技術(shù)文章(zhang)
Technical articles截至2023年7月31日(ri),上海騰(teng)拔質(zhì)構(gòu)儀(yi)助力用(yong)戶發(fā)表(biao)水產(chǎn)(chan)相關(guān)論(lun)文30篇,具體詳情如(ru)下:
用戶 | 發(fā)表論(lun)文 | 期刊 | 發(fā)表(biao)時(shí)間 |
上海(hai)海洋大學(xué)(xue)(12篇) | Dietary ? supplementation of kaempferol improved the growth, lipid metabolism and flesh ? quality of juvenile grass carp (Ctenopharyngodon idellus) based on ? metabolomics 基于代謝(xie)組學(xué)(xue)膳食補(bǔ)充(chong)山nai酚改善(shan)草魚幼魚的生(sheng)長(zhǎng)、脂質(zhì)代謝(xie)和肌(ji)肉品(pin)質(zhì) | Animal Feed ? Science and Technology(IF:3.2) | 2023年 |
Dietary ? supplementation of leucine improved the flesh quality of largemouth bass, Micropterus ? salmoides through TOR, FoxO3a and MRFs regulation 膳食補(bǔ)(bu)充亮(liang)氨酸(suan)通過(guò)調(diào)節(jié)TOR、FoxO3a和MRFs來(lái)改善大口(kou)黑鱸肌肉(rou)品質(zhì) | Aquaculture(IF:4.5) | 2023年 | |
Effects of replacing dietary ? fish meal with Clostridium autoethanogenum protein on growth and flesh ? quality of Pacific white shrimp (Litopenaeus ? vannamei) 用乙醇梭菌蛋(dan)白取(qu)代魚粉對(duì)南(nan)美白(bai)對(duì)蝦(xia)生長(zhǎng)和肌肉品(pin)質(zhì)的影響 | Aquaculture(IF:4.5) | 2022年 | |
Effects of replacing fishmeal with cottonseed protein concentrate on ? growth performance, flesh quality and gossypol deposition of ? largemouth bass (Micropterus ? salmoides) 棉籽濃縮(suo)蛋白取代魚粉(fen)對(duì)大(da)口黑鱸(lu)生長(zhǎng)性能(neng)、肌肉品質(zhì)和棉(mian)子酚沉(chen)積的影(ying)響 | Aquaculture(IF:4.5) | 2022年 | |
Dietary rutin promoted the growth, serum ? antioxidant response and flesh collagen, free amino acids ? contents of grass carp (Ctenopharyngodon idella) 膳食蘆丁(ding)促進(jìn)草魚生(sheng)長(zhǎng)、血清(qing)抗氧化(hua)反應(yīng)和肌肉膠(jiao)原蛋白、游(you)離氨基酸(suan)含量(liang) | Aquaculture Nutrition (IF:3.5) | 2020年 | |
Effects of three active components in Eucommia ? ulmoides on growth and flesh quality of grass carp (Ctenopharyngodon ? idellus) based on transcriptomics 基于轉(zhuǎn)錄(lu)組學(xué)研究杜仲(zhong)種三種活(huo)性成分對(duì)草(cao)魚生長(zhǎng)和肌(ji)肉品質(zhì)的影(ying)響 | Aquaculture Nutrition (IF:3.5) | 2020年 | |
Dietary effects of cottonseed protein concentrate ? substituting fishmeal on the growth and flesh quality of Pacific white shrimp ? (Litopenaeus vannamei) 飼喂棉籽濃(nong)縮蛋白替代(dai)魚粉(fen)對(duì)南(nan)美白對(duì)蝦(xia)生長(zhǎng)和(he)肌肉品(pin)質(zhì)的影(ying)響 | Aquaculture Reports (IF:3.7) | 2023年 | |
Dietary effects of fish meal substitution with Clostridium ? autoethanogenum on flesh quality and metabolomics of largemouth bass (Micropterus ? salmoides) 乙醇梭菌替(ti)代魚粉對(duì)大(da)口黑鱸肌(ji)肉品質(zhì)(zhi)和代謝組(zu)學(xué)的影響(xiang) | Aquaculture Reports (IF:3.7) | 2022年 | |
