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

A mouse model for cerebral/cortical visual impairment (CVI) impairs vision and disrupts the spatial frequency tuning of neurons in visual cortex

脑/皮层视觉障碍(CVI)小鼠模型会损害视力并破坏视觉皮层神经元的空间频率调谐。

Oakes, Dana K; Attaway, Cecilia A; Zeng, Wenxin; Cai, Jun; Guido, William; McGee, Aaron W

A mouse model for cerebral/cortical visual impairment (CVI) impairs vision and disrupts the spatial frequency tuning of neurons in visual cortex

脑/皮层视觉障碍(CVI)小鼠模型会损害视力并破坏视觉皮层神经元的空间频率调谐。

Oakes, Dana K; Attaway, Cecilia A; Zeng, Wenxin; Cai, Jun; Guido, William; McGee, Aaron W

Automated Fabrication of Smart Strain Sensing Threads

智能应变传感丝线的自动化制造

Ozgul, Ege; Zeng, Wenxin; Sonkusale, Sameer

Restoration of CPEB4 prevents muscle stem cell senescence during aging

CPEB4 的恢复可防止衰老过程中肌肉干细胞衰老

Wenshu Zeng, Wenxin Zhang, Erin H Y Tse, Jing Liu, Anqi Dong, Kim S W Lam, Shaoyuan Luan, Wai Hing Kung, Tsz Ching Chan, Tom H Cheung

Author Correction: Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling

作者更正:新生小鼠腹侧呼吸柱吸气爆发起始的同步化是由电紧张耦合介导的。

Gourévitch, Boris; Pitts, Teresa; Iceman, Kimberly; Reed, Mitchell; Cai, Jun; Chu, Tianci; Zeng, Wenxin; Morgado-Valle, Consuelo; Mellen, Nicholas

Tunable Radio Frequency Antenna Based on Phase Change Materials

基于相变材料的可调谐射频天线

Wang, Wei; Zeng, Wenxin; Sonkusale, Sameer R

A Novel Tree Shrew Model of Chronic Experimental Autoimmune Uveitis and Its Disruptive Application

一种新型树鼩慢性实验性自身免疫性葡萄膜炎模型及其颠覆性应用

Hu, Kaijiao; Lv, Longbao; Huang, Hui; Yin, Guangnian; Gao, Jie; Liu, Jianping; Yang, Yaying; Zeng, Wenxin; Chen, Yan; Zhang, Ni; Zhang, Feiyan; Ma, Yuhua; Chen, Feilan

Recent progress in electrospun nanomaterials for wearables

静电纺丝纳米材料在可穿戴设备领域的最新进展

Das, Riddha; Zeng, Wenxin; Asci, Cihan; Del-Rio-Ruiz, Ruben; Sonkusale, Sameer

Temperature Sensing Shape Morphing Antenna (ShMoA)

温度传感形状变形天线(ShMoA)

Zeng, Wenxin; Wang, Wei; Sonkusale, Sameer

Microfluidic-based fabrication and characterization of drug-loaded PLGA magnetic microspheres with tunable shell thickness

基于微流控技术的载药PLGA磁性微球的制备与表征,该微球具有可调的壳层厚度。

He, Chunpeng; Zeng, Wenxin; Su, Yue; Sun, Ruowei; Xiao, Yin; Zhang, Bolun; Liu, Wenfang; Wang, Rongrong; Zhang, Xun; Chen, Chuanpin