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

Identification of Volatile Organic Compounds as Natural Antifungal Agents Against Botrytis cinerea in Grape-Based Systems

在葡萄系统中鉴定挥发性有机化合物作为天然抗灰霉病剂

Martelanc, Mitja; Vukajlović, Tatjana Radovanović; Sternad Lemut, Melita; Žežlina, Lenart; Butinar, Lorena

Harnessing the Enzymatic Potential of Indigenous Yeast Strains: Screening and Evaluation for Biocontrol and Oenological Advancements

利用本土酵母菌株的酶活性:筛选和评价其在生物防治和酿酒学发展中的应用

Adesida, Rowland Adetayo; Reščič, Jan; Butinar, Lorena; Sternad Lemut, Melita

Force-velocity coupling limits human adaptation in physical human-robot interaction

力-速度耦合限制了人类在人机物理交互中的适应能力。

Edraki, Mahdiar; Serré, Hélène; Maurice, Pauline; Sternad, Dagmar

Emergent motor timing enhances time perception

新兴的运动时序增强了时间感知能力

Guo, Jianfei; Zhang, Zhaoran; Makwana, Mukesh; Sternad, Dagmar; Song, Joo-Hyun

Time-warping analysis for biological signals: methodology and application

生物信号的时间规整分析:方法论与应用

Krotov, Aleksei; Sharif Razavian, Reza; Sadeghi, Mohsen; Sternad, Dagmar

Dynamical stability and mechanical impedance are optimized when manipulating uncertain dynamically complex objects

在操控动态特性复杂的不确定物体时,需要优化动态稳定性和机械阻抗。

Lokesh, Rakshith; Sternad, Dagmar

A 3D-Printed Device for Unconstrained Grip Force Measurements: Design and Application in a Human Experiment

用于无约束握力测量的3D打印装置:设计及其在人体实验中的应用

Edraki, Mahdiar; Papadopoulos, Jim; Whitney, John Peter; Sternad, Dagmar

Human control of underactuated objects: Adaptation to uncertain nonlinear dynamics ensures stability

人机控制欠驱动物体:适应不确定的非线性动力学可确保稳定性

Lokesh, Rakshith; Sternad, Dagmar

Trial-By-Trial Variation In Upper Extremity Movement Smoothness After Acute Stroke Relates To Clinical Assessments And Corticospinal Tract Injury

急性卒中后上肢运动流畅性的逐次试验差异与临床评估和皮质脊髓束损伤相关

Cavanagh, Sarah K; Gochyyev, Perman; Nayeem, Rashida; Dusang, Aliceson N; Hamilton, Taya; DiCarlo, Julie A; Kautz, Steven A; Sternad, Dagmar; Walsh, Conor; Hochberg, Leigh; Lin, David J

Inferring control objectives in a virtual balancing task in humans and monkeys

推断人类和猴子在虚拟平衡任务中的控制目标

Sadeghi, Mohsen; Sharif Razavian, Reza; Bazzi, Salah; Chowdhury, Raeed H; Batista, Aaron P; Loughlin, Patrick J; Sternad, Dagmar