蠶豆水(shui)提取(qu)物及維生素C&E 對(duì)草魚肌肉(rou)質(zhì)構(gòu)、營(yíng)養(yǎng)成(cheng)分以及氧化(hua)應(yīng)激的影響(xiang) | 水產(chǎn)學(xué)報(bào)(bao) | 2022年 | |
飼料中(zhong)添加(jia)滸苔對(duì)凡(fan)納濱對(duì)(dui)蝦生(sheng)長(zhǎng)性(xing)能和(he)肌肉品質(zhì)(zhi)的影響 | 水產(chǎn)學(xué)(xue)報(bào) | 2021年 | |
飼料中添加氯(lv)化鈉(na)對(duì)草魚生長(zhǎng)性(xing)能和肌肉品質(zhì)(zhi)的影響(xiang) | 水產(chǎn)學(xué)(xue)報(bào) | 2019年 | |
兒茶素對(duì)草(cao)魚生長(zhǎng)性能、血(xue)清抗(kang)氧化(hua)指標(biāo)和肌(ji)肉品質(zhì)的影響(xiang) | 動(dòng)物(wu)營(yíng)養(yǎng)學(xué)報(bào) | 2020年 | |
華南農(nóng)業(yè)大學(xué)(xue)(7篇) ? | Feeding effects of low-level fish meal replacement ? by algal meals of Schizochytrium limacinum and Nannochloropsis ? salina on largemouth bass (Micropterus salmoides) 裂殖壺菌和(he)微擬球(qiu)藻海藻粉(fen)對(duì)魚粉低水平(ping)取代對(duì)大口(kou)黑鱸的飼(si)喂效果 | Aquaculture(IF:4.5) | 2022年 |
Dietary supplementation with n-3 high unsaturated fatty acids decreases serum lipid levels and improves flesh quality in the ? marine teleost golden pompano Trachinotus ? ovatus 膳食補(bǔ)充n-3高不(bu)飽和脂肪酸降(jiang)低卵(luan)形鯧(chang)鲹血清(qing)脂質(zhì)水平和(he)改善肌(ji)肉品質(zhì) | Aquaculture(IF:4.5) | 2020年 | |
Magnesium supplementation in high carbohydrate ? diets: Implications on growth, muscle fiber development and flesh quality of Megalobrama ? amblycephala 高碳水化(hua)合物飲(yin)食中補(bǔ)(bu)充鎂對(duì)(dui)團(tuán)頭魴(fang)生長(zhǎng)、肌肉纖(xian)維發(fā)(fa)育和肌肉品質(zhì)(zhi)的影響 | Aquaculture Reports (IF:3.7) | 2022年 | |
Transcriptome analysis ? revealed changes of multiple genes involved in muscle hardness in grass carp ? (Ctenopharyngodon idellus) fed with faba bean meal | Food Chemistry (IF:8.8) | 2020年 | |
復(fù)合油(you)和低(di)魚粉(fen)飼料在卵形(xing)鯧鲹(shen)養(yǎng)殖應(yīng)用中(zhong)的效果評(píng)(ping)估 | 海洋漁業(yè)(ye) | 2022年 | |
復(fù)合動(dòng)植物(wu)蛋白質(zhì)飼料(liao)對(duì)大口黑鱸生(sheng)長(zhǎng)性能、肌肉(rou)品質(zhì)及氮、磷排(pai)放的影響(xiang) | 動(dòng)物營(yíng)(ying)養(yǎng)學(xué)報(bào) | 2021年 | |
液態(tài)和粉末脂(zhi)肪對(duì)吉(ji)富羅非魚(yu)幼魚生長(zhǎng)、健康(kang)及肌(ji)肉品質(zhì)的(de)影響(xiang) | 水產(chǎn)學(xué)報(bào)(bao) | 2019年 | |
中國(guó)(guo)水產(chǎn)科學(xué)研(yan)究院珠江(jiang)水產(chǎn)(chan)研究所(6篇) | Reactive oxygen species ? (ROS)-mediated regulation of muscle texture in grass carp fed with dietary ? oxidants 用膳(shan)食氧化(hua)物飼喂(wei)來(lái)活性氧中介(jie)調(diào)節(jié)草魚(yu)肌肉質(zhì)構(gòu)(gou) | Aquaculture(IF:4.5) | 2021年 |
