ZhangYJiangHLongYLiJ. The evaluation value of the modified Lund–Kennedy nasal endoscopy score on the efficacy of sublingual immunotherapy for allergic rhinitis. Am J Rhinol Allergy.2024;38(6):366-372.
2.
LiaoYZhangXTaoS, et al.Endoplasmic reticulum stress promotes telomerase reverse transcriptase expression contributes to development of allergic rhinitis. Am J Rhinol Allergy.2024;38(6):384-395.
3.
YiruiLTaoLRuowuL, et al.Malvidin from Malva sylvestris L. ameliorates allergic responses in ovalbumin-induced allergic rhinitis mouse model via the STAT6/GATA3 pathway. Am J Rhinol Allergy.2024;38(6):403-412.
4.
FeitNZKloostermanNLaPointeKA, et al.Intranasal trigeminal function in aging adults. Am J Rhinol Allergy.2024;38(6):413-420.
5.
DharSKothariDSTomescuAL, et al.Antimicrobial prescription patterns for acute sinusitis 2015–2022: a comparison to published guidelines. Am J Rhinol Allergy.2024;38(6):421-427.
6.
CandeloEBohorquez-CaballeroADAvila-CastanoK, et al.Predictors for development of chronic rhinosinusitis in transplant recipients. Am J Rhinol Allergy.2024;38(6):373-383.
7.
KimDHStybayevaGHwangSH. Comparative effectiveness of dupilumab versus sinus surgery for chronic rhinosinusitis with polyps: systematic review and a meta-analysis. Am J Rhinol Allergy.2024;38(6):428-436.
8.
WarnMMellerLLTChanD, et al.Assessing the readability, reliability, and quality of AI-modified and generated patient education materials for endoscopic skull base surgery. Am J Rhinol Allergy.2024;38(6):396-402.