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1.
以酪蛋白和明胶为蛋白源,七水硫酸锌(Zn SO4·7H2O)为Zn源,分别配制成7种Zn含量(7.4 mg/kg、20.3 mg/kg、32.1 mg/kg、51.0 mg/kg、84.4 mg/kg、169.7 mg/kg、332.4 mg/kg)的半纯化饲料,投喂初始体重为(3.6±0.1)g团头鲂(Megalobrama amblycephala)12周,考察Zn对团头鲂幼鱼生长性能、血清生化指标和抗氧化功能的影响,确定团头鲂幼鱼对饲料Zn的需要量。结果表明,随着饲料Zn含量增加,团头鲂增重率、特定生长率和全鱼Zn含量呈先增加后稳定的趋势;全鱼水分含量显著降低(P0.05),粗蛋白含量显著增加。饲料Zn含量对团头鲂饲料系数无显著影响。饲料中添加Zn显著影响血清总蛋白、尿素氮、高密度脂蛋白胆固醇、总胆固醇以及甘油三酯含量,而对血清白蛋白含量和碱性磷酸酶活性无显著影响。随着饲料中Zn含量的增加,团头鲂肝丙二醛含量显著降低(P0.05),而肝过氧化氢酶和超氧化物歧化酶活性在各处理间均无显著差异。折线回归分析表明,团头鲂幼鱼(体重3.6~26.7 g)获得最佳生长时对饲料Zn需要量为32.6 mg/kg,获得最大鱼体Zn含量时Zn的需要量为47.6 mg/kg。本研究旨在确定团头鲂幼鱼对饲料中Zn的需要量,为配制团头鲂高效环保饲料提供科学依据。  相似文献   

2.
团头鲂两个生长阶段适宜蛋白/脂肪比的需要量   总被引:1,自引:0,他引:1  
为了在相同配方体系下研究团头鲂两个生长阶段对饲料中蛋白/脂肪比的需要量,以初均重为(35.07±0.45)g(幼鱼)、(101.65±1.82)g(育成鱼)两个阶段的团头鲂为实验鱼,以秘鲁鱼粉、酪蛋白、大豆磷脂、豆油等原料配制半纯化饲料,在蛋白质26.93%~35.63%、脂肪10.24%~3.35%范围内,设置蛋白/脂肪比浓度分别为2.63、3.20、4.07、5.33、7.25和10.64共6组饲料。分别在池塘网箱养殖85和56 d,每组实验鱼设置4个平行。结果发现,随着饲料蛋白/脂肪比水平的增加,两个阶段的团头鲂体质量特定生长率(SGR)、蛋白质沉积率(PDR)、能量保留率(ERR)总体均呈现先上升后下降的趋势,均在饲料蛋白/脂肪比为5.33组达到最高;饲料系数(FCR)则呈先下降后上升的趋势,且均在饲料蛋白/脂肪比为5.33组达到最低。分别以实验鱼特定生长率(SGR)、饲料系数(FCR)、蛋白质沉积率(PDR)及能量保留率(ERR)作为评价指标,经过回归分析可知,幼鱼阶段团头鲂对饲料中蛋白/脂肪比需要量为6.09~7.58,适宜蛋白质水平为32.83%~33.98%、脂肪水平为4.48%~5.39%;在日均摄食量为5.06 g/100 g体质量的条件下,团头鲂幼鱼对饲料蛋白质每日需要量为1.66~1.72 g/100 g体质量,对饲料脂肪每日需要量为0.23~0.27 g/100 g体质量。育成鱼阶段团头鲂对饲料中蛋白/脂肪比需要量为4.03~4.34,适宜蛋白质水平为30.19%~30.72%、脂肪水平为7.07%~7.49%。在日均摄食量为3.61 g/100 g体质量的条件下,团头鲂育成鱼对饲料蛋白质每日需要量为1.09~1.11 g/100 g体质量,对饲料脂肪每日需要量为0.26~0.27 g/100 g体质量。  相似文献   

