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1.
AIMS: To determine if abdominal insufflation with medical air will improve oxygenation and ventilation parameters when compared to insufflation with CO2 in xylazine-sedated sheep undergoing laparoscopic artificial insemination (AI).

METHODS: Forty-seven sheep underwent oestrus synchronisation and were fasted for 24 hours prior to laparoscopic AI. Each animal was randomised to receive either CO2 or medical air for abdominal insufflation. An auricular arterial catheter was placed and utilised for serial blood sampling. Respiratory rates (RR) and arterial blood samples were collected at baseline, after xylazine (0.1?mg/kg I/V) sedation, 2 minutes after Trendelenburg positioning, 5 minutes after abdominal insufflation, and 10 minutes after being returned to a standing position. Blood samples were collected in heparinised syringes, stored on ice, and analysed for arterial pH, partial pressure of arterial O2 (PaO2), and CO2 (PaCO2). The number of ewes conceiving to AI was also determined.

RESULTS: Repeated measures ANOVA demonstrated temporal effects on RR, PaO2, PaCO2 and arterial pH during the laparoscopic AI procedure (p<0.001), but no difference between insufflation groups (p>0.01). No sheep experienced hypercapnia (PaCO2>50?mmHg) or acidaemia (pH<7.35). Hypoxaemia (PaO2<70?mmHg) was diagnosed during the procedure in 14/22 (64%) ewes in the CO2 group compared with 8/23 (35%) ewes in the medical air group (p=0.053). Overall, 15/20 (75%) ewes in the CO2 group conceived to AI compared with 16/22 (72.7%) in the medical air group (p=0.867).

CONCLUSIONS AND CLINICAL RELEVANCE: There were no statistical or clinical differences in RR, PaO2, PaCO2, pH, or conception to AI when comparing the effects of CO2 and medical air as abdominal insufflation gases. None of the sheep experienced hypercapnia or acidaemic, yet 42% (19/45) of sheep developed clinical hypoxaemia, with a higher percentage of ewes in the CO2 group developing hypoxaemia than in the medical air group. Based on the overall analysis, medical air could be utilised as a comparable alternative for abdominal insufflation during laparoscopic AI procedures.  相似文献   
2.
以普鲁兰为成膜材料制备一种CO2敏感型指示标签,以食品包装中CO2含量作为监控指标,以甲基红和溴百里酚蓝为指示剂,与成膜材料普鲁兰多糖及甘油混合制得对CO2敏感的凝溶液,以滤纸为基材制备指示标签,并研究普鲁兰多糖浓度、甘油添加量、倒板量对指示标签变色的影响,采用响应面分析法对指示标签的制作工艺进行优化。结果表明,指示标签制备的最佳工艺条件为:在甲基红溶液与溴百里酚蓝溶液体积比为3∶2,质量浓度为5%的混合指示液中添加普鲁兰多糖7.5 g/100 mL、甘油2 g/100 mL,将6.5 mL溶液倒入铺有滤纸的平皿中,浸泡2 h并自然晾干12 h,可制得CO2气敏性指示标签,对其进行验证,色差值为18.21。该指示标签制备工艺简单,可重复操作,具有较大的使用价值。  相似文献   
3.
