applied to assess S-LP skill differences in providing TKP cues.

Publisher

Hindawi Limited

Subject

Health Informatics,Biomedical Engineering,Surgery,Biotechnology

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