3.
为考察吉富罗非鱼(GIFT,Oreochromis niloticus)对饲料中锌的需要量,以蛋氨酸锌为锌源,配制锌添加水平分别为0,10,20,40,80,160 mg/kg的6组等氮等脂饲料(实测值分别为9.98,21.47,33.75,56.03,88.16,172.54 mg/kg),饲喂初始体质量为(84.44±3.04)g的吉富罗非鱼,试验鱼分为6组,每组3个重复,每个重复20尾鱼,养殖周期为10周。结果显示,随着饲料中锌含量的增加,吉富罗非鱼的增重率、特定生长率先显著升高,在锌含量达到33.75 mg/kg后趋于稳定,添加锌显著降低了饲料系数,提高了成活率。饲料锌含量对全鱼水分、粗蛋白及灰分含量无显著影响,显著降低了全鱼粗脂肪含量。饲料中添加锌对血清总胆固醇含量无影响,显著提高了血清碱性磷酸酶的活性,碱性磷酸酶活性在锌含量达到33.75 mg/kg后趋于稳定,血清甘油三酯含量,乳酸脱氢酶、谷草转氨酶和谷丙转氨酶活性则呈下降趋势。饲料锌含量显著影响脊椎骨、全鱼和肝脏锌的含量,脊椎骨和全鱼锌含量先线性上升,在锌含量达到56.03 mg/kg后趋于稳定,各组的肌肉锌含量无显著差异。以增重率、骨骼锌和全鱼锌含量为评价指标,根据折线回归分析得出,以蛋氨酸锌为添加锌源,吉富罗非鱼对饲料中锌的需要量分别为32.37、55.67和56.13 mg/kg。  相似文献   

4.
在翘嘴(Culter alburnus)鱼种基础饲料中添加相当于抗坏血酸含量为0 mg/kg、25 mg/kg、50 mg/kg、100 mg/kg、150 mg/kg、200 mg/kg和400 mg/kg的包膜维生素C(Vc),制成7种实验饲料,饲养初始体质量为(3.71±0.11)g的7组翘嘴鱼种8周,每个实验组包含3个重复。结果表明,摄食不添加Vc饲料的实验鱼成活率显著低于其他Vc添加组(P<0.05)。饲料中Vc添加量为0~50 mg/kg时,对鱼体增重有显著影响(P<0.05),鱼体增重随添加量的增加而上升。但添加量继续增大,对鱼体增重不再有显著影响(P>0.05)。饲料中维生素C添加量为0和25 mg/kg时,饲料效率和蛋白质效率低于其他各组(P<0.05)。试验饲料中Vc不同添加量对肝体指数和全鱼体成分无显著影响(P>0.05)。肌肉中抗坏血酸含量随饲料中Vc添加量加大而不断上升,二者呈正相关关系(P<0.05)。肝胰脏抗坏血酸含量在Vc添加量≤100 mg/kg时,随饲料中Vc添加量加大而不断上升(P<0.05),但高于此添加量时,则肝胰脏中抗坏血酸不再随添加量的上升而有显著变化(P>0.05)。分别以鱼体增质量和肝胰脏中抗坏血酸为指标,经折线模型(Brokenline model)回归分析求得翘嘴鱼种饲料中Vc的适宜添加量分别为53 mg/kg和97 mg/kg。[中国水产科学,2007,14(1):106-112]  相似文献   

5.
宋博文  杨航  李小勤  王璞  何明  徐禛  杨品贤  冷向军 《水产学报》2021,45(10):1715-1725
为确定大口黑鲈幼鱼对饲料锌的适宜需求量,以酪蛋白、明胶和鱼粉为主要蛋白质源,以ZnSO_4·H_2O为锌源制作半精制基础饲料,分别向基础饲料中添加0、25、50、100和200 mg/kg锌,制成5种含不同锌水平饲料(24.8、48.8、78.9、126.1和223.6 mg/kg干物质)(命名为Zn-25、Zn-49、Zn-79、Zn-126和Zn-224),投喂初始体质量为(10.99±0.07) g的大口黑鲈幼鱼8周。结果显示,饲料中补充25 mg/kg锌(Zn-49)显著提高了大口黑鲈增重率,降低了饲料系数,进一步提高锌的添加量后,各组增重率和饲料系数趋于稳定。当饲料锌含量为25~49 mg/kg时,T-SOD和CuZn-SOD活性增加,锌含量达到49 mg/kg后,其活性保持基本稳定,而AKP活性在Zn-79组最高。大口黑鲈全鱼和脊椎骨中的锌含量随饲料中锌含量的增加而上升,当饲料锌含量达到126 mg/kg (Zn-126)后,全鱼和脊椎骨中的锌含量不再显著增加,而全鱼铁、骨铁、骨锰含量和全鱼铁、锌沉积率则随饲料锌含量的增加而下降。研究表明,在半精制饲料中补充锌可以显著改善大口黑鲈的生长和饲料利用,提高血清免疫能力、全鱼锌和骨锌的沉积,以增重率、饲料系数、全鱼锌和骨锌为指标,基于折线模型确定大口黑鲈幼鱼对饲料中锌的需求量分别为45.5、44.6、121.8和130.5 mg/kg干物质。  相似文献   