Effects of four faba bean extracts on growth parameters, textural quality, oxidative ? responses, and gut characteristics in grass carp 四種蠶豆(dou)提取物對(duì)(dui)草魚生長(zhǎng)指標(biāo)(biao)、質(zhì)構(gòu)(gou)品質(zhì)、氧化反(fan)應(yīng)和腸道特(te)征的影響 | Aquaculture(IF:4.5) | 2020年 | |
Growth ? performance, intestinal microbiota and immune response of grass carp fed ? isonitrogenous and isoenergetic diets containing faba bean extracts 飼喂(wei)含蠶豆提(ti)取物的(de)等氮等能(neng)量飼料草(cao)魚生長(zhǎng)性能(neng)、腸道微生物(wu)和免疫反(fan)應(yīng) | Aquaculture Reports (IF:3.7) | 2022年 | |
Proteomic and metabolomic ? basis for improved textural quality in crisp grass carp (Ctenopharyngodon ? idellus C.et V) fed with a natural dietary prooxidant 飼喂(wei)一種天然膳(shan)食促氧化劑(ji)改善脆肉鯇質(zhì)(zhi)構(gòu)品(pin)質(zhì)的蛋(dan)白組學(xué)和代(dai)謝組(zu)學(xué)機(jī)制 | Food ?Chemistry (IF:8.8) | 2020年 | |
Quantitative phosphoproteomic ? analysis of soft and firm grass carp ? muscle 定量磷酸(suan)蛋白(bai)組學(xué)分析軟和(he)硬草魚肌肉 | Food ?Chemistry (IF:8.8) | 2020年 | |
Value-Added ? Carp Products: Multi-Class Evaluation of Crisp Grass Carp by Machine ? Learning-Based Analysis of Blood Indexes 增值魚產(chǎn)品(pin):通過(guò)(guo)基于機(jī)(ji)器學(xué)習(xí)分(fen)析血液指標(biāo)來(lái)(lai)多類評(píng)估(gu)脆肉鯇 | Foods (IF:5.2) | 2020年 | |
汕頭(tou)大學(xué)(2篇) | Sexual ? dimorphism in the texture properties of swim bladder of Nibea coibor and ? its molecular basis revealed by comparative transcriptome analysis 通過(guò)比(bi)較轉(zhuǎn)錄組(zu)學(xué)分析來(lái)(lai)揭示淺(qian)色黃姑魚魚鰾(biao)質(zhì)構(gòu)特性(xing)性別差異及其(qi)分子基礎(chǔ) | Aquaculture Reports (IF:3.7) | 2022年 |
Dietary ? Saccharina japonica is a natural and effective tool to fortify marine teleost ? black sea bream fillets with iodine: effects on growth, flesh quality, and ? serum thyroid hormones 膳食海(hai)帶是(shi)用碘(dian)強(qiáng)化海洋硬骨(gu)魚黑鯛魚片(pian)的一種(zhong)天然、有(you)限的工具:對(duì)(dui)生長(zhǎng)、肌肉品質(zhì)(zhi)和血清(qing)甲狀(zhuang)腺素的影(ying)響 | Journal of Applied Phycology (IF:3.3) | 2020年 | |
廣東省農(nóng)(nong)科院動(dòng)物科(ke)學(xué)研究(jiu)所(1篇) | Effects ? of replacing soybean meal and rapeseed meal with faba bean meal on growth ? performance and muscle quality of tilapia (Oreochromis niloticus) 用蠶豆粉替(ti)代大豆粉和(he)菜籽粕(po)粉對(duì)羅(luo)非魚生長(zhǎng)性(xing)能和肌肉品(pin)質(zhì)的影響 | Aquaculture Reports (IF:3.7) | 2022年 |
浙江海洋(yang)大學(xué)(1篇) | 殼聚糖(tang)對(duì)煎烤魷(you)魚品質(zhì)(zhi)及甲醛(quan)生成(cheng)的影響 | 水產(chǎn)學(xué)報(bào) | 2018年 |
華南理(li)工大學(xué)(1篇) | 室內(nèi)循環(huán)養(yǎng)(yang)殖系統(tǒng)中(zhong)曝氣流量對(duì)尼(ni)羅羅(luo)非魚生長(zhǎng)的(de)影響(xiang) | 水產(chǎn)學(xué)報(bào) | 2020年 |