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张家口地区鸡柔嫩艾美耳球虫分离鉴定及对磺胺氯吡嗪钠和地克珠利的耐药性分析
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作者 王鹏 郭兵 +5 位作者 王海凤 方素芳 顾小龙 关琛 刘康雅 崔平 《现代畜牧兽医》 2023年第7期55-59,共5页
试验旨在掌握张家口地区鸡感染球虫的田间地理虫株和耐抗球虫药的现状,为该地区使用抗球虫药提供指导。根据临床症状收集盲肠内容物和粪便,进行柔嫩艾美耳球虫卵囊的分离、培养与鉴定,根据最适抗球虫百分数、病变记分减少率、相对卵囊... 试验旨在掌握张家口地区鸡感染球虫的田间地理虫株和耐抗球虫药的现状,为该地区使用抗球虫药提供指导。根据临床症状收集盲肠内容物和粪便,进行柔嫩艾美耳球虫卵囊的分离、培养与鉴定,根据最适抗球虫百分数、病变记分减少率、相对卵囊产量以及抗球虫指数等指标,以判定球虫分离株对磺胺氯吡嗪钠和地克珠利的耐药性。结果显示,张家口地区分离的球虫虫株为柔嫩艾美耳球虫,磺胺氯吡嗪钠组的最适抗球虫百分数(POAA)均大于50%,呈耐药阴性;地克珠利组POAA均小于50%,为耐药阳性。磺胺氯吡嗪钠组病变记分减少率(RLS)均为61.76%,呈耐药阴性;地克珠利组RLS分别为22.06%和21.18%,均小于50%,呈耐药阳性。地克珠利组的相对卵囊产量(ROP)均高于50%,表明分离虫株对地克珠利具有耐药性;磺胺氯吡嗪钠组的ROP值均低于15%,均为不耐药。磺胺氯吡嗪钠组1的ACI值达159.79,呈耐药阴性;地克珠利组抗球虫指数(ACI)分别为148.70和134.70,呈耐药阳性。研究表明,综合POAA、RLS、ROP和ACI等4项指标判定,分离虫株对磺胺氯吡嗪钠对地克珠利完全耐药,对磺胺氯吡嗪钠表现轻度耐药。建议该地区养鸡场停用地克珠利,将磺胺氯吡嗪钠列入非产蛋期抗鸡球虫病药物方案中。 展开更多
关键词 柔嫩艾美耳球虫 分离鉴定 耐药性
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Detection of K in soil using time-resolved laser-induced breakdown spectroscopy based on convolutional neural networks 被引量:1
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作者 吕程序 王博 +3 位作者 姜训鹏 张俊宁 牛康 苑严伟 《Plasma Science and Technology》 SCIE EI CAS CSCD 2019年第3期108-113,共6页
One of the technical bottlenecks of traditional laser-induced breakdown spectroscopy(LIBS) is the difficulty in quantitative detection caused by the matrix effect. To troubleshoot this problem,this paper investigated ... One of the technical bottlenecks of traditional laser-induced breakdown spectroscopy(LIBS) is the difficulty in quantitative detection caused by the matrix effect. To troubleshoot this problem,this paper investigated a combination of time-resolved LIBS and convolutional neural networks(CNNs) to improve K determination in soil. The time-resolved LIBS contained the information of both wavelength and time dimension. The spectra of wavelength dimension showed the characteristic emission lines of elements, and those of time dimension presented the plasma decay trend. The one-dimensional data of LIBS intensity from the emission line at 766.49 nm were extracted and correlated with the K concentration, showing a poor correlation of R_c^2?=?0.0967, which is caused by the matrix effect of heterogeneous soil. For the wavelength dimension, the two-dimensional data of traditional integrated LIBS were extracted and analyzed by an artificial neural network(ANN), showing R_v^2?=?0.6318 and the root mean square error of validation(RMSEV)?=?0.6234. For the time dimension, the two-dimensional data of time-decay LIBS were extracted and analyzed by ANN, showing R_v^2?=?0.7366 and RMSEV?=?0.7855.These higher determination coefficients reveal that both the non-K emission lines of wavelength dimension and the spectral decay of time dimension could assist in quantitative detection of K.However, due to limited calibration samples, the two-dimensional models presented over-fitting.The three-dimensional data of time-resolved LIBS were analyzed by CNNs, which extracted and integrated the information of both the wavelength and time dimension, showing the R_v^2?=?0.9968 and RMSEV?=?0.0785. CNN analysis of time-resolved LIBS is capable of improving the determination of K in soil. 展开更多
关键词 quantitative DETECTION potassium(K) SOIL TIME-RESOLVED LASER-INDUCED BREAKDOWN spectroscopy(LIBS) convolutional neural networks(CNNs)
