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

A pilot safety and tolerability study of scanning ultrasound as a neuromodulation therapy in Alzheimer's disease

扫描超声作为阿尔茨海默病神经调控疗法的初步安全性和耐受性研究

Nestor, Peter J; Pelekanos, Matthew; Leinenga, Gerhard; Song, Jae; Lee, Wendy; Richter-Stretton, Gina; McElligott, Caitlin; Fazlollahi, Amir; Mattingley, Jason B; Harris, Anthony; Beale, Henry; Roberts, Jennie; de Las Heras, Rachel; Götz, Jürgen

Feasibility of ultrasound-mediated blood-brain barrier opening in sheep using sonolucent cranial implants

利用透声颅骨植入物在绵羊体内进行超声介导血脑屏障开放的可行性研究

Song, Jae; Richter-Stretton, Gina; Pelekanos, Matthew; Clawson, Corbin; Saifzadeh, Siamak; Simon, Craig; Leinenga, Gerhard; de Las Heras, Rachel; Alexander, Hamish; Götz, Jürgen

Correction: Scanning ultrasound-mediated memory and functional improvements do not require amyloid-β reduction

更正:超声扫描介导的记忆和功能改善并不需要降低β-淀粉样蛋白水平

Leinenga, Gerhard; To, Xuan Vinh; Bodea, Liviu-Gabriel; Yousef, Jumana; Richter-Stretton, Gina; Palliyaguru, Tishila; Chicoteau, Antony; Dagley, Laura; Nasrallah, Fatima; Götz, Jürgen

A comparative study of the effects of Aducanumab and scanning ultrasound on amyloid plaques and behavior in the APP23 mouse model of Alzheimer disease

一项比较研究,探讨阿杜卡奴单抗和扫描超声对APP23阿尔茨海默病小鼠模型中淀粉样斑块和行为的影响

Leinenga, Gerhard; Koh, Wee Kiat; Götz, Jürgen

Establishing sheep as an experimental species to validate ultrasound-mediated blood-brain barrier opening for potential therapeutic interventions.

将绵羊作为实验物种,以验证超声波介导的血脑屏障开放在潜在治疗干预中的应用

Pelekanos Matthew, Leinenga Gerhard, Odabaee Mostafa, Odabaee Maryam, Saifzadeh Siamak, Steck Roland, Götz Jürgen

Safety and Efficacy of Scanning Ultrasound Treatment of Aged APP23 Mice

扫描超声治疗老年APP23小鼠的安全性和有效性

Leinenga, Gerhard; Götz, Jürgen

Combined effects of scanning ultrasound and a tau-specific single chain antibody in a tau transgenic mouse model

在tau转基因小鼠模型中,扫描超声和tau特异性单链抗体的联合作用

Nisbet, Rebecca M; Van der Jeugd, Ann; Leinenga, Gerhard; Evans, Harrison T; Janowicz, Phillip W; Götz, Jürgen

Scanning Ultrasound (SUS) Causes No Changes to Neuronal Excitability and Prevents Age-Related Reductions in Hippocampal CA1 Dendritic Structure in Wild-Type Mice

扫描超声(SUS)不会引起神经元兴奋性的变化,并能预防野生型小鼠海马CA1区树突结构的年龄相关性退化。

Hatch, Robert John; Leinenga, Gerhard; Götz, Jürgen