6.
甘草次酸对团头鲂生长、脂肪沉积与抗氧化功能的影响   总被引:3,自引:2,他引:1  
为探讨甘草次酸对团头鲂生长、脂肪沉积和抗氧化功能的影响,选取均体质量为(15.63±0.04)g的团头鲂幼鱼420尾,随机分在15个网箱中,分别以甘草次酸水平为0、0.15、0.30、0.45和0.60 g/kg的5种饲料投喂8周。结果发现,饲料添加甘草次酸对团头鲂增重率、特定生长率、饵料系数没有显著影响(P0.05)。甘草次酸可以显著降低实验鱼脏体比、肝体比、腹脂率及肝脏脂肪含量(P0.05),但对全鱼体组成和肌肉脂肪含量无显著影响(P0.05)。比对血浆脂肪代谢酶可见,0.30~0.60 g/kg甘草次酸添加组血浆总胆固醇含量较对照组显著下降(P0.05);而甘油三酯、游离脂肪酸和高密度脂蛋白胆固醇含量无显著变化(P0.05)。肝脏中脂蛋白酯酶、肝酯酶和总酯酶活性在添加甘草次酸后显著降低(P0.05);0.30~0.60 g/kg甘草次酸添加组脂肪酶活性显著高于其他各组(P0.05)。饲料添加甘草次酸可以显著提高肝脏超氧化物歧化酶活性和还原型谷胱甘肽含量,降低丙二醛含量(P0.05)。研究表明,饲料中添加0.30~0.45 g/kg甘草次酸时,显著降低了团头鲂内脏团的脂肪沉积,改善了鱼体脂肪分布,这可能是由于甘草次酸加强脂解作用,提高脂肪代谢酶活性导致的;饲料中添加甘草次酸也可显著提高团头鲂的抗氧化能力。  相似文献   

7.
吉富罗非鱼对饲料中泛酸的需要量   总被引:1,自引:1,他引:0  
黄凤  蒋明  文华  吴凡  刘伟  田娟  杨长庚 《水产学报》2014,38(9):1530-1537
选用初始体质量为(79.4±1.6)g吉富罗非鱼270尾,随机分成6组(每组3重复,每重复15尾),养殖于500 L养殖桶中,分别饲喂泛酸含量为0.5、4.8、9.5、18.2、36.3和74.4 mg/kg纯化饲料12周,研究确定其对泛酸的需要量。结果表明,随着饲料泛酸含量增加,吉富罗非鱼增重率、肝脏和肌肉泛酸含量均呈先线性增加后稳定的趋势;肥满度和肝体比呈先增加后降低的趋势,均以4.8 mg/kg组最高。全鱼水分含量先降低后增加,全鱼脂肪含量呈现与水分含量相反的趋势。肝总脂含量显著降低,添加组显著低于未添加组(P0.05)。血清高密度脂蛋白含量随着饲料泛酸含量的增加而显著增加(P0.05)。折线回归分析结果表明,吉富罗非鱼(80~350 g)获得最佳生长时对饲料泛酸需要量为10.5 mg/kg,饲料中12.6和13.5mg/kg泛酸可以分别使肝脏和肌肉泛酸累积量达到最大。  相似文献   

