Spinal manipulation and mobilization forces delivered treating sciatica: a case report

IF 2.6 3区 医学 Q2 BEHAVIORAL SCIENCES
Theodore B. Siciliano, Maruti R. Gudavalli, Ralph Kruse
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Abstract

IntroductionAccurately measuring the forces applied during spinal manipulation and its biomechanical effects on the spine are critically important in current research. This single case report discusses the potential benefit of accurately monitoring manipulative forces in treating low back pain with sciatica. The type of force-based spinal manipulation used to manage this case was Cox Technic flexion distraction decompression (CTFDD) spinal manipulation care, along with other ancillary modalities.MethodsThe treatment plan, in this case, was primarily force-based CTFDD, equal-force bi-directional traction (EqFT), pre-modulated electrical muscle stimulation (EMS), infrared light therapy (ILT), and a home stretching and strengthening program.Clinical findingsInitially, the case study patient presented with complaints of left lumbar spine pain, which radiated into the left buttock, down the left leg, accompanied by an inability to dorsiflex the left foot. The patient was concerned with this condition as the left leg pain and left lower extremity motor deficit were having a profound effect on the patient’s ability to perform activities of daily living and work. The patient was recommended to undergo spinal decompression surgery, which the patient did not want, and elected to exhaust all alternative, non-surgical treatments first.Diagnosis, intervention, and outcomesA diagnosis of sciatica with a sequestered disk fragment and left lower extremity motor deficit was rendered through objective physical examination results and a review of a lumbar MRI study. Past interventions included prescription medications, physical rehabilitation, chiropractic, pain management, and neurosurgical consultation. All past interventions prior to initiating CTFDD care provided minimal subjective and/or objective clinical improvement. This patient had a positive clinical outcome from a force-based CTFDD treatment plan along with other modalities consisting of pre-modulated EMS, ILT, and a home stretching and strengthening program.ConclusionForce-based CTFDD spinal manipulation, along with other modalities consisting of pre-modulated EMS, ILT, and a home stretching and strengthening program, has been found to be an alternative, non-surgical treatment for discogenic sciatica. Continued research is needed on force-based CTFDD spinal manipulation to further evaluate the neurological and biomechanical effects of the forces and motion applied to the spine and determine health benefits for the treatment of low back pain.
治疗坐骨神经痛的脊柱手法和动员力:病例报告
导言:在当前的研究中,准确测量脊柱手法时施加的力及其对脊柱的生物力学影响至关重要。本病例报告讨论了在治疗坐骨神经痛腰背痛时准确监测手法作用力的潜在益处。方法该病例的治疗方案主要是基于力的 CTFDD、等力双向牵引(EqFT)、预调制肌肉电刺激(EMS)、红外光疗法(ILT)以及家庭拉伸和增强计划。临床发现最初,病例研究中的患者主诉左腰椎疼痛,疼痛向左臀部和左腿放射,并伴有左脚不能外翻的症状。由于左腿疼痛和左下肢运动障碍严重影响了患者的日常生活和工作能力,因此患者对这一状况非常担忧。诊断、干预和结果通过客观的体格检查结果和腰椎核磁共振成像检查,患者被诊断为坐骨神经痛伴椎间盘碎片嵌顿和左下肢运动障碍。既往的干预措施包括处方药、物理康复、脊椎按摩、疼痛治疗和神经外科会诊。在开始 CTFDD 治疗之前,所有既往的干预措施都只能提供微乎其微的主观和/或客观临床改善。该患者在接受以力量为基础的 CTFDD 治疗计划和其他方式(包括预调制 EMS、ILT 以及家庭伸展和强化计划)后,获得了积极的临床疗效。结论以力量为基础的 CTFDD 脊柱手法治疗和其他方式(包括预调制 EMS、ILT 以及家庭伸展和强化计划)被认为是治疗椎间盘源性坐骨神经痛的一种替代性非手术疗法。需要继续对基于力的 CTFDD 脊柱手法进行研究,以进一步评估施加在脊柱上的力和运动对神经和生物力学的影响,并确定治疗腰背痛的健康益处。
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来源期刊
Frontiers in Integrative Neuroscience
Frontiers in Integrative Neuroscience Neuroscience-Cellular and Molecular Neuroscience
CiteScore
4.60
自引率
2.90%
发文量
148
审稿时长
14 weeks
期刊介绍: Frontiers in Integrative Neuroscience publishes rigorously peer-reviewed research that synthesizes multiple facets of brain structure and function, to better understand how multiple diverse functions are integrated to produce complex behaviors. Led by an outstanding Editorial Board of international experts, this multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide. Our goal is to publish research related to furthering the understanding of the integrative mechanisms underlying brain functioning across one or more interacting levels of neural organization. In most real life experiences, sensory inputs from several modalities converge and interact in a manner that influences perception and actions generating purposeful and social behaviors. The journal is therefore focused on the primary questions of how multiple sensory, cognitive and emotional processes merge to produce coordinated complex behavior. It is questions such as this that cannot be answered at a single level – an ion channel, a neuron or a synapse – that we wish to focus on. In Frontiers in Integrative Neuroscience we welcome in vitro or in vivo investigations across the molecular, cellular, and systems and behavioral level. Research in any species and at any stage of development and aging that are focused at understanding integration mechanisms underlying emergent properties of the brain and behavior are welcome.
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