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Updated: May 15, 2025

Contrast Enhanced Ultrasound Imaging for Assessment of Spinal Cord Blood Flow in Experimental Spinal Cord Injury
Published on: May 7, 2015
Spinal ultrasound imaging implied the vascular dynamics in chronic and acute pain
Yingzhuo Ding1, Chunxia Yu1, Qingqing Chi1
1Shanghai Eye Diseases Prevention &Treatment Center/ Shanghai Eye Hospital, School of Medicine, Tongji University, National Clinical Research Center for Eye Diseases, Shanghai Engineering Research Center of Precise Diagnosis and Treatment of Eye Diseases, NO.1440 Hongqiao Road, 200336 Shanghai, China.
Abstract:
Neurovascular coupling links local neural activity to cerebral blood flow changes, crucial for pain transduction. In this undertaking, we present an advanced spinal functional ultrasound imaging that exhibits precise observation capabilities of the influence of analgesic medications on spinal cord blood flow, encompassing both acute and chronic pain scenarios. Utilizing gabapentin as the primary analgesic agent, we have observed that intrathecal administration of gabapentin notably augments the blood flow intensity in neuropathic rats while exerting minimal influence on the blood flow of the sham rats. Furthermore, subcutaneous formalin injection increases spinal cord blood flow, but gabapentin pretreatment prevents those effects. These findings demonstrated the analgesic effect of gabapentin exhibits a synergistic interaction with the intensity of blood flow around neurons, which is crucial for understanding the mechanisms underlying the occurrence of pain. In this article, we show: • A simple method to build the spinal cord ligation-induced chronic pain model. • A generic way to build the formalin-induced acute pain model. • An optimized functional ultrasound imaging technique in chronic and acute pain.