8.
叶黄素对七彩神仙鱼生长和体色的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
为研究叶黄素对七彩神仙鱼体色和生长的影响,在"牛心汉堡"饲料中分别添加0、50、100、200、300和400 mg/kg叶黄素,饲喂初始平均体质量(10.3±0.3)g的七彩神仙鱼8周。结果显示,添加叶黄素50~200 mg/kg,对鱼体增重率无显著影响,但添加量达200 mg/kg后,饲料系数显著增大,添加量达300 mg/kg后,增重率显著降低。在养殖4周、8周时,鱼体皮肤亮度(L*)无显著变化,皮肤黄度(b*)和叶黄素含量随叶黄素添加量增加而显著升高;8周时,各叶黄素添加组的皮肤b*值和叶黄素含量显著高于4周时,当叶黄素添加量达300 mg/kg后,皮肤b*值(4周、8周)和全鱼叶黄素含量(8周)趋于稳定;4周时,各处理组间的皮肤红度(a*)无显著差异;8周时,当叶黄素添加量达100 mg/kg后,皮肤a*值显著降低;饲料中添加300 mg/kg叶黄素显著提高了七彩神仙鱼肝脏总抗氧化能力。研究表明,在饲料中添加叶黄素可有效改善七彩神仙鱼体表黄色,提高肝脏总抗氧化能力,但高添加量的叶黄素会降低鱼体生长性能,七彩神仙鱼饲料中的叶黄素添加量建议为200~300 mg/kg。  相似文献   

9.
胡颂钦  穆俏俏  林艳  缪凌鸿  刘波  董在杰 《水产学报》2023,47(6):069612-069612
为研究饲料中添加茶多酚对团头鲂幼鱼生长性能、饲料利用和抗氧化能力的影响,选取240尾初始体重为(3.5±1.0) g的团头鲂幼鱼,随机分为4组,每组3个重复,每个重复20尾。实验配制了茶多酚添加量分别为0 (对照组)、100、300和500 mg/kg的等氮等能饲料,饲喂团头鲂幼鱼8周后测定鱼体生长性能、肌肉组成、血液生化指标和肝肠抗氧化指标。结果显示,摄食300 mg/kg茶多酚组的增重率(WGR)相较于对照组显著提高,蛋白质效率(PER)显著高于低添加量组,饲料系数(FCR)显著降低。500 mg/kg茶多酚显著降低了鱼体肌肉粗脂肪含量。茶多酚的添加显著降低了血浆葡萄糖(GLU)含量,且300和500 mg/kg茶多酚添加组团头鲂肝肠丙二醛(MDA)含量均显著低于无添加组。100和300mg/kg茶多酚添加组鱼体肝肠组织中还原性谷胱甘肽(GSH)含量显著高于对照组。此外,300 mg/kg茶多酚添加组鱼体肝脏的总抗氧化能力(T-AOC)及谷胱甘肽过氧化物酶(GSHPx)活性也显著高于对照组。养殖实验结束后,通过腹腔注射浓度为50%的四氯化碳(CCl4)溶液诱导...  相似文献   

10.
任春  文华  黄凤  蒋明  吴凡  刘伟  田娟  杨长庚  吴金平 《水产学报》2015,39(4):539-546
采用维生素B1(VB1)含量为0.08(对照组)、0.57、1.13、2.09、4.11和8.09 mg/kg的6种纯化饲料,分别饲养初始体质量为(64.4±1.5)g的吉富罗非鱼12周,研究VB1对其生长性能、部分血清生化指标、肝脏VB1蓄积量及转酮醇酶基因表达量的影响,以确定其对饲料VB1的需要量.结果显示,随着饲料中VB1含量增加,吉富罗非鱼增重率先呈线性增加后趋于稳定,当饲料中VB1含量为1.13、2.09、4.11、8.09 mg/kg时增重率达最大.吉富罗非鱼肝脏VB1含量随着饲料VB1含量增加不断增大,当增加到2.09 mg/kg后趋于稳定.饲料中缺乏VB1显著提高血清丙酮酸含量(P<0.05),但对全鱼水分、粗脂肪、粗蛋白、灰分无显著性影响(P>0.05).饲料中添加VB1显著提高血清高密度脂蛋白胆固醇和肝脏转酮醇酶基因表达量(P<0.05).饲料中VB1含量大于1.13 mg/kg各组的肝脏转酮醇酶活性显著高于VB1含量小于0.57 mg/kg组(P<0.05).折线回归分析表明,吉富罗非鱼(64 ~325 g)获得最佳生长时对饲料VB1需要量为1.16 mg/kg;肝脏VB1蓄积量达到最大时,对VB1的需要量为2.06mg/kg.  相似文献   

