神经药理学报
神經藥理學報
신경약이학보
Journal of Hebei North University(Medical Edition)
2012年
5期
8-18
,共11页
张思%顾兵%王烁宇%李华南%张国福%张水印
張思%顧兵%王爍宇%李華南%張國福%張水印
장사%고병%왕삭우%리화남%장국복%장수인
脊髓挫伤%大鼠%初始损伤体积%行为学评价%步态分析
脊髓挫傷%大鼠%初始損傷體積%行為學評價%步態分析
척수좌상%대서%초시손상체적%행위학평개%보태분석
spinal cord contusion%rats%initial lesion volume%behavior evaluation%gait analysis
目的:探讨TreadScan步态分析系统在评价大鼠脊髓挫伤(spinal cord injury,SCI)模型中的应用价值。方法:采用连有PinPoint?精密接触传感器的BenchmarkTM立体定位颅脑撞击器制备脊髓挫伤大鼠模型,利用Image J图像分析软件测定伤后30 min损伤中心及其邻近区域的初始损伤体积,应用TreadScan步态分析系统描述术前及伤后7、14、21、28 d大鼠的行为学特征,采用Harris氏HE染色结合Luxol固蓝染色技术观察伤后1、7、14、28 d损伤组织的形态学改变。结果:模型组脊髓初始损伤体积为(4.17±0.15)mm3(n=5),范围在4.02至4.32 mm3之间,呈近似正态分布。与术前比较,模型组术后各项行为学参数差异均具有显著性(P<0.05);与假手术组比较,伤后模型组脚印面积、步长、瞬间跑速、正常步序比均下降显著(P<0.05),而跨步时间、摆动时间、后脚脚间距、最小纵向偏差均显著上升(P<0.05)。伤后1 d除损伤中心外,邻近区域组织形态基本完好,但是随时间延长,模型组组织溃变和髓鞘脱失的严重程度显著高于假手术组,且有向周边蔓延趋势。结论:采用连有PinPoint?精密接触传感器的BenchmarkTM立体定位颅脑撞击器制备的脊髓挫伤大鼠模型具有良好的重复性,应用TreadScan步态分析系统能够客观准确的评价大鼠SCI后的运动功能。
目的:探討TreadScan步態分析繫統在評價大鼠脊髓挫傷(spinal cord injury,SCI)模型中的應用價值。方法:採用連有PinPoint?精密接觸傳感器的BenchmarkTM立體定位顱腦撞擊器製備脊髓挫傷大鼠模型,利用Image J圖像分析軟件測定傷後30 min損傷中心及其鄰近區域的初始損傷體積,應用TreadScan步態分析繫統描述術前及傷後7、14、21、28 d大鼠的行為學特徵,採用Harris氏HE染色結閤Luxol固藍染色技術觀察傷後1、7、14、28 d損傷組織的形態學改變。結果:模型組脊髓初始損傷體積為(4.17±0.15)mm3(n=5),範圍在4.02至4.32 mm3之間,呈近似正態分佈。與術前比較,模型組術後各項行為學參數差異均具有顯著性(P<0.05);與假手術組比較,傷後模型組腳印麵積、步長、瞬間跑速、正常步序比均下降顯著(P<0.05),而跨步時間、襬動時間、後腳腳間距、最小縱嚮偏差均顯著上升(P<0.05)。傷後1 d除損傷中心外,鄰近區域組織形態基本完好,但是隨時間延長,模型組組織潰變和髓鞘脫失的嚴重程度顯著高于假手術組,且有嚮週邊蔓延趨勢。結論:採用連有PinPoint?精密接觸傳感器的BenchmarkTM立體定位顱腦撞擊器製備的脊髓挫傷大鼠模型具有良好的重複性,應用TreadScan步態分析繫統能夠客觀準確的評價大鼠SCI後的運動功能。
목적:탐토TreadScan보태분석계통재평개대서척수좌상(spinal cord injury,SCI)모형중적응용개치。방법:채용련유PinPoint?정밀접촉전감기적BenchmarkTM입체정위로뇌당격기제비척수좌상대서모형,이용Image J도상분석연건측정상후30 min손상중심급기린근구역적초시손상체적,응용TreadScan보태분석계통묘술술전급상후7、14、21、28 d대서적행위학특정,채용Harris씨HE염색결합Luxol고람염색기술관찰상후1、7、14、28 d손상조직적형태학개변。결과:모형조척수초시손상체적위(4.17±0.15)mm3(n=5),범위재4.02지4.32 mm3지간,정근사정태분포。여술전비교,모형조술후각항행위학삼수차이균구유현저성(P<0.05);여가수술조비교,상후모형조각인면적、보장、순간포속、정상보서비균하강현저(P<0.05),이과보시간、파동시간、후각각간거、최소종향편차균현저상승(P<0.05)。상후1 d제손상중심외,린근구역조직형태기본완호,단시수시간연장,모형조조직궤변화수초탈실적엄중정도현저고우가수술조,차유향주변만연추세。결론:채용련유PinPoint?정밀접촉전감기적BenchmarkTM입체정위로뇌당격기제비적척수좌상대서모형구유량호적중복성,응용TreadScan보태분석계통능구객관준학적평개대서SCI후적운동공능。
Objective:To assess the utility of TreadScan gait analysis system in evaluating rat spinal cord contusion model. Methods:Rat spinal cord contusion model was established by a BenchmarkTM stereotaxic cortical impactor which was connected to PinPointTM precision contact sensor. Image J image analysis software was used to measure the initial lesion volume of injured epicenter and adjacent area at posttraumatic 30 min. TreadScan gait analysis system was applied to describe the behavioral characteristics of the rats at preoperative and posttraumatic 7, 14, 21, 28 d. Morphological changes were inspected by using the Harris’s HE staining in combination with Luxol fast blue staining technique at posttraumatic 1, 7, 14, 28 d. Results: The initial lesion volume of spinal cord in model group was (4.17±0.15) mm3 (x±s, n=5) with a range of 4.02 to 4.32 mm3 and fitted to the normal distribution. As compared to the preoperative, there were significant differences (P<0.05) in each behavior parameters of the postoperative in model group. As compared to the sham group, the Average Print Area, Stride Length, Inst Run Speed and Regularity Index were decreased significantly in model group (P<0.05). However, the Stride Time, Swing Time, Rear Track Width, Minimum Longitudinal Deviation were significantly increased (P<0.05). In addition to the injured epicenter, the morphology of adjacent region tissue was basically intact at posttraumatic 1 d. However, overtime the severity of tissue degeneration and demyelination in model group were significantly higher than those in sham group, with the trend of spreading to the surrounding areas. Conclusion: The rat spinal cord contusion model prepared by a BenchmarkTM stereotaxic cortical impactor has a good replicability. TreadScan gait analysis system was particularly objective and accurate in evaluating the behavioral characteristics after SCI in rats.