Complexity of post-concussion syndrome assessment and management: a case for customizing rehabilitation.

IF 2.9 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Nicholas Moser, Milos R Popovic, Sukhvinder Kalsi-Ryan
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引用次数: 0

Abstract

Background: Post-concussion syndrome is a challenging condition to manage for even the most experienced chronic pain experts. Patients' presentations are heterogeneous with symptoms spanning physical, cognitive and emotional domains. The symptoms reported are often non-specific, making it difficult for health professionals to prescribe effective rehabilitation. The aim of the present study was to examine the effectiveness of a customized rehabilitation program based on subgroup determination following a standardized clinical exam in adults with post-concussion syndrome.

Methods: A total of 16 adults (mean age ± SD, 38.3 ± 12.5 years) with post-concussion syndrome participated in a 6-week rehabilitation program. Participants were recruited from external community concussion clinics around the greater Toronto area, Canada. Participants underwent a comprehensive standardized clinical exam to subgroup the ostensible symptom generators into either autonomic, cervical or vestibulo-ocular. Customized rehabilitation was then prescribed based on their subgroupings. The primary outcome measure was the Rivermead Post-Concussion Questionnaire (RPQ). Secondary outcome measures included the Patient Health Questionnaire-9 (PHQ-9), the Neck Disability Index (NDI), and exercise tolerance as assessed via the Buffalo Concussion Treadmill Test (BCTT).

Results: Following 6 weeks of customized rehabilitation, participants on average experienced a significant and clinically meaningful change with respect to the RPQ-3 and RPQ-13 (p < 0.001). We also observed a significant change in all secondary outcome measures including a reduction in PHQ-9 (p < 0.01), NDI (p < 0.001) and exercise tolerance, expressed as heart rate threshold (p < 0.001).

Conclusion: The standardized exam was feasible and useful in assisting the clinician in prescribing effective rehabilitation. The 6-week customized rehabilitation program demonstrated significant changes in patient-reported persistent post-concussion symptoms and exercise tolerance. The implementation of a customized program based on a standardized exam performed to subgroup the ostensible symptom generators may be key to successful management in this population.

脑震荡后综合征评估和管理的复杂性:一个定制康复的案例。
背景:即使是最有经验的慢性疼痛专家,脑震荡后综合征也是一种具有挑战性的疾病。患者的表现是异质的,症状跨越身体、认知和情绪领域。报告的症状通常是非特异性的,这使得卫生专业人员难以开出有效的康复处方。本研究的目的是检验基于标准化临床检查后亚组确定的成人脑震荡后综合征定制康复方案的有效性。方法:对16例脑震荡后综合征患者(平均年龄±SD, 38.3±12.5岁)进行为期6周的康复治疗。参与者是从加拿大大多伦多地区的外部社区脑震荡诊所招募的。参与者接受了全面的标准化临床检查,将表面上的症状产生者分为自主神经、颈椎或前庭-眼。然后根据他们的亚组进行定制康复治疗。主要观察指标为Rivermead脑震荡后问卷(RPQ)。次要结果测量包括患者健康问卷-9 (PHQ-9)、颈部残疾指数(NDI)和通过布法罗脑震荡跑步机测试(BCTT)评估的运动耐受性。结果:经过6周的定制化康复治疗后,参与者的RPQ-3和RPQ-13平均有显著的临床意义的变化(p)。结论:标准化考试在辅助临床医生处方有效的康复治疗方面是可行的和有用的。为期6周的定制康复计划显示,患者报告的持续性脑震荡后症状和运动耐受性发生了显著变化。实施基于标准化检查的定制方案,对表面症状产生者进行分组,可能是成功管理这一人群的关键。
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来源期刊
BioMedical Engineering OnLine
BioMedical Engineering OnLine 工程技术-工程:生物医学
CiteScore
6.70
自引率
2.60%
发文量
79
审稿时长
1 months
期刊介绍: BioMedical Engineering OnLine is an open access, peer-reviewed journal that is dedicated to publishing research in all areas of biomedical engineering. BioMedical Engineering OnLine is aimed at readers and authors throughout the world, with an interest in using tools of the physical and data sciences and techniques in engineering to understand and solve problems in the biological and medical sciences. Topical areas include, but are not limited to: Bioinformatics- Bioinstrumentation- Biomechanics- Biomedical Devices & Instrumentation- Biomedical Signal Processing- Healthcare Information Systems- Human Dynamics- Neural Engineering- Rehabilitation Engineering- Biomaterials- Biomedical Imaging & Image Processing- BioMEMS and On-Chip Devices- Bio-Micro/Nano Technologies- Biomolecular Engineering- Biosensors- Cardiovascular Systems Engineering- Cellular Engineering- Clinical Engineering- Computational Biology- Drug Delivery Technologies- Modeling Methodologies- Nanomaterials and Nanotechnology in Biomedicine- Respiratory Systems Engineering- Robotics in Medicine- Systems and Synthetic Biology- Systems Biology- Telemedicine/Smartphone Applications in Medicine- Therapeutic Systems, Devices and Technologies- Tissue Engineering
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