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利用近红外光谱技术对大鼠脊髓挫伤模型进行全身测量。

Whole body measurements using near-infrared spectroscopy in a rat spinal cord contusion injury model.

机构信息

Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana, USA.

Center for Paralysis Research and Department of Basic Medical Sciences, College of Veterinary Medicine, Purdue University, West Lafayette, Indiana, USA.

出版信息

J Spinal Cord Med. 2023 May;46(3):508-520. doi: 10.1080/10790268.2021.1911504. Epub 2021 Apr 23.

Abstract

Spinal cord injuries cause great damage to the central nervous system as well as the peripheral vasculature. While treatments for spinal cord injury typically focus on the spine itself, improvements in the function of the peripheral vasculature after spinal cord injury have shown to improve overall neurological recovery. This study focused on the use of near-infrared spectroscopy (NIRS) as a mode to monitor cerebral and peripheral vascular condition non-invasively during the recovery process. Animal research study. Rats underwent spinal contusion or sham injury and relative concentrations of de-/oxyhemoglobin (Δ[HbO]/Δ[Hb]) over time were measured over the cerebral, spinal, and pedal regions via NIRS. Correlational relationships across the body were determined. Rats received 1 NIRS measurement before injury and 3 after injury: 4, 7, and 14 days post. Correlational relationships between signals across the body, between animals with and without spinal cord injury, indicate that NIRS was able to detect patterns of vascular change in the spine and the periphery occurring secondary to spinal cord injury and evolving during subsequent recovery. Additionally, NIRS determined an overall correlational decrease within the central nervous system, between spinal and cerebral measurements. NIRS was able to closely reflect physiologic changes in the rat during recovery, demonstrating a promising method to monitor whole body hemodynamics after spinal cord injury.

摘要

脊髓损伤对中枢神经系统和周围脉管系统造成严重损害。虽然脊髓损伤的治疗通常侧重于脊柱本身,但脊髓损伤后周围脉管系统功能的改善已被证明可以提高整体神经恢复。本研究专注于使用近红外光谱(NIRS)作为一种模式,在恢复过程中无创监测大脑和外周血管状况。动物研究。大鼠接受脊髓挫伤或假损伤,通过 NIRS 测量脑、脊髓和足部区域的脱氧/氧合血红蛋白(Δ[HbO]/Δ[Hb])随时间的相对浓度。确定跨身体的相关关系。大鼠在损伤前接受 1 次 NIRS 测量,在损伤后 3 次测量:损伤后 4、7 和 14 天。全身信号之间、有和没有脊髓损伤的动物之间的相关性表明,NIRS 能够检测到脊髓损伤后发生的脊柱和周围血管变化模式,并在随后的恢复过程中演变。此外,NIRS 确定中枢神经系统内整体相关性降低,脊髓和大脑测量之间的相关性降低。NIRS 能够在大鼠恢复期间密切反映生理变化,表明这是一种有前途的方法,可以监测脊髓损伤后全身血液动力学。

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Chronic complications of spinal cord injury.脊髓损伤的慢性并发症
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