在脊髓刺激后,部脊髓损伤中改善了运动功能
Michael Suarez1, David M Gallacher2, David S Jevotovsky3
1Department of Physical Medicine and Rehabilitation Johns Hopkins University Baltimore Maryland USA.
Clinical case reports
|February 4, 2025
概括
脊髓刺激 (SCS) 为脊髓损伤患者提供了希望. 这种疗法显著减少了疼痛和性,从而改善了手臂功能.
科学领域:
- 神经科学是一个神经科学.
- 再生医学是一种再生医学.
- 临床神经学 临床神经学
背景情况:
- 脊髓损伤 (SCI) 在疼痛管理和运动功能恢复方面提出了复杂的挑战.
- 目前治疗SCI症状的治疗选择,如疼痛和有局限性.
- 脊髓刺激 (SCS) 是一种新兴的神经调节技术,用于SCI治疗.
研究的目的:
- 评估脊髓刺激 (SCS) 在治疗脊髓损伤症状方面的有效性.
- 评估SCS对SCI患者疼痛减轻和性的影响.
- 为了确定SCS是否可以导致上肢移动性的功能改善.
主要方法:
- 这项研究涉及一名脊髓损伤患者接受脊髓刺激 (SCS) 治疗.
- 在SCS干预之前和之后,监测疼痛水平和性.
- 评估了上肢功能,以量化移动性和表现的变化.
主要成果:
- 患者报告说,在SCS之后,经历的疼痛显著减少.
- 在SCS治疗后观察到性明显减少.
- 记录了上肢功能的改善,表明增强了移动性.
结论:
- 脊髓刺激 (SCS) 显示出作为脊髓损伤管理的有效疗法的潜力.
- SCS可能缓解SCI的关键症状,包括疼痛和性.
- 这些发现表明,SCS可以促进SCI患者的功能恢复和改善生活质量.
更多相关视频
相关概念视频
Blood and Nerve Supply to the Bones
Bones are dynamic organs that require a rich supply of oxygen and nutrients. Around 5% to 10% of the cardiac output supplies blood to the bones. A typical long bone has three main sources: the nutrient artery, the metaphyseal and epiphyseal arteries, and the periosteal arteries.
Nutrient Artery
The nutrient artery is the main blood vessel that enters the diaphysis via the nutrient foramen. While most long bones have only one nutrient foramen, large bones, such as the femur, may have two. This...
Nutrient Artery
The nutrient artery is the main blood vessel that enters the diaphysis via the nutrient foramen. While most long bones have only one nutrient foramen, large bones, such as the femur, may have two. This...
Neurogenesis and Regeneration of Nervous Tissue
In the CNS, neurogenesis, the birth of new neurons from stem cells, is limited to the hippocampus in adults. In other regions of the brain and spinal cord, neurogenesis is almost non-existent due to inhibitory influences from neuroglia, especially oligodendrocytes, and the absence of growth-stimulating cues. The myelin produced by oligodendrocytes in the CNS inhibits neuronal regeneration. Furthermore, astrocytes proliferate rapidly after neuronal damage, forming scar tissue that physically...
Spinal Cord: Information Processing
The spinal cord is an integral hub for motor and sensory information that enables the brain to communicate with the peripheral nervous system (PNS). This communication consists of relaying sensory data and transmission of motor commands.
Sensory Information Processing
Sensory information processing begins at the sensory receptors located in the skin and other tissues, which detect somatic sensory stimuli such as touch, temperature, or pain. These receptors function as catalysts, initiating...
Sensory Information Processing
Sensory information processing begins at the sensory receptors located in the skin and other tissues, which detect somatic sensory stimuli such as touch, temperature, or pain. These receptors function as catalysts, initiating...
Neuroplasticity
Neuroplasticity reflects the brain's remarkable capacity to adapt and evolve, responding dynamically to learning, experiences, or injury by reorganizing its neural circuitry. This reorganization involves creating new neural connections and refining old ones through a series of biological processes that contribute to the brain's lifelong development and adaptability.
Spinal Cord Injury ll: Pathophysiology
Spinal cord injury progresses through two interconnected phases: primary injury and secondary injury.Primary InjuryPrimary injury happens at the moment of trauma and involves immediate mechanical damage to the spinal cord.Compression happens when broken vertebrae, herniated discs, or accumulating blood (such as a hematoma) press directly against the spinal cord, distorting its normal shape and function. In cases of contusion, the cord is bruised by a blunt force (like penetrating injuries or...
Secondary Spinal Cord Injury llI: Pathophysiology
Early Ischemia and Ionic ImbalanceWithin minutes of spinal cord injury, a secondary cascade begins, progressing over hours to weeks. Vascular damage reduces blood flow, causing ischemia and mitochondrial dysfunction. ATP depletion leads to ion pump failure, membrane depolarization, sodium influx, potassium efflux, and water accumulation, resulting in cellular swelling. Increased intracellular calcium further disrupts mitochondria and accelerates cellular injury.Excitotoxicity and Neuronal...


