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

Cornmeal-based artificial diet improves development and reduces rearing costs of Spodoptera litura

以玉米粉为基础的人工饲料可改善斜纹夜蛾的生长发育并降低饲养成本。

Fan, Aning; Huang, Yibo; Kanjana, Nipapan; Wang, Hanzhang; Mao, Jianjun; Li, Yuyan; Zhang, Junjie; Zhang, Lisheng

The Effects of High Particulate Matter Levels on Platelet Recovery in Patients Receiving Prophylactic Platelet Transfusion

高浓度颗粒物对接受预防性血小板输注患者血小板恢复的影响

Hantrakool, Sasinee; Sriwichai, Maitree; Shaengkhamnang, Banphot; Leetrakool, Nipapan; Niprapan, Piangrawee; Kawichai, Sawaeng; Punnachet, Teerachat; Hantrakun, Nonthakorn; Piriyakhuntorn, Pokpong; Rattanathammethee, Thanawat; Chai-Adisaksopha, Chatree; Rattarittamrong, Ekarat; Tantiworawit, Adisak; Norasetthada, Lalita; Srichairatanakool, Somdet

Label-Free Detection of Waterborne Pathogens Using an All-Solid-State Laser-Induced Graphene Potentiometric Ion Flux Immunosensor

利用全固态激光诱导石墨烯电位离子通量免疫传感器对水传播病原体进行无标记检测

Preechakasedkit, Pattarachaya; Pulsrikarn, Chaiwat; Nuanualsuwan, Suphachai; Rattanadilok Na Phuket, Nawarat; Citterio, Daniel; Ruecha, Nipapan

The effects of ambient particulate matter air pollution on platelets and hemostasis

环境颗粒物空气污染对血小板和止血功能的影响

Hantrakool, Sasinee; Sriwichai, Maitree; Shaengkhamnang, Banphot; Leetrakool, Nipapan; Niprapan, Piangrawee; Kawichai, Sawaeng; Wannakul, Sitapak; Panyasit, Noppamas; Tuntivate, Pakinee; Wongtagan, Ornkamon; Natesirinilkul, Rungrote; Koonyosying, Pimpisid; Phinyo, Phichayut; Punnachet, Teerachat; Hantrakun, Nonthakorn; Piriyakhuntorn, Pokpong; Rattanathammethee, Thanawat; Chai-Adisaksopha, Chatree; Rattarittamrong, Ekarat; Tantiworawit, Adisak; Norasetthada, Lalita; Srichairatanakool, Somdet

Molecular Identification of the Glutaredoxin 5 Gene That Plays Important Roles in Antioxidant Defense in Arma chinensis (Fallou)

中华绒螯蟹(Arma chinensis (Fallou))中在抗氧化防御中发挥重要作用的谷胱甘肽还原酶5基因的分子鉴定

Luo, Qiaozhi; Shen, Zhongjian; Kanjana, Nipapan; Guo, Xingkai; Wu, Huihui; Zhang, Lisheng

Optimized extraction methodology for phenolic compounds in soil and plant tissues: Their implications in plant growth and gall formation

优化土壤和植物组织中酚类化合物的提取方法:它们对植物生长和虫瘿形成的影响

Kanjana, Nipapan; Li, Yuyan; Ahmed, Muhammad Afaq; Shen, Zhongjian; Zhang, Lisheng

Optimization of the determination of volatile organic compounds in plant tissue and soil samples: Untargeted metabolomics of main active compounds

植物组织和土壤样品中挥发性有机化合物测定的优化:主要活性化合物的非靶向代谢组学

Nipapan Kanjana, Muhammad Afaq Ahmed, Zhongjian Shen, Yuyan Li, Lisheng Zhang

Evaluation of the interaction between SARS-CoV-2 spike glycoproteins and the molecularly imprinted polypyrrole

评估SARS-CoV-2刺突糖蛋白与分子印迹聚吡咯之间的相互作用

Lomae, Atchara; Preechakasedkit, Pattarachaya; Hanpanich, Orakan; Ozer, Tugba; Henry, Charles S; Maruyama, Atsushi; Pasomsub, Ekawat; Phuphuakrat, Angsana; Rengpipat, Sirirat; Vilaivan, Tirayut; Chailapakul, Orawon; Ruecha, Nipapan; Ngamrojanavanich, Nattaya; Ratautaite, Vilma; Boguzaite, Raimonda; Brazys, Ernestas; Plausinaitis, Deivis; Ramanavicius, Simonas; Samukaite-Bubniene, Urte; Bechelany, Mikhael; Ramanavicius, Arunas

Ultrarapid and high-resolution HLA class I typing using transposase-based nanopore sequencing applied in pharmacogenetic testing

利用基于转座酶的纳米孔测序技术进行超快速、高分辨率的HLA I类分型,应用于药物遗传学检测

Nampeung Anukul,Piroon Jenjaroenpun,Chonticha Sirikul,Natnicha Wankaew,Pattaraporn Nimsamer,Ekkapong Roothumnong,Manop Pithukpakorn,Nipapan Leetrakool,Thidathip Wongsurawat

Genotyping Approach to Predict Coa and Cob Antigens in Thai Blood Donor Populations

基因分型方法预测泰国献血者群体中的 Coa 和 Cob 抗原

Oytip Nathalang, Kamonchanok Asisathaporn, Kamphon Intharanut, Wanlapa Chaibangyang, Nipapan Leetrakool, Supattra Mitundee, Sasitorn Bejrachandra