Investigation and treatment of central nervous system dysfunction in chronic pelv
Investigation and treatment of central nervous system dysfunction in chronic pelv
批准号:
7739882
负责人:
Felipe Fregni
金额:
$0.53万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-15 至 2009-09-30
关键词:
AbdomenAbsenteeismAccountingActivities of Daily LivingAddressAftercareAmygdaloid structureAnalgesicsAnteriorAnti Inflammatory AnalgesicsAnxietyAreaAsthmaBack PainBiological Neural NetworksBrainChronicClinicalCognitiveCutaneousDataDiseaseDouble-Blind MethodFacilities and Administrative CostsFunctional disorderFundingGenerationsGlutamatesGrantHandHealthcareHigh PrevalenceHippocampus (Brain)Hyperactive behaviorHyperalgesiaInflammationInjuryIntakeInterstitial CystitisInterventionInvestigationLightMagnetic Resonance ImagingMagnetic Resonance SpectroscopyMeasuresMechanicsMedicalMethodsMuscle relaxantsNeuraxisNeuronsNeurotransmittersOperative Surgical ProceduresOrganPainPain ThresholdPancreatitisPathway interactionsPatientsPelvic PainPerceptionPerformancePeripheralPhasePilot ProjectsPlacebosPrevalenceProcessProductivityProtocols documentationQuality of lifeRandomized Clinical TrialsRandomized Controlled Clinical TrialsRefractoryReportingRoleSafetySensorySomatosensory CortexStructureSymptomsTechniquesTestingThalamic NucleiVisceral painVisual Analogue Pain ScaleWomanWorkallodyniabasecentral sensitizationchronic pancreatitischronic pelvic paincingulate cortexcingulate gyruscohortcomparative efficacycutaneous allodyniadepressionindexinginsightneurocognitive testneuroimagingneuromechanismnovelnovel therapeutic interventionpainful bladder syndromepublic health relevancerelating to nervous systemrepetitive transcranial magnetic stimulationresponsetool
中文摘要
描述(由申请方提供):本方案的目的是研究与慢性骨盆疼痛相关的中枢神经系统功能障碍,以及使用神经调节工具-经颅直流电刺激(tDCS)-治疗这种疾病的可能的新型治疗方法。这项研究很重要,因为慢性盆腔疼痛会对日常生活活动和一般健康产生相当大的影响,从而导致焦虑和抑郁。此外,这种疾病的患病率相对较高-美国女性慢性盆腔疼痛的患病率为3.7%,与其他慢性疾病如哮喘(3.8%)和背痛(4.1%)的患病率相当。由于慢性盆腔疼痛往往是难治性的医疗和外科手术,最近的证据表明,中枢神经系统功能障碍-如在边缘区(前扣带皮层)-在慢性盆腔疼痛,我们假设,慢性盆腔疼痛的病理生理与疼痛相关的神经网络的异常活动。这一假设是基于我们的试点数据,显示无创脑刺激(tDCS)诱导这些患者的疼痛显着减少,也基于我们的NIDDK-R 03资助的研究,我们表明,另一种无创脑刺激技术减少了胰腺炎引起的慢性内脏痛的疼痛,并且在这些患者中发现了疼痛相关神经网络的变化(如磁共振波谱所示)。具体而言,我们将通过一项II期、双盲、假对照、平行、随机临床试验研究tDCS在减轻慢性盆腔疼痛患者(患有膀胱疼痛综合征或间质性膀胱炎)队列中疼痛的疗效,并通过一系列神经认知测试评估该干预措施的安全性。此外,我们将评估这种治疗对异常性疼痛和痛觉过敏现象的影响,这是已知的中枢致敏的替代品。最后,我们将调查这些患者的中枢神经功能障碍,使用磁共振波谱技术,可以测量脑代谢物在一个非侵入性和可靠的方式。我们假设我们提出的干预措施将减少这些患者扣带回前部的病理性过度活跃。这项研究的结果可能代表了一个重要的一步,建立一个新的治疗方法,慢性盆腔疼痛,也将揭示其病理生理。公共卫生相关性:慢性骨盆疼痛导致生活质量下降,每年直接医疗费用超过28亿美元,并具有与缺勤相关的间接成本,降低生产力,并在工作时阻碍表现。患有这种痛苦的、使人衰弱的病症的患者通常对当前的药物治疗是难治的。因此,我们建议研究一种新的治疗干预,使用非侵入性脑刺激,此外,调查这种疾病的神经基础,使用磁共振成像-本研究的结果将因此提供深入了解慢性盆腔疼痛的病理生理学。
英文摘要
DESCRIPTION (provided by applicant): The purpose of this protocol is to investigate the central nervous system dysfunction that is associated with chronic pelvic pain and also a possible novel treatment using a neuromodulatory tool - transcranial direct current stimulation (tDCS) - for this condition. This study is important as chronic pelvic pain can have a considerable impact in terms of interference with daily life activities and general well being which results in anxiety and depression. In addition, this condition has a relatively high prevalence - the prevalence rate of chronic pelvic pain in women in US is 3.7%, comparable with the numbers for other chronic conditions such as asthma (3.8%) and back pain (4.1%). Because chronic pelvic pain is often refractory to medical and surgical procedures and recent evidence suggests a central nervous system dysfunction - such as in the limbic areas (anterior cingulate cortex) - in chronic pelvic pain, we hypothesize that the pathophysiology of chronic pelvic pain is associated with abnormal activity in pain-related neural networks. This hypothesis is based on our pilot data showing that noninvasive brain stimulation (tDCS) induces a significant reduction in pain in these patients and also on our NIDDK-R03 funded study in which we showed that another technique of noninvasive brain stimulation reduces pain in chronic visceral pain due to pancreatitis and that changes in pain-related neural networks (as indexed by magnetic resonance spectroscopy) are found in these patients. Specifically, we will investigate the efficacy of tDCS in reducing pain in a cohort of chronic pelvic pain patients (with painful bladder syndrome or interstitial cystitis) via a phase-II, double-blinded, sham- controlled, parallel, randomized clinical trial and also assess the safety of this intervention via a battery of neurocognitive tests. Furthermore we will assess the impact of this treatment on the phenomenon of allodynia and hyperalgesia, which are known to be surrogates of central sensitization. Finally we will investigate the central neural dysfunction in these patients using the technique of magnetic resonance spectroscopy that can measure brain metabolites in a noninvasive and reliable manner. We hypothesize that our proposed intervention will reduce the pathological hyperactivity in the anterior cingulate gyrus in these patients. The results of this study may represent an important step for establishing a novel therapeutic approach for chronic pelvic pain and will also shed light on its pathophysiology. PUBLIC HEALTH RELEVANCE: Chronic pelvic pain results in a reduced quality of life, accounts for more than $2.8 billion dollars in direct annual healthcare expenses, and has indirect costs associated with absenteeism, reduced productivity, and hindered performance while at work. Patients who suffer from this painful, debilitating condition are often refractory to current pharmacological therapies. We therefore propose to investigate a novel therapeutic intervention using noninvasive brain stimulation and, in addition, investigate the neural basis of this disorder using magnetic resonance imaging - the results of this study will therefore provide insights into understanding the pathophysiology of chronic pelvic pain.
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