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1.
海水浸泡爆炸伤延期植皮最佳时机的研究   总被引:1,自引:0,他引:1  
目的确定海水浸泡爆炸伤延期植皮的最佳时机。方法建立海水浸泡爆炸伤动物模型后,分别于0、3、7、14d切取创面组织作病理切片,镜下观察创面受床的病理改变;同期对创区实施植皮术,通过计算机全自动图像分析系统准确计算出各组的皮片成活率。结果分别于伤后0、3、7、14d,对皮肤缺损区施行植皮术,发现不同时机植皮成活率不同,伤后7d对海水浸泡爆炸伤皮肤缺损区植皮,皮片成活率最高。结论海水浸泡爆炸伤延期7d后植皮是对创面实施植皮术的最佳时机。  相似文献   
2.
Objective To investigate effect of reduced glutathione and diammonium glycyrrhizinate on the treatment of hepatic damage in experimental dogs following open abdominal injuries coupled with seawater immersion. Methods Twenty-four dogs with open abdominal injuries were randomly divided into 3 groups: the control group (given with simple observation after 1.5 h seawater immersion); the routine treatment group (given routine care and fluid transfusion after 1.5 h seawater immersion) ; the hepatic treatment group (given routine are, fluid transfusion and hepatic treatment as well, after 1.5 h seawater immersion). Each group consisted of 8 dogs. Blood samples were taken at different time points to measure total bilirubin (TB), alanine aminotransferase (ALT), aspartate aminotransferase (AST), lactate dehydrogenase (LDH), prothromin time (PT), endotoxin, tumor necrosis factor-α(TNF-α), interleukin-6 (IL-6), and pathological examination was also made at the same time. Results For the control group, contents of TB, ALT, AST and LDH increased significantly and survival time was less than 24 hours. Contents of TB, ALT, AST and LDH of the routine treatment group also increased significantly, but survival time of all the experimental animals was mere than 24 hours. Reduced glutathione and diammonium glycyrrhizinate could reduce the extent of lesion quite significantly 12~24 hours following open abdominal injuries. Conclusions Reduced glutathione and diammonium glycyrrhizinate seemed to have good effects on the treatment and prevention against hepatic damage induced by trauma coupled with seawater immersion. It could be used as a primary means for the treatment of such kind of hepatic damage.  相似文献   
3.
海水浸泡兔脑挫伤后caspase-8及caspase-3表达的研究   总被引:2,自引:0,他引:2  
目的建立海水浸泡颅脑挫裂伤模型,观察海水浸泡对实验性脑挫裂伤后创伤性脑水肿的影响及研究兔脑挫伤后不同时间caspase-8及caspase-3表达的变化。方法采用立体定向自由落体伤模型进行持续海水浸泡作为实验组,对照组采用同样的方法致伤后不进行海水浸泡。观察创伤组织的病理改变,并通过免疫组化染色和计算机图像分析技术用半定量化的方法检测不同干预不同时程caspase-8和caspase-3的活性表达强弱差异。结果实验组和对照组均发生了创伤性脑水肿,但水肿高峰期出现时间不一致,严重程度也不一致。实验组caspase-8和caspase-3活性表达强度均高于对照组。结论海水浸泡促进了挫裂伤周边缺血水肿区神经细胞凋亡的增加。  相似文献   
4.
Objective To observe effects of seawater immersion combined with open abdominal injury on the expression of NF-κB,and IκBαas well as the change pattern in rats. Methods Ninety-one Wistar rats were randomly divided into 3 groups: the control group (n =7), the open abdominal injury group(n =42) and open abdominal injury combined with 1-hour seawater immersion group ( n =42). The expression of NF-κB,andIκBαin small intestine tissues was measured by Western blot and statistical analyses were also made in the study. Results The expression of NF-κB,in the seawater immersion combined with open abdominal injury group increased significantly 3 hours after injury, when compared with that of the open abdominal injury group(P<0. 05), whereas the expression of NF-κB, of the pure injury group was slightly lower than that of the control group, but no statistical differences could be seen between them(P>0.05). The change pattern in the expression of IκBαwas quite the opposite to that of NF-κB. Conclusions NF-κB seemed to be rapidly and persistently involved in the whole inflammatory response to trauma induced by opened abdominal injury and seawater immersion, when a comparison was made with the pure open abdominal injury group. Injuries for the rats in the open abdominal injury combined with seawater immersion group were serious, and the feedback mechanism for NF-κB was not established for quite a long time.  相似文献   
5.
目的 探讨海水浸泡弹烧复合伤伤后血液细菌学变化与内脏病理学变化之间的关系。方法 建立海水浸泡弹烧复合伤模型后,依模型将15只成年杂种犬随机分为单纯弹烧复合伤组(简称非浸泡组,7只)和海水浸泡弹烧复合伤组(简称浸泡组,8只),于伤后即刻和4、7、10、20、28h共6个时相点抽取静脉血进行血细菌培养。另于伤后28h和濒死期将动物活杀,取心、肝、肺、肾行病理学观察。结果 浸泡组动物菌血症出现较早且严重。导致菌血症的细菌来源复杂,不仅有肠道菌群,还有海水特有菌群和皮肤常驻菌群。在内脏器官组织病理学上,不仅有不同程度的血液循环障碍及退行性变,还有严重的炎症反应。结论 在海水浸泡弹烧复合伤中,伤后出现的严重菌血症进一步加重了内脏器官损伤。  相似文献   
6.