11.
Mebendazole (MBZ) is a broad‐spectrum benzimidazole methylcarbamate anthelmintic used widely in animal husbandry and aquaculture. However, there is no information available on the pharmacokinetic behavior of MBZ in blunt snout bream, Megalobrama amblycephala. In this study, pharmacokinetic parameters of MBZ were estimated in blunt snout bream after intravascular (3 mg/kg body weight [BW]) and oral (20 mg/kg BW) administration. The analyses of plasma samples were performed using ultra performance liquid chromatography with ultraviolet detector. After intravascular administration, plasma concentration–time curves were best described by a two‐compartment open model. The distribution half‐life (t1/2α), elimination half‐life (t1/2β), and area under the concentration–time curve (AUC) of blunt snout bream were 0.1 h, 27.9 h, and 56666.0 h.µg/L, respectively. After oral administration, a one‐compartment open model with first‐order absorption best fit the plasma data. The absorption half‐life (t1/2Ka), elimination half‐life (t1/2Ke), peak concentration (Cmax), time‐to‐peak concentration (Tmax), and AUC of blunt snout bream were estimated to be 1.9 h, 34.6 h, 918.1 µg/L, 8.4 h, and 54201.4 h.µg/L, respectively. The oral bioavailability (F) was 14.3 %. The pharmacokinetics of MBZ in blunt snout bream displayed low bioavailability, relatively rapid absorption, and relatively rapid elimination.  相似文献   

12.
A 9-week feeding experiment was conducted to evaluate the effects of dietary vitamin E (VE) supplementation on growth performance, liver fatty acid composition, lipid peroxidation and peroxisome proliferator-activated receptors (PPAR) genes expressions in blunt snout bream juveniles. Fish (average initial weight: 0.59 g) were fed diet supplemented with 0, 50, 100, 300 and 500 mg α-tocopherol acetate/kg in triplicates, which were found to, respectively, contain 11.2, 56.3, 114.6, 306.5 and 588.4 mg α-tocopherol/kg diet. Results showed that final weight, body weight gain and specific growth rate significantly increased with increasing dietary VE supplemented level from 11.2 to 56.3 mg/kg. When the broken-line model was employed to estimate the adequate requirement of vitamin E based on body weight gain, the optimal level was 55.5 mg/kg in diet. Hepatosomatic index value significantly decreased with incremental dietary VE levels. However, liver VE concentration showed a direct relationship with the dietary VE level. The percentages of 20:5n-3, 22:6n-3 and total n-3 long chain polyunsaturated fatty acids in liver increased with increasing dietary VE supplementation. Meanwhile, the expressions of PPAR-α, PPAR-β and PPAR-γ in liver were down-regulated by supplementation of dietary VE level from 56.3 to 588.4 mg/kg. In conclusion, supplementation of more than 55.5 mg/kg vitamin E may improve growth and increase n-3 LC-PUFA content in blunt snout bream, which is beneficial to human consumer.  相似文献   

13.
An eight‐week feeding trial was conducted to determine the dietary histidine requirement of juvenile blunt snout bream. The results showed that final body weight, weight gain rate and specific growth rate significantly increased with increasing dietary histidine levels up to 9.9 g/kg (p < .05) and decreased gradually thereafter, while feed conversion ratio showed a converse trend. The survival rate, condition factor, viscerosomatic and hepatosomatic index were not significantly affected by the graded dietary histidine levels (p > .05). About 9.9 g/kg dietary histidine level significantly improved whole‐body protein and lowered moisture content. The contents of plasma total protein, cholesterol, urea and triglyceride levels were not significantly affected by dietary histidine levels. About 9.9 g/kg dietary histidine level significantly upregulated target of rapamycin and insulin‐like growth factor mRNA levels (p < .05), and 12.1 g/kg and 14.2 g/kg dietary histidine levels significantly upregulated eukaryotic translation initiation factor 4E‐binding protein 2 and ribosomal protein S6 kinase‐polypeptide 1 mRNA levels (p < .05). Based on second‐degree polynomial regression analysis of weight gain rate, and specific growth rate against dietary histidine levels, the dietary histidine requirement for juvenile blunt snout bream was estimated to be 11.2 g/kg of diet, corresponding to 36.1 g/kg of dietary protein.  相似文献   

