New York University
Childhood apraxia of speech (CAS) is a complex motor speech disorder that significantly limits a child's ability to communicate in daily activities, with difficulties often persisting into adolescence and adulthood. There is solid evidence that motor-based interventions, such as Dynamic Temporal and Tactile Cueing (DTTC), improve word production in children with CAS. Building on this strong foundation, the next critical step is to extend this work to support functional communication in connected speech, where children with CAS often continue to struggle. There is a critical need for a systematic bridge within the context of treatment from word-level practice to connected speech, as robust word-level gains often fail to generalize to other speaking contexts. This work addresses this gap by transitioning children from word- to phrase-level practice using Dynamic Temporal and Tactile Cueing-Connect (DTTC-Connect), a novel, structured adaptation of DTTC that targets connected speech production. Our approach builds on established DTTC principles while incorporating progression to more complex utterances, offering a developmentally appropriate, research-informed pathway to functional communication. This study is a Phase II randomized controlled trial (RCT) designed to examine the efficacy of DTTC-Connect, a motor-based treatment that includes phrase-level practice to refine connected speech and support communicative participation for children with CAS. The overall objectives of this work are to test the efficacy of DTTC-Connect and document changes in speech motor control at the connected speech level in 68 children with CAS (3;6 - 12;11 years of age) who receive treatment twice a week for 8 weeks (16 sessions). The central hypothesis is that DTTC-Connect will lead to lasting improvements in phrase accuracy, speech intelligibility and speech motor control, ultimately enhancing a child's communicative participation.
The long-term goal of this research is to provide evidence-based treatment guidelines to enhance speech intelligibility and therefore, communicative participation, for children with childhood apraxia of speech (CAS). The overall objectives are to test the efficacy of Dynamic Temporal and Tactile Cueing-Connect (DTTC-Connect) and document changes in speech motor control at the connected speech level, when intervention is provided two times per week for eight weeks. The central hypothesis is that DTTC-Connect will lead to lasting improvements in phrase accuracy, speech intelligibility, and speec…
Inclusion Criteria: 1. Diagnosis of childhood apraxia of speech (CAS). The diagnosis will be made by two speech language pathologists (SLPs) who have extensive experience in the differential diagnosis of CAS. 2. Age between 3;6 and 12;11 years. 3. Normal structure of the oral-peripheral mechanism as determined by a motor speech examination using established lab protocol. 4. Participants must pass a hearing screening conducted at 20 dB SPL at 500, 1000, 2000 and 4000 Hz. 5. Not receiving speech treatment elsewhere over the course of this study, although language, augmentative and alternative c…
DTTC-Connect is a motor-based intervention designed to improve speech accuracy in children with CAS by targeting movement transitions within phrases. Treatment begins with selecting a target phrase identified through dynamic assessment as being within the child's optimal challenge point. Using this initial target, four additional phrases are constructed that systematically build in structural, phonetic, and grammatical complexity to support gradual progression in motor skill. Treatment begins with two-word phrases and follows the first three levels of the DTTC temporal hierarchy: Simultaneous Production → Direct Imitation → Delayed Imitation. The final step is Elicited Production where children produce the target at random intervals in the absence of a prior model. Aligned with standard DTTC, children initially receive maximal support during Simultaneous Production. As accuracy improves, support is faded and the child progresses to less supported levels of production.