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MR Angiography MR Imaging and Proton MR Spectroscopy In-Vivo Assessment of Skeletal Muscle Ischemia in Diabetic Rats

机译:mR血管造影术磁共振成像和质子磁共振波谱在活体骨骼肌缺血的糖尿病大鼠评估

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摘要

To prospectively evaluate the feasibility of using magnetic resonance (MR) techniques for in-vivo assessing a rat diabetic model of limb ischemia. Unilateral hind limb ischemia was induced by ligation of the iliac-femoral artery in male streptozotocin-treated and non-diabetic control rats. Four weeks after ligation, rats underwent MR Angiography (MRA), T1-weighted and Short Time Inversion Recovery (STIR) sequences and muscle Proton MR Spectroscopy (1H-MRS) on both hind limbs. After MR examinations, immunoblotting and immunofluorescence analysis were performed. MRA showed a signal void due to flow discontinuation distal to the artery ligation. T1-weighted and STIR images showed, respectively, the presence of tissue swelling (p = 0.018 for non-diabetic; p = 0.027 for diabetic rats) and signal hyperintensity in tissue affected by occlusion. Mean total creatine/water for the occluded limb was significantly lower than for the non-occluded limbs in both non-diabetic (5.46×10−4 vs 1.14×10−3, p = 0.028) and diabetic rats (1.37×10−4 vs 1.10×10−3; p = 0.018). MR Imaging and 1H-MRS changes were more pronounced in diabetic than in non-diabetic occluded limbs (p = 0.032). MR findings were confirmed by using histological findings. Combined MR techniques can be used to demonstrate the presence of structural and metabolic changes produced by iliac-femoral artery occlusion in rat diabetic model of limb ischemia.
机译:前瞻性评估使用磁共振(MR)技术进行体内评估大鼠肢体缺血糖尿病模型的可行性。在雄性链脲佐菌素治疗和非糖尿病对照大鼠中,通过the股动脉结扎可诱发单侧后肢缺血。结扎后四周,对大鼠后肢进行MR血管造影(MRA),T1加权和短时反转恢复(STIR)序列和肌肉质子MR光谱( 1 H-MRS)。 MR检查后,进行了免疫印迹和免疫荧光分析。由于动脉结扎远端的血流中断,MRA显示信号无效。 T1加权和STIR图像分别显示存在组织肿胀(对于非糖尿病患者,p = 0.018;对于糖尿病大鼠,p = 0.027)和受阻塞影响的组织中的信号过高。在两个非糖尿病患者中,闭塞肢体的平均总肌酸/水均显着低于未闭塞肢体(5.46×10 −4 与1.14×10 −3 ,p = 0.028)和糖尿病大鼠(1.37×10 −4 与1.10×10 −3 ; p = 0.018)。在糖尿病患者中,MR成像和 1 H-MRS变化比非糖尿病性四肢更明显(p = 0.032)。通过组织学检查结果证实了MR检查结果。组合的MR技术可用于证明在肢体缺血的大鼠糖尿病模型中artery股动脉闭塞产生的结构和代谢变化的存在。

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