14.
The impact of stocking density on growth performance, physiological indicators, and body composition of juvenile blunt snout bream in recirculating aquaculture system was investigated in this study. Juvenile blunt snout bream were raised at stocking densities of 75, 150, 225, 300, and 450 fish/m3 for 12 wk with three replicate tanks at each density. All treatment tanks were supplied with water from the same recirculating system to ensure uniformity of water quality across groups. This study has shown that higher stocking densities had a negative effect on individual growth performance. Final body mass, specific growth rate (SGR), and weight gain decreased significantly as stocking density increased. Individual body mass as well as body length were more uniform in fish stocked at densities of 75 and 150 fish/m3 than in other groups. Stocking densities of 225 and 300 fish/m3 resulted in significant increases in serum total protein, triglyceride, lactate, and cholesterol levels, whereas blood glucose concentrations decreased significantly. In addition, decreased body lipid content and increased body moisture content were observed at stocking densities of 300 and 450 fish/m3. Overall, a density of 150 fish/m3 resulted in higher SGR and more uniform size among juvenile blunt snout bream.  相似文献   

15.
A nine‐week feeding trial was performed to determine the dietary linolenic acid (LNA; 18:3n–3) requirements of juvenile blunt snout bream. Six iso‐nitrogenous, semi‐purified diets were prepared with different concentrations of LNA (0–25 g/kg). Dietary LNA had no significant effects on survival rate. However, final fish weight, weight gain (WG), specific growth rate (SGR) and feed efficiency ratio (FER) increased with increasing dietary LNA concentrations up to 20 g/kg. Dietary LNA increased muscle LNA and total n‐3 polyunsaturated fatty acid (PUFA) contents, but decreased total saturated fatty acid content. Fish fed 20 g/kg LNA had the highest plasma alkaline phosphatase activity, total protein, albumin and white blood cell count levels. Additionally, fish fed 20 g/kg LNA had higher triglyceride levels than control fish. Plasma glucose increased with increasing dietary LNA concentrations. Superoxide dismutase and glutathione peroxidase activities significantly increased with increasing dietary LNA concentrations up to 15 g/kg. Based on SGR and FER, the optimal dietary LNA requirements of juvenile blunt snout bream were 17.5 and 15.6 g/kg respectively.  相似文献   

16.
进行了主养1龄团头舫鱼种和2龄团头鲂养成的高产试验,研究了团头舫和配养品种的放养密度、饵料配方、水质管理、投饵方法等技术。结果:1年育成大规格鱼种,2年养成商品鱼,团头鲂养殖周期由3年缩短为2年,平均每亩净产团头鲂鱼种397.50kg,平均尾重33.97g;平均每亩净产团头舫成鱼461.02kg,平均尾重347.3g。专家鉴定认为:本研究高产技术达国内先进水平。  相似文献   

17.
A 60‐d feeding trial was conducted to evaluate the effects of different dietary oil sources on growth, fatty acid composition, peroxisome proliferator‐activated receptor (PPAR) gene expression levels, and antioxidant responses of blunt snout bream, Megalobrama amblycephala, fingerlings. Fish (average initial weight, 0.35 ± 0.01 g) were fed five experimental diets respectively containing fish oil (FO), soybean oil, canola oil, peanut oil, and palm oil (PaO). Results showed that body weight gain, specific growth rate, and feed conversion ratio did not significantly differ among treatments. Fish fed PaO diet showed significantly higher hepatosomatic index value and liver lipid content than those fed FO diet. The FO group showed significantly higher liver eicosapentaenoic acid (20:5n‐3) + docosahexaenoic acid (22:6n‐3) concentrations than other groups in both neutral lipid and polar lipid fractions. The mRNA expression levels of PPAR‐α and PPAR‐γ in the liver were significantly increased by feeding vegetable oil diets compared to FO. The activities of catalase, superoxide dismutase, and glutathione peroxidase in livers of fish fed PaO diet were lower than those fed FO diet. Meanwhile, PaO group had significantly lower malondialdehyde value than other groups. In conclusion, we suggested that a combination of FO and vegetable oil diet should be used in feed formulations for blunt snout bream fingerlings.  相似文献   

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