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

Subretinal Photovoltaic Implant to Restore Vision in Geographic Atrophy Due to AMD

视网膜下光伏植入物用于恢复由年龄相关性黄斑变性引起的地图状萎缩患者的视力

Holz, Frank G; Le Mer, Yannick; Muqit, Mahiul M K; Hattenbach, Lars-Olof; Cusumano, Andrea; Grisanti, Salvatore; Kodjikian, Laurent; Pileri, Marco Andrea; Matonti, Frederic; Souied, Eric; Stanzel, Boris V; Szurman, Peter; Weber, Michel; Bartz-Schmidt, Karl Ulrich; Eter, Nicole; Delyfer, Marie Noelle; Girmens, Jean François; van Overdam, Koen A; Wolf, Armin; Hornig, Ralf; Corazzol, Martina; Brodie, Frank; Olmos de Koo, Lisa; Palanker, Daniel; Sahel, José-Alain

Retinal thermal deformations measured with phase-sensitive optical coherence tomography in vivo

利用相位敏感光学相干断层扫描技术在活体测量视网膜热形变

Zhuo, Yueming; Bhuckory, Mohajeet; Li, Huakun; Hattori, Junya; Pham-Howard, Davis; Veysset, David; Ling, Tong; Palanker, Daniel

Interferometric imaging of the reversible rhodopsin dynamics in the living rat eye

利用干涉成像技术对活体大鼠眼内可逆视紫红质动力学进行成像

Zhuo, Yueming; Li, Huakun; Bhuckory, Mohajeet; Pham-Howard, Davis; Palanker, Daniel

Enhancing prosthetic vision by upgrade of a subretinal photovoltaic implant in situ.

通过对原位视网膜下光伏植入物进行升级,增强义眼视力

Bhuckory Mohajeet B, Monkongpitukkul Nicharee, Shin Andrew, Kochnev Goldstein Anna, Jensen Nathan, Shah Sarthak V, Pham-Howard Davis, Butt Emma, Dalal Roopa, Galambos Ludwig, Mathieson Keith, Kamins Theodore, Palanker Daniel

On the physiological processes underlying optoretinography [Invited]

关于视网膜光描记术的生理过程[特邀报告]

Li, Huakun; Zhuo, Yueming; Pandiyan, Vimal Prabhu; Zaman, Mohammad Asif; Ling, Tong; Sabesan, Ramkumar; Palanker, Daniel

Accelerated Simulation of Multi-Electrode Arrays Using Sparse and Low-Rank Matrix Techniques

利用稀疏低秩矩阵技术加速多电极阵列仿真

Jensen, Nathan; Chen, Zhijie Charles; Goldstein, Anna Kochnev; Palanker, Daniel

Restoration of Sight with Electronic Retinal Prostheses

利用电子视网膜假体恢复视力

Palanker, Daniel; Weiland, James D; Rosin, Boris; Sahel, José-Alain

Light-evoked deformations in rod photoreceptors, pigment epithelium and subretinal space revealed by prolonged and multilayered optoretinography

通过长时间多层视网膜光图检查,可以发现视杆细胞、色素上皮和视网膜下腔的光诱发形变。

Tan, Bingyao; Li, Huakun; Zhuo, Yueming; Han, Le; Mupparapu, Rajeshkumar; Nanni, Davide; Barathi, Veluchamy Amutha; Palanker, Daniel; Schmetterer, Leopold; Ling, Tong

Prosthetic Visual Acuity with the PRIMA Subretinal Microchip in Patients with Atrophic Age-Related Macular Degeneration at 4 Years Follow-up

PRIMA视网膜下微芯片在萎缩性年龄相关性黄斑变性患者中的义眼视力4年随访

Muqit, Mahiul Muhammed Khan; Le Mer, Yannick; Olmos de Koo, Lisa; Holz, Frank G; Sahel, Jose A; Palanker, Daniel

Enhancing Prosthetic Vision by Upgrade of a Subretinal Photovoltaic Implant in situ

通过原位升级视网膜下光伏植入物来增强假体视力

Mohajeet B Bhuckory, Nicharee Monkongpitukkul, Andrew Shin, Anna Kochnev Goldstein, Nathan Jensen, Sarthak V Shah, Davis Pham-Howard, Emma Butt, Roopa Dalal, Ludwig Galambos, Keith Mathieson, Theodore Kamins, Daniel Palanker