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Physiological imaging of electrical trauma and therapeutic responses

机译:电击伤和治疗反应的生理成像

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Abstract: In victims of electrical trauma, electroporation of cell membrane, in which lipid bilayer is permeabilized by thermal and electrical forces, is thought to be a substantial cause of tissue damage. It has been suggested that certain mild surfactant in low concentration could induce sealing of permeabilized lipid bilayers, thus repairing cell membranes that had not been extensively damaged. With an animal model of electrically injured hind limb of rats, we have demonstrated and validated the use of radiotracer imaging technique to assess the physiology of the damaged tissues after electrical shock and of their repairs after applying surfactant as a therapeutic strategy. For example, using Tc-99m labeled pyrophosphate (PYP), which follows calcium in cellular function and is known to accumulate in damaged tissues, we have established a physiological imaging approach for assessment of the extent of tissue injury for diagnosis and surgical planning, as well as for evaluation of responses to therapy. With the use of a small, hand-held, miniature gamma camera, this physiological imaging method can be employed at patient's bedside and even in the field, for example, at accident site or during transfer for emergency care, rapid diagnosis, and prompt treatment in order to maximize the chance for tissue survival. !12
机译:摘要:在电击伤的受害者中,认为细胞膜的电穿孔(其中脂双层被热力和电力渗透)是造成组织损伤的重要原因。已经提出,某些低浓度的温和表面活性剂可以诱导透化脂质双层的密封,从而修复未被广泛破坏的细胞膜。使用大鼠后肢电致受伤的动物模型,我们已经证明并验证了放射性示踪剂成像技术的使用,以评估电击后受损组织的生理状况以及使用表面活性剂作为治疗策略后其修复情况。例如,使用Tc-99m标记的焦磷酸盐(PYP),其遵循细胞功能中的钙并已知在受损组织中蓄积,我们建立了一种生理成像方法来评估组织损伤的程度,以进行诊断和手术计划,例如以及评估对治疗的反应。通过使用小型手持微型伽马相机,这种生理成像方法可以在患者的床边甚至是现场使用,例如在事故现场或在急救,快速诊断和及时治疗的转运过程中为了使组织存活的机会最大化。 !12

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