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

Imaging Changes and Clinical Outcome after MR-Guided Laser Interstitial Thermal Therapy

磁共振引导激光间质热疗后的影像学变化和临床结果

Bergman, Lottem; Agur, Ariel; Gabay, Segev; Tankus, Ariel; Strauss, Itai; Zach, Leor; Aizenstein, Orna; Grossman, Rachel; Shahar, Tal; Strauss, Ido

Elective fertility preservation before and after the Covid-19 pandemic outbreak

新冠疫情爆发前后选择性生育力保存的情况

Samara, Nivin; Israeli, Tal; Shahar, Tal; Levi, Sagi; Barda, Shimi; Groutz, Asnat; Azem, Foad; Amir, Hadar

Frequencies of 4 tumor-infiltrating lymphocytes potently predict survival in glioblastoma, an immune desert

4种肿瘤浸润淋巴细胞的频率能够有效预测胶质母细胞瘤(一种免疫沙漠)患者的生存期。

Gershon, Rotem; Polevikov, Antonina; Karepov, Yevgeny; Shenkar, Anatoly; Ben-Horin, Idan; Alter Regev, Tal; Dror-Levinsky, Meytal; Lipczyc, Kelly; Gasri-Plotnitsky, Lital; Diamant, Gil; Shapira, Nati; Bensimhon, Barak; Hagai, Aharon; Shahar, Tal; Grossman, Rachel; Ram, Zvi; Volovitz, Ilan

Human Purkinje cells outperform mouse Purkinje cells in dendritic complexity and computational capacity

人类浦肯野细胞在树突复杂性和计算能力方面优于小鼠浦肯野细胞。

Masoli, Stefano; Sanchez-Ponce, Diana; Vrieler, Nora; Abu-Haya, Karin; Lerner, Vitaly; Shahar, Tal; Nedelescu, Hermina; Rizza, Martina Francesca; Benavides-Piccione, Ruth; DeFelipe, Javier; Yarom, Yosef; Munoz, Alberto; D'Angelo, Egidio

Thermo-controlled microfluidic generation of monodisperse alginate microspheres based on external gelation

基于外部凝胶的热控微流控技术制备单分散藻酸盐微球

Chen, Saray; Shahar, Tal; Cohen, Smadar

[(18)F]-FDHT PET/CT as a tool for imaging androgen receptor expression in high-grade glioma.

[(18)F]-FDHT PET/CT 作为高级别胶质瘤中雄激素受体表达成像的工具

Orevi Marina, Shamni Ofer, Zalcman Nomi, Chicheportiche Alexandre, Mordechai Anat, Moscovici Samuel, Shoshan Yigal, Shahar Tal, Charbit Hanna, Gutreiman Mijal, Paldor Iddo, Mishani Eyal, Lossos Alexander, Lavon Iris

NIMG-30. PET IMAGING OF ANDROGEN RECEPTOR EXPRESSION IN PATIENTS WITH GBM USING [(18)F]-FDHT

NIMG-30. 使用[(18)F]-FDHT对GBM患者雄激素受体表达进行PET成像

McNeill, Alisdair; Van Slambrouck, J; Geudens, V; Vanluyten, C; Kaes, J; Bloemen, M; Wollants, E; Wauters, J; Verleden, GM; Vanaudenaerde, BM; Mombaerts, P; Van Raemdonck, D; Vos, R; Ceulemans, LJ; Mordechai, Anat; Shamni, Ofer; Zalcman, Nomi; Moscovici, Samuel; Chicheportiche, Alexandre; Shoshan, Yigal; Shahar, Tal; Charbit, Hanna; Guterman, Mijal; Paldor, Iddo; Mishani, Eyal; Lossos, Alexander; Orevi, Marina; Lavon, