日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Potential use of insect protein and phytonutrient-based tropical plant supplementation on rumen fermentation characteristics and microbial protein synthesis in Thai native beef cattle

昆虫蛋白和植物营养素类热带植物补充剂对泰国本地肉牛瘤胃发酵特性和微生物蛋白合成的潜在影响

Phesatcha, Burarat; Phesatcha, Kampanat; Matra, Maharach; Ampapon, Thiwakorn; Wanapat, Metha

Black soldier fly protein-based microencapsulation of lemongrass oil improves rumen fermentation efficiency and mitigates methane production in vitro

黑水虻蛋白基柠檬草油微囊化可提高瘤胃发酵效率并减少体外甲烷产生

Matra, Maharach; Suriyapha, Chaichana; Dagaew, Gamonmas; Prachumchai, Rittikeard; Phupaboon, Srisan; Sommai, Sukruthai; Haitook, Theerachai; Kunhareang, Sajee; Wanapat, Metha

145 Antibiotic resistance in animal microbiomes and pathogens

145 动物微生物组和病原体中的抗生素耐药性

Wanapat, Metha; Cherdthong, Anusorn; Phesatcha, Kampanat; Kang, Sungchhang; Bowhay, Ciana; Johnson, Tim A

In vitro fermentation characteristics, microbial changes and gas production of microencapsulated phytonutrient pellets at varying dietary crude protein levels

不同膳食粗蛋白水平下微胶囊化植物营养素颗粒的体外发酵特性、微生物变化和产气量

Suriyapha, Chaichana; Pongsub, Sunisa; Sommai, Sukruthai; Phupaboon, Srisan; Dagaew, Gamonmas; Muslykhah, Uswatun; Matra, Maharach; Chanthakhoun, Vongpasith; Haitook, Theerachai; Wanapat, Metha

The Effects of Fermenting Psophocarpus tetragonolobus Tubers with Candida tropicalis KKU20 as a Soybean Meal Replacement Using an In Vitro Gas Technique

利用体外气体技术研究以热带假丝酵母KKU20发酵四棱豆块茎作为豆粕替代品的效果

Surakhai, Thiraphat; Suntara, Chanon; Srichompoo, Pachara; Wanapat, Metha; Chankaew, Sompong; Cherdthong, Anusorn

Exploring Tectona grandis Linn. f. Leaf Extract as a Functional Feed Additive with Antioxidant and Nutraceutical Potential for Livestock

探索柚木(Tectona grandis Linn. f.)叶提取物作为具有抗氧化和营养保健潜力的功能性饲料添加剂在畜牧业中的应用

Montri, Nattaya; Wanapat, Metha; Kang, Sungchhang; Cheas, Seangla; Cherdthong, Anusorn; Gunun, Pongsatorn; Gunun, Nirawan; Foiklang, Suban; Kongmun, Phongthorn; Srithat, Dutsadee; Tongkasee, Pongsathorn; Polyorach, Sineenart

Encapsulated phytogenic oils enhance in vitro rumen fermentation and reduce methane emissions

包埋植物油可增强体外瘤胃发酵并减少甲烷排放

Phupaboon, Srisan; Muslykhah, Uswatun; Suriyapha, Chaichana; Sommai, Sukruthai; Matra, Maharach; Dagaew, Gamonmas; Prachumchai, Rittikeard; Wanapat, Metha

Effects of microencapsulated phytonutrients from fruit peel pellet on rumen fermentation efficiency, in vitro degradability, methane production and microbial diversity

果皮颗粒中微胶囊化植物营养素对瘤胃发酵效率、体外降解率、甲烷产量和微生物多样性的影响

Sommai, Sukruthai; Suntara, Chanon; Matra, Maharach; Phupaboon, Srisan; Dagaew, Gamonmas; Suriyapha, Chaichana; Prachumchai, Rittikeard; Wanapat, Metha

Effects of Mongolian Bergenia crassifolia L. (root) extract on rumen methane emission and microbial community

蒙古岩白菜(根)提取物对瘤胃甲烷排放和微生物群落的影响

Zhao, Xinrui; Sukhbaatar, Otgonpurev; Kou, Linlin; Cheng, Xinming; Wanapat, Metha; Kamal, Mahmoud; Norovsambuu, Togtokhbayar; Sun, Zhanying; Cheng, Yanfen

The influence of substituting corn meal with pelleted winged bean (Psophocarpus tetragonolobus) tuber on intake, digestion and rumen fermentation in beef cattle

以颗粒状翼豆(Psophocarpus tetragonolobus)块茎替代玉米粉对肉牛采食量、消化率和瘤胃发酵的影响

Srichompoo, Pachara; Suriyapha, Chaichana; Suntara, Chanon; Chankaew, Sompong; Wanapat, Metha; Cherdthong, Anusorn