Objective: To evaluate the ability of capnography to document proper placement of nasoesophageal (NE) and nasogastric (NG) feeding tubes. This study was conducted in 3 phases. Phase I of this study was designed in order to test the efficacy of capnography to distinguish placement of a feeding tube in the alimentary tract versus the respiratory tract. Phase II was designed in order to document that carbon dioxide (CO2) could be measured through a polyvinyl chloride (PVC) feeding tube. Phase III was performed in order to evaluate the technique of continuous monitoring during insertion of the feeding tube into the esophagus and stomach as would be performed during a clinical‐tube placement. Design: Prospective study. Setting: Research laboratory. Animals: 24 adult dogs. Interventions: In Phase I, sedated dogs were instrumented with an intratracheal catheter and an 8 French feeding tube placed nasally into the distal esophagus and later advanced into the stomach. In Phase II, dogs were anesthetized and an 8 French feeding tube was placed down the endotracheal tube, then into the esophagus and later advanced into the stomach. In Phase III, sedated dogs were instrumented with an 8 French feeding tube inserted intranasally and then advanced to the level of the nasopharynx, distal esophagus and, lastly, the stomach. Fluoroscopy was used in order to determine location of the feeding tube. Measurements and main results: Phase I measurements included respiratory rate and CO2 from the trachea, esophagus, and stomach and pH of gastric fluid sample. Phase II measurements included respiratory rate and CO2 from the endotracheal tube, feeding tube in the endotracheal tube, feeding tube in the distal esophagus, and feeding tube in the stomach. Phase III data collection included respiratory rate and CO2 as the tube was passed through the nasal cavity, nasopharynx, esophagus and stomach. Phase I fluid samples were collected from 5 of the 9 dogs and had pH values from 1.68 to 4.20. In both phases, values for the respiratory rate and CO2 from the esophagus and stomach were 0 ± 0, significantly lower (P < 0.001) than the values from the trachea. In Phase II, there was no significant difference between the respiratory rates (P = 0.886) and CO2 (P = 0.705) readings obtained from the endotracheal tube compared to readings from the feeding tube in the endotracheal tube. In Phase III, there was a significant difference (P < 0.001) between the respiratory rates and CO2 readings obtained from the nasal cavity and the nasopharynx when compared to those readings obtained from the esophagus and stomach. Measurement of CO2 and respiratory rate resulted in a reading of 0 every time the feeding tube was in the esophagus or stomach. Conclusions: Capnography may be used in order to detect airway placement of NE and NG tubes.  相似文献   
4.
This study aimed to evaluate the effect of different dose levels of aguamiel (Agave atrovirens) on in vitro cecal gas, methane (CH4), and carbon dioxide (CO2) productions of five forage species (Avena sativa [hay]), Moringa oleifera, Caesalpinia coriacea, Salix babylonica, and Eichhornia crassipes using inocula from the horse. The forage samples were incubated with three doses of aguamiel: 0, 34, and 68 μg of aguamiel/g dry matter (DM) of substrate. Cecal inocula were collected from four adult female Criolla horses (3–4 years of age and weighing 300 ± 15.0 kg) grazed on native grasses for about 8 hours without supplementation. Forage type affected (P < .001) cecal asymptotic, rate and lag time of gas, CH4 and CO2 productions (mL/g DM), pH and DM degradability. Aguamiel dose had linear and quadratic effects (P < .05) on the asymptotic and rate of CH4 productions and rate and lag time of CO2 productions (mL/g DM). Forage type × aguamiel dose interactions were significant (P < .05) for asymptotic, rate and lag time of gas, and CH4 and CO2 productions (mL/g DM). Forage species effects were pronounced (P < .05) on CH4 and CO2 productions (mL/g incubated and degraded DM) and proportional CH4 production at all hours of incubation, except for CO2 production (mL/g incubated DM). Aguamiel dose affected (P < .05) CO2 production (mL/g incubated DM) and proportional CO2 production at the incubated hours. Forage type × aguamiel dose interactions were observed (P < .05) for CO2 production (mL/g incubated DM) and proportional CO2 production at the incubated hours but had no impact on CH4 production. It is concluded that addition of aguamiel to five forage species affected fermentation kinetics of gas production resulting in different in vitro cecal gas, CH4 and CO2 productions from these substrates.  相似文献   
5.
