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临床试验/NCT06358287
NCT06358287已完成不适用

Neural Correlates of Auriculotherapy

Keith M. Vogt, MD, PhD2 个研究点 分布在 1 个国家目标入组 10 人开始时间: 2021年7月15日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
发起方
入组人数
10
试验地点
2
主要终点
Default Mode Network (DMN)-to-Anterior Cingulate Cortex (ACC) connectivity

研究概览

简要总结

Chronic pain continues to be a major health issue, creating a significant societal burden, as it is an independent risk factor for opioid use disorder (OUD) and deaths. Acute pain episodes can often engender OUD due to lack of effective strategies to treat pain and prevent the transition to chronic pain. One potential non-opioid method for pain relief is auriculotherapy (AT), where acupuncture-like treatment is administered to the ear. The objective of this pilot study is to illustrate that AT-related brain effects can be found using functional connectivity MRI (fcMRI) in patients with low back pain.

详细描述

Chronic pain continues to be a major health issue, creating a significant societal burden, as it is an independent risk factor for opioid use disorder (OUD) and deaths. Acute pain episodes can often engender OUD due to lack of effective strategies to treat pain and prevent the transition to chronic pain. One potential non-opioid method for pain relief is auriculotherapy (AT), where acupuncture-like treatment is administered to the ear. This technique has recently been applied, with analgesia lasting for weeks, to patients with acute peri-operative pain at Shadyside hospital, but the mechanism of action of AT remains unclear.

Our overall objective is the determine the mechanism that drives AT-induced pain relief and utilize this tool as an adjuvant in our efforts to reduce the nation's reliance on opioids for pain relief. The objective of this pilot study is to illustrate that AT-related brain effects can be found with functional MRI (fMRI) for low back pain, with which the investigators have much experience. Our hypothesis is that AT reduces pain score and the abnormal brain connectivity associated with low back pain. This will identify areas of brain activity that correlate with symptom improvement after AT, allow hypothesis generation for further testing, and provide the data necessary for power calculations for an appropriately powered study in subsequent NIH HEAL grant applications.

Aim 1. Identify brain activity changes after treatment with AT. The investigators previously characterized the resting state brain activity in patients with chronic low back pain and identified key brain areas with connectivity changes related to pain state. Guided by that study, the investigators will determine if AT causes changes in resting state brain activity by comparing scans acquired before and after AT. Specifically, connectivity between the default mode network (DMN) and the insula and anterior cingulate cortex (ACC) will be examined. Changes in these areas will support the theory that AT's modulation of neural processing can be objectively measured and further characterized in a larger study.

Aim 2. Determine if detailed psychometric pain assessments demonstrate changes across AT therapy. Detailed information regarding the change in pain scores after AT are not available. Patients will complete the Patient-Reported Outcome Measurement Information System (PROMIS) Questionnaire-29 and the global impression of change questionnaires, among others, prior to and after AT treatment. This aim will also illustrate expertise in AT for chronic conditions, complimenting current efforts to demonstrate the same in acute pain after shoulder surgery. The combination of this data with the on-going acute pain study will provide the preliminary psychometric data necessary to support future NIH funding.

Aim 3. Gain insight into whether placebo mechanisms play a role in AT's efficacy. Complimentary medicine treatments such as AT are often suggested to work via placebo mechanisms. Recent work suggests that the connectivity of the right midfrontal gyrus (r-MFG) predicts the response to placebo therapy. The investigators will correlate the pain score response to AT treatment with r-MFG connectivity to determine if greater pain reduction is seen in those with greater r-MFG activity, suggesting overlap with circuits underlying placebo analgesia.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Treatment
盲法
None

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Age 18 and above.
  • Experiencing low back pain for > 1 month and seeking treatment.
  • Literate for reading and writing in English, decision competent, willing and able to provide written informed consent, and able to complete the study's schedule of assessments.

排除标准

  • Subjects under 18 years of age.
  • History of claustrophobia.
  • Having non-MRI safe metallic or foreign objects in their body.
  • History of dementia.
  • History of sensory or motor deficits that preclude participation in pain fMRI.
  • History of clinically unstable systemic illness that is judged to interfere with the study.
  • Pregnancy or the intent to become pregnant during the study.

结局指标

主要结局

Default Mode Network (DMN)-to-Anterior Cingulate Cortex (ACC) connectivity

时间窗: Day 3 of participation

Group average difference in connectivity will be calculated as pre-treatment vs. post-treatment statistical contrasts. Connectivity change will have a threshold at the connection level with p \< 0.001. In this framework, a positive T-Score indicates greater connectivity before treatment (a decrease in connectivity after treatment).

次要结局

  • Brief Pain Inventory (BPI) Severity Scores MRI #1(Day 3 of participation)
  • BPI Pain Severity Scores MRI #2(Day 3 of participation)
  • General Anxiety Disorder-7 (GAD-7) Scoring(Day 3 of participation)

研究者

发起方
Keith M. Vogt, MD, PhD
申办方类型
Other
责任方
Sponsor Investigator
主要研究者

Keith M. Vogt, MD, PhD

Associate Professor

University of Pittsburgh

研究点 (2)

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