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2. Differential Diagnosis of a Pharyngeal Fricative and Therapeutic Monitoring of Velopharyngeal Function Using Magnetic Resonance Imaging.

3. Where is the Care? Identifying the Impact of Rurality on SLP Caseloads and Treatment Decisions for Children with Cleft Palate.

4. A Computational Model Reveals How Varying Muscle Activation in the Lateral Pharyngeal Wall and Soft Palate Differentiates Velopharyngeal Closure Patterns.

5. Acute Laryngeal Injury in Patients Undergoing Airway Screening at a Long‐Term Acute Care Hospital.

6. Incorporating Velopharyngeal MRI into the Clinical Decision-Making Process for a Patient Presenting with Velopharyngeal Dysfunction Following a Failed Palatoplasty.

8. Effect of Motor-Based Speech Intervention on Articulatory Placement in the Treatment of a Posterior Nasal Fricative: A Preliminary MRI Study on a Single Subject

9. Continuing Education Needs of Speech-Language Pathologists for Assessing and Treating Children With Cleft Palate: A National Analysis Across Areas of Varying Population Density.

11. Magnetic Resonance Imaging for Assessing Velopharyngeal Function: Current Applications, Barriers, and Potential for Future Clinical Translation in the United States.

12. Simulation of Velopharyngeal Biomechanics Identifies Differences in Sphincter Pharyngoplasty Outcomes: A Matched Case–Control Study.

17. sj-docx-1-cpc-10.1177_10556656221123916 - Supplemental material for Magnetic Resonance Imaging for Assessing Velopharyngeal Function: Current Applications, Barriers, and Potential for Future Clinical Translation in the United States

18. Utilization of 3D MRI for the Evaluation of Sphincter Pharyngoplasty Insertion Site in Patients With Velopharyngeal Dysfunction.

21. Understanding Access to Care: Factors Influencing Patient Attendance at Craniofacial Speech Evaluations

23. Does the Type of MRI Sequence Influence Perceived Quality and Measurement Consistency in Investigations of the Anatomy of the Velopharynx?

32. Can Dynamic MRI Be Used to Accurately Identify Velopharyngeal Closure Patterns?

33. Changes in the Height of Velopharyngeal Closure Relative to the Cervical Spine From Infancy Through Adolescence in Patients With Cleft Palate.

35. Levator Veli Palatini Muscle Ratio Is a Clinically Significant Anatomic Predictor for Velopharyngeal Surgical Need.

36. Where is the Care? Identifying the Impact of Rurality on SLP Caseloads and Treatment Decisions for Children with Cleft Palate.

37. Incorporating Velopharyngeal MRI into the Clinical Decision-Making Process for a Patient Presenting with Velopharyngeal Dysfunction Following a Failed Palatoplasty.

38. Achieving Clinical Success in Nonsedated Velopharyngeal MRI: Insights for Optimal Data Quality & Effective Patient Selection.

39. Magnetic Resonance Imaging for Assessing Velopharyngeal Function: Current Applications, Barriers, and Potential for Future Clinical Translation in the United States.

40. Simulation of Velopharyngeal Biomechanics Identifies Differences in Sphincter Pharyngoplasty Outcomes: A Matched Case-Control Study.

41. Utilization of 3D MRI for the Evaluation of Sphincter Pharyngoplasty Insertion Site in Patients With Velopharyngeal Dysfunction.

42. Does the Type of MRI Sequence Influence Perceived Quality and Measurement Consistency in Investigations of the Anatomy of the Velopharynx?

43. Can Dynamic MRI Be Used to Accurately Identify Velopharyngeal Closure Patterns?

44. Changes in the Height of Velopharyngeal Closure Relative to the Cervical Spine From Infancy Through Adolescence in Patients With Cleft Palate.

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