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Dietary ellagic acid ameliorated Clostridium perfringens-induced subclinical necrotic enteritis in broilers via regulating inflammation and cecal microbiota 被引量:3
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作者 Yu Tang Xinyue Zhang +6 位作者 Yanan Wang Yongpeng Guo Peiqi Zhu Guiguan Li Jianyun Zhang Qiugang Ma Lihong Zhao 《Journal of Animal Science and Biotechnology》 SCIE CAS CSCD 2022年第5期1513-1530,共18页
Background: Subclinical necrotic enteritis(SNE), a common intestinal disease of broiler caused by Clostridium perfringens, could reduce production performance of broilers by chronic intestinal damage and poor absorpti... Background: Subclinical necrotic enteritis(SNE), a common intestinal disease of broiler caused by Clostridium perfringens, could reduce production performance of broilers by chronic intestinal damage and poor absorption of nutrients. Ellagic acid(EA) has been reported to present antioxidant and anti-inflammatory properties on human and animals in many aspects. This study was conducted to evaluate the effect and mechanism of EA in relieving SNE in broilers induced by C. perfringens.Results: C. perfringens challenge decreased body weight(BW), average daily gain(ADG), jejunal villi height/crypt depth(V/C) ratio, the activity of catalase(CAT) and the mRNA expression of zonula occludens 1(ZO-1) in jejunal mucosa of broilers. While feed conversion ratios(FCR), jejunal crypt depth(CD), the activities of myeloperoxidase(MPO) and diamine oxidase(DAO), as well as the concentrations of interleukin 6(IL-6), C-reactive protein(CRP) and procalcitonin(PCT) in serum, the activities of inducible nitric oxide synthase(iNOS) and lysozyme(LZM), the concentration of malondialdehyde(MDA), and the mRNA expressions of claudin-2, TNF-α, IL-1β, TLR-4, TLR-2, NF-κB,JAK3, STAT6 and iNOS in jejunal mucosa of broilers were increased by C. perfringens challenge. Dietary EA supplement relieved these adverse effects, and heightened jejunal villi height(VH), the concentration of D-xylose in plasma, activity of superoxide dismutase(SOD), and the mRNA expression of occludin in jejunal mucosa of broilers.The alpha diversity of cecal microbiota indicated that dietary EA supplement increased observed species and Shannon index. C. perfringens challenge increased the relative abundance of Firmicutes and decreased the relative abundance of Desulfobacterota in cecal microbiota. EA increased the relative abundance of Firmicutes in cecal microbiota. LEfSe analysis showed that C. perfringens challenge triggered the imbalance of cecal microbiota in broilers, dietary EA supplementation led to a small beneficial effect on microbiota, while the simultaneous effect of them seemed to stimulate the immune function of broilers by improving the microbiota balance.Conclusions: Dietary EA ameliorated C. perfringens-induced SNE in broilers via regulating jejunal inflammation signaling pathways TLR/NF-κB and JAK3/STAT6, relieving jejunal oxidative stress and balancing cecal microbiota to inhibit intestinal barrier damage, prevent systemic inflammatory response and improve nutrient absorption capacity,finally protect and enhance growth performance of broilers. 展开更多
关键词 BROILER Clostridium perfringens Ellagic acid Intestinal microbiota Subclinical necrotic enteritis
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