葛畅 《中国农学通报》2019,35(33):131-136
[目的][方法] 本研究以原生动物尾草履虫(Paramecium caudatum)为实验对象, 对目前广泛应用的两种纳米材料,纳米二氧化钛(TiO2)和纳米氧化锌(ZnO)的24小时急性毒性进行了比较研究,分析了草履虫在两种纳米材料胁迫下抗氧化酶活性的改变,并结合两种纳米材料的超微形态,探讨了纳米材料毒性效应的机制,为两种纳米材料的环境毒性监测与评价提供依据。[结果]结果显示:对尾草履虫的24小时半数效应浓度(24h-EC50)分别为51.580mg·L-1(TiO2)、0.444mg·L-1(ZnO);最低有影响浓度(24h-LOEC)分别为1.712mg·L-1(TiO2)、0.352mg·L-1(ZnO);以EC50浓度24小时胁迫尾草履虫,获得抗氧化酶活性改变为:超氧化物歧化酶(SOD),过氧化氢酶(CAT)和过氧化物酶(POD)活性与对照组相比有不同程度的改变,经成对检验分析,两种纳米材料对尾草履虫的POD酶表现出较为明显的抑制作用。[结论]上述结果表明:纳米氧化锌对草履虫的24小时急性毒性大于纳米二氧化钛,这与纳米氧化锌对草履虫抗氧化酶的抑制作用更强,以及纳米氧化锌(30nm)的超微形态相较于纳米二氧化钛(25nm)更加纤细和尖锐有关;本研究获得的24小时急性毒性指标可用于监测和评价两种纳米材料的环境毒性,并为纳米材料的环境容量和生态安全阈值确定提供参考。  相似文献   
6.
采用溶胶-凝胶法,对含水率142%~146%的速生桉树生材进行改性处理,采用电镜SEM、X-射线能谱仪DAX及红外光谱FTIR分析,观察木材微观结构和SiQ分布状态,并检测理化性能.结果表明:浸渍时间不同,改性材中的SiO2含量和分布不同;改性材的增重率最大达45%,气干密度可提高至0.6 g/cm3左右,抗弯强度、硬度及耐光老化性能等均相应提高.  相似文献   
7.
Escherichia coli and Salmonella spp. are considered to be the major pathogens associated with human transmissible infectious diseases in the air of poultry houses. Chlorine dioxide (ClO2) is an effective biocide against a wide range of microorganisms. Accordingly, this study investigated the efficiency of gaseous ClO2 application for disinfecting broiler houses by collecting air samples before and after fumigation using a passive method. Fumigation was performed with 125 mL or 250 mL of ClO2 liquid (containing 2,000 ppm of ClO2) and 3 trials were conducted for each dose. A total of 27 petri dishes were used for each trial (for each type of bacteria: E. coli or Salmonella) and placed in 3 different locations (front, middle and back) and 3 different positions (top, middle and floor) of the broiler shed. Air samples were collected at 10 min, 1 h, 3 h, 6 h, and 12 h before and after fumigation to evaluate the air quality in terms of the concentration of E. coli and Salmonella. Both levels of ClO2 were capable of reducing the concentration of E. coli from broiler house air during all measuring periods except 10 min, with highest disinfection rate being observed at 6 h. With the exception of 1 h, the concentration of Salmonella was also reduced after fumigation with ClO2 in all measuring period; with the highest disinfection rate occurring at 6 h. Fumigation with ClO2 had no negative effect on birds’ health condition. Taken together, these results suggest that the application of gaseous ClO2 at the investigated levels can be an effective option for reducing bacterial load from broiler house environments.  相似文献   
8.
9.
采用《中国药典》2015年版四部通则2331二氧化硫残留量测定法第一法对10种含浙贝母(Fritillaria thunbergii)中成药中的二氧化硫残留量进行测定和分析。结果表明,有2个厂家的2种中成药的二氧化硫超标,合格率为86.7%。  相似文献   
10.
It has often been claimed that non‐carbon dioxide greenhouse gases (NCGGs), such as methane, nitrous oxide and fluorinated greenhouse gases, are significant contributors to climate change. Here we nvestigate emission estimates of methane and nitrous oxide from livestock and poultry production, which is recognized as a major source of those NCGGs, in Korea over the period of 1990 through 2010. Based on the data on livestock and poultry populations, emission estimates of methane and nitrous oxide are first derived based on the Tier 1 approach. Then, the Tier 2 approach is adopted to obtain emission estimates of methane and nitrous oxide from cattle, which are known to be the largest sources of these NCGGs and account for about 70% of emissions from livestock and poultry in Korea. The result indicates that the Tier 2 estimates of methane and nitrous oxide emissions from enteric fermentation and manure management are significantly different from the Tier 1 estimates over the analysis period.  相似文献   
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