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

Modulation of Posterior Insula Selectively Enhances Nociceptive Sensory Gating in Humans

调节后岛叶可选择性地增强人类的伤害性感觉门控

Isaac, Gabriel; Kapoor, Aditya; Strohman, Andrew; Legon, Wynn

Focused Ultrasound Modulates Dopamine in a Mesolimbic Reward Circuit.

聚焦超声调节中脑边缘奖赏回路中的多巴胺

Olaitan Greatness, Ganesana Mallikarjunarao, Strohman Andrew, Lynch Wendy J, Legon Wynn, Venton B Jill

Neuromodulation of the Cingulate Cortex for Pain

神经调控扣带皮层以缓解疼痛

Strohman, Andrew; Legon, Wynn

Acoustic Coupling for Double-Blind Human Low-Intensity Focused Ultrasound Neuromodulation

用于双盲人体低强度聚焦超声神经调控的声耦合

Kapoor, Aditya; Strohman, Andrew; Ni, Yunruo; Isaac, Gabriel; Raymond, Jason; Legon, Wynn

Low-intensity focused ultrasound to the posterior insula reduces temporal summation of pain

低强度聚焦超声作用于后岛叶可减少疼痛的时间总和效应

In, Alexander; Strohman, Andrew; Payne, Brighton; Legon, Wynn

Examination of the interaction of parameters for low-intensity focused ultrasound of the human motor cortex

对人类运动皮层低强度聚焦超声参数相互作用的研究

Ennasr, Areej; Isaac, Gabriel; Strohman, Andrew; Legon, Wynn

Low-Intensity Focused Ultrasound to the Human Dorsal Anterior Cingulate Attenuates Acute Pain Perception and Autonomic Responses

低强度聚焦超声作用于人体背侧前扣带回可减弱急性疼痛感知和自主神经反应

Strohman, Andrew; Payne, Brighton; In, Alexander; Stebbins, Katelyn; Legon, Wynn

Low-intensity focused ultrasound to the insula differentially modulates the heartbeat-evoked potential: A proof-of-concept study

低强度聚焦超声作用于岛叶可差异性地调节心跳诱发电位:一项概念验证研究

Strohman, Andrew; Isaac, Gabriel; Payne, Brighton; Verdonk, Charles; Khalsa, Sahib S; Legon, Wynn

Low-intensity focused ultrasound to the human insular cortex differentially modulates the heartbeat-evoked potential: a proof-of-concept study

低强度聚焦超声作用于人脑岛叶皮层可差异性地调节心跳诱发电位:一项概念验证研究

Strohman, Andrew; Isaac, Gabriel; Payne, Brighton; Verdonk, Charles; Khalsa, Sahib S; Legon, Wynn

Non-invasive neuromodulation of sub-regions of the human insula differentially affect pain processing and heart-rate variability

对人类岛叶亚区进行非侵入性神经调控,可差异性地影响疼痛处理和心率变异性。

Legon, Wynn; Strohman, Andrew; In, Alexander; Stebbins, Katelyn; Payne, Brighton