Temporomandibular disorders (TMDs) can cause persistent pain in the jaw muscles and limitations in jaw function. Occlusal splints are commonly used to manage these symptoms, but some patients continue to experience pain despite long-term splint use. The purpose of this exploratory study was to describe short-term changes after adding acupuncture to ongoing occlusal splint therapy in adults with persistent myofascial TMD pain. The study included 30 adults who had experienced pain in the masseter and/or temporalis muscles for more than 12 months and had used a maxillary full-arch stabilization splint for at least five consecutive years while remaining symptomatic. All participants continued their occlusal splint therapy and received four 30-minute acupuncture sessions, administered once per week. Assessments were performed before the first acupuncture session and after the fourth session. The assessed outcomes were pain intensity, the amount of pressure required to produce pain in the jaw muscles, maximum mouth opening, and the electrical activity of the masseter and temporalis muscles. All participants received the same intervention, and there was no control or comparison group. The study was therefore designed to characterize short-term changes within participants rather than to determine whether acupuncture was superior to another treatment or whether it directly caused the observed changes.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
30
Participants received four acupuncture sessions administered once per week by a practitioner with specific training and experience in acupuncture. Each session lasted 30 minutes. Sterile, single-use stainless-steel needles measuring 0.25 mm × 25 mm were inserted bilaterally at LI4, ST5, ST6, ST7, and ST8. After skin disinfection with 70% alcohol, needles were inserted perpendicularly to a depth of approximately 10-20 mm, adjusted according to the anatomical site and tissue thickness, with stimulation intended to elicit the de qi sensation. Acupuncture was provided as an adjunct to the participants' ongoing maxillary full-arch stabilization splint therapy.
Faculty of Dental Medicine, university of Porto
Porto, Porto District, Portugal
Change in Pain Intensity Assessed With the 11-Point Numeric Rating Scale
Participants rated their current orofacial pain intensity using an 11-point Numeric Rating Scale ranging from 0 (no pain) to 10 (worst pain imaginable). Change was calculated as the post-intervention score minus the baseline score. Negative change values indicate a reduction in pain intensity.
Time frame: Baseline and week 5.
Change in Pressure Pain Threshold of the Masseter and Temporalis Muscles
Pressure pain threshold was measured in kilopascals (kPa) using a digital algometer applied perpendicularly to the skin over the masseter and temporalis muscles. Participants indicated when increasing pressure was first perceived as painful. Measurements were obtained bilaterally for both muscles. Change was calculated as the post-intervention value minus the baseline value. Positive change values indicate an increased pressure pain threshold and reduced pressure pain sensitivity.
Time frame: Baseline and week 5.
Change in Maximum Mouth Opening
Maximum mouth opening was measured in millimeters using a calibrated ruler placed between the incisal edges of the anterior teeth. Participants were assessed while seated with the Frankfurt plane parallel to the floor. Change was calculated as the post-intervention value minus the baseline value. Positive change values indicate increased maximum mouth opening.
Time frame: Baseline and week 5.
Change in Surface Electromyographic Root Mean Square Amplitude at Mandibular Rest
Surface electromyographic activity was recorded bilaterally from the superficial masseter and anterior temporalis muscles while the mandible was in the postural rest position. Three 5-second recordings were obtained, and the root mean square amplitude was calculated over the interval between 2 and 4 seconds. Change was calculated as the post-intervention value minus the baseline value. Negative change values indicate lower electromyographic amplitude.
Time frame: Baseline and week 5.
Change in Surface Electromyographic Peak Amplitude at Mandibular Rest
Surface electromyographic activity was recorded bilaterally from the superficial masseter and anterior temporalis muscles while the mandible was in the postural rest position. Three 5-second recordings were obtained, and peak amplitude was defined as the highest amplitude recorded during the interval between 2 and 4 seconds. Change was calculated as the post-intervention value minus the baseline value. Negative change values indicate lower peak electromyographic amplitude.
Time frame: Baseline and week 5.
Change in Surface Electromyographic Root Mean Square Amplitude During Maximum Intercuspation
Surface electromyographic activity was recorded bilaterally from the superficial masseter and anterior temporalis muscles during maximum intercuspation. Parafilm M was positioned bilaterally in the molar region, and participants performed a 5-second maximum voluntary contraction. Three recordings were obtained, and the root mean square amplitude was calculated over the interval between 2 and 4 seconds. Change was calculated as the post-intervention value minus the baseline value.
Time frame: Baseline and week 5.
Change in Surface Electromyographic Peak Amplitude During Maximum Intercuspation
Surface electromyographic activity was recorded bilaterally from the superficial masseter and anterior temporalis muscles during maximum intercuspation. Parafilm M was positioned bilaterally in the molar region, and participants performed a 5-second maximum voluntary contraction. Three recordings were obtained, and peak amplitude was defined as the highest amplitude recorded during the interval between 2 and 4 seconds. Change was calculated as the post-intervention value minus the baseline value.
Time frame: Baseline and week 5.
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