Objective To investigate effect of reduced glutathione and diammonium glycyrrhizinate on the treatment of hepatic damage in experimental dogs following open abdominal injuries coupled with seawater immersion. Methods Twenty-four dogs with open abdominal injuries were randomly divided into 3 groups: the control group (given with simple observation after 1.5 h seawater immersion); the routine treatment group (given routine care and fluid transfusion after 1.5 h seawater immersion) ; the hepatic treatment group (given routine are, fluid transfusion and hepatic treatment as well, after 1.5 h seawater immersion). Each group consisted of 8 dogs. Blood samples were taken at different time points to measure total bilirubin (TB), alanine aminotransferase (ALT), aspartate aminotransferase (AST), lactate dehydrogenase (LDH), prothromin time (PT), endotoxin, tumor necrosis factor-α(TNF-α), interleukin-6 (IL-6), and pathological examination was also made at the same time. Results For the control group, contents of TB, ALT, AST and LDH increased significantly and survival time was less than 24 hours. Contents of TB, ALT, AST and LDH of the routine treatment group also increased significantly, but survival time of all the experimental animals was mere than 24 hours. Reduced glutathione and diammonium glycyrrhizinate could reduce the extent of lesion quite significantly 12~24 hours following open abdominal injuries. Conclusions Reduced glutathione and diammonium glycyrrhizinate seemed to have good effects on the treatment and prevention against hepatic damage induced by trauma coupled with seawater immersion. It could be used as a primary means for the treatment of such kind of hepatic damage.  相似文献   
7.
分次灌注海水致兔呼吸窘迫综合征模型的建立   总被引:4,自引:1,他引:3  
目的通过向兔气管插管内灌入海水,建立海水淹溺致急性呼吸窘迫综合征模型。方法14只新西兰大白兔被随机平分为C组(对照组,无任何处理)和S组(海水组,用海水灌注)。观察分次适量海水灌入气管插管后症状学、血气分析、血液动力学、血清中肿瘤坏死因子(TNF—α)和白细胞介素-6(IL-6)的变化。2h后给每组试验兔拍摄肺CT片,并观察其组织病理学变化。结果与C组相比,S组的O2和CO2指数显著降低(P〈0.01),呼吸动力学和血液动力学的情况明显恶化。TNF—α和IL-6增高,这一结果提示肺损伤发生于兔被海水灌注之后。另外,还发现模型兔有明显的肺水肿、肺泡隔断裂和炎性渗出。结论成功复制了既符合海水淹溺的实际情况,又符合国内外急性呼吸窘迫综合征诊断标准的海水淹溺致急性肺损伤动物模型。  相似文献   
8.
目的探讨特布他林对海水淹溺型肺水肿兔肺组织炎症反应的影响。方法36只机械通气的麻醉新西兰兔随机分成正常组(N组)、对照组(C组)和特布他林治疗组(T组)。C组和T组经颈动脉注入4ml/kg的配方海水,20min后C组经颈动脉注入2ml生理盐水,而T、组则注入0.15mg/kg特布他林,N组除未注入配方海水外,其余处理同C组。观察肺泡灌洗液(BALF)中TNF-α计量和中性粒细胞计数,取部分右下肺常规病理学检查,并分别用RT-PCR和ELISA检测肺组织中TNF-α、IL-1β和IL-8的mRNA表达及蛋白含量。结果病理学观察显示C组的肺组织内有大量的炎性细胞浸润,肺泡隔断裂、肺泡破裂、相互融合、肺泡大量萎陷,肺泡内有出血及透明膜形成。T组的上述改变轻于C组。T组肺组织内TNF-α、IL-1β和IL-8的mRNA表达及蛋白含量均显著低于C组(P〈0.05),BALF中TNF-α和中性粒细胞计数减少。结论特布他林可以抑制海水淹溺型肺水肿兔肺组织的TNF-α、IL-1β和IL-8,从而减轻肺组织炎症反应。  相似文献   
9.
This study compared the effects of pre-exercise cooling with control water immersions on exercise-induced thermal loads derived from steady-state submaximal exercise. Eight healthy male participants [mean (SEM) age 29 (1) years, maximal oxygen uptake 3.81 (0.74) l·min–1, and body surface area 1.85 (0.11) m2] took part in experiments that included 30 min of baseline data collection [ambient temperature 21.3 (0.2°C)], 30 min of immersion in water to the level of the supra-iliac crest [water temperatures of 35.1 (0.3)°C for thermoneutral and 17.7 (0.5)°C for precooled treatments], and 60 min of cycling exercise at 60% of maximal oxygen uptake. No significant differences were noted during exercise in net mechanical efficiency, metabolic rate, O2 pulse, or ratings of perceived exertion between the two treatments. Precooling resulted in a significant negative body heat storage during immersion and allowed greater heat storage during exercise. However, net body heat storage for the entire protocol was no different between treatments. Cooling significantly lowered rectal, mean skin, and mean body temperatures as well as more than doubling the exercise time until a 0.5°C rectal temperature increase was observed. The cooling trial significantly delayed onset of sweating by 19.62 min and decreased sweat rate by 255 ml·h–1 compared to control. Thermal and sweat sensation scores were lower after the cooling treatment compared to control. These data suggest that lower-body precooling is effective at decreasing body heat storage prior to exercise and decreases reliance on heat dissipation mechanisms during exercise. Therefore, this unique, well-tolerated cooling treatment should have a broader application than other precooling treatments. Electronic Publication  相似文献   
10.
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