Stanford Univeristy Medical Center
Stanford, California, 94305, United States
NCT Number: NCT03735004
Postoperative pain after major surgery for obstructive sleep apnea (OSA), such as palatopharyngoplasty (PPP) and maxillomandibular advancement (MMA) is moderate-to-severe, and may persist for weeks. Control of this pain may be difficult, because OSA patients are very sensitive to traditional opioid pain medications, and their side effects. Poorly controlled pain slows down patients' recovery after surgery, including a return to normal daily activities and work, and may also delay wound healing.
This study will investigate whether pain relief and recovery after surgery may be improved with the application of a weak electrical current to the skin of the patient's head (transcranial electrostimulation, TES). The TES works by blocking pain in the central nervous system through multiple mechanisms, which result in non-pharmacological pain relief, without drug-associated side effects.
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Notify Me18 year–70 year
All sexes
Interventional
Not applicable
Stanford, California, 94305, United States
The incidence and severity of postoperative pain in patients undergoing major airway surgery for OSA, such as palatopharyngoplasty (PPP) and maxillomandibular advancement (MMA) is high, and may persist for days, significantly contributing to patient's morbidity. High doses of intravenous and oral opioids are frequently required to achieve adequate pain relief. Yet, the increased sensitivity of OSA patients to opioid analgesics, and associated high risk of postoperative respiratory depression and upper airway obstruction limit the traditional therapeutic options, frequently making pain control after PPP and MMA surgery suboptimal.
The effect of significant postoperative pain on surgical outcomes is multifold. Poorly controlled post-surgical pain increases patient morbidity, impairs wound healing, and negatively affects patient recovery and functional outcomes, such as ambulation, a resumption of a normal oral intake, a return to normal daily activities, a return to work, and others. Side effects of opioid medications, such as urinary retention, constipation, nausea, vomiting, dizziness, and itching may further adversely affect recovery and cause patient dissatisfaction with the surgical procedure.
The development of the new, effective analgesic modalities, is therefore highly desirable for OSA surgical patients, and particularly those undergoing PPP and MMA surgeries. Transcranial electrostimulation (TES) is a non-invasive brain stimulation technique that employs administration of a weak electrical current (≤ 5 mA) through the electrodes positioned on the skin of the patient's head. TES is a safe procedure, with a low risk of associated, minor side effects It is widely believed that TES with combined direct (DC) and alternating (AC) current (TES DC:AC) triggers the release of endogenous opioids and other central neurotransmitters (e.g. norepinephrine) that interrupt nociceptive processing. The investigator's previous studies have demonstrated that TES DC:AC produces quickly evolving, effective non-pharmacological analgesia, without associated respiratory depression or other opioid-induced side effects. If analgesic effect of TES can be demonstrated in this study, the TES may become an attractive adjunct for postoperative analgesic treatment for OSA patients, allowing for improved quality of analgesia and enhanced recovery.
Moreover, demonstrating TES analgesic effect may facilitate its widespread use as a non-pharmacological analgesic adjunct postoperatively, especially in elderly patients, who have a high incidence of associated OSA and sensitivity to systemic opioids. The incidence of OSA in general surgical population reaches over 20%.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Patients with moderate-to-severe OSA, presenting for PPP and MMA surgeries. All patients will be American Society of Anesthesiology (ASA) physical status II-III. The subjects should understand informed consent and study instructions.
Exclusion criteria
Transcranial electrostimulation (TES) with combined direct (DC) and alternating (AC) current, or TES with DC only will be administered through the skin electrodes positioned on the patient's head
Time frame: Recorded during a 20 min TES session administered for first moderate-to-severe postoperative pain in the recovery room
IV morphine milligram equivalents
Time frame: Recorded during a 20 min TES session administered for first moderate-to-severe postoperative pain in the recovery room
VAS pain scores (Pain measured using 11-point visual analog scale 0-10, 0 no pain, 10 worst pain imaginable).
Time frame: During the recovery room stay until "floor ready" (on average 2.5 hours)
IV morphine milligram equivalents
Time frame: During the recovery room stay until "floor ready" (on average 2.5 hours)
VAS pain scores (Pain measured using 11-point visual analog scale 0-10, 0 no pain, 10 worst pain imaginable).
Time frame: From "floor ready" until midnight of the day after surgery (POD#0, (postoperative day #0).
PO morphine milligram equivalents
Time frame: From POD#1 through the 1st postoperative week after surgery.
PO morphine milligram equivalents
Time frame: Day of surgery (postoperative day #0, POD#0).
Time frame: Day of surgery to starting a soft diet (up to 7 days postoperative)
Time frame: Day of surgery to return to daily activities to postoperative week 4.
Time frame: From the day of surgery to return to work to postoperative week 4.
Time frame: Baseline (before surgery) to postoperative week 4.
Validated multidimensional questionnaire assessing recovery profile. Each scale is scored from 0-10, overall score from 0 to 150. The higher scores indicate better recovery.
Stanford University
Other
The Effects of Transcranial Electrostimulation (TES) on Postoperative Pain and Functional Patient Outcomes After Surgery for Obstructive Sleep Apnea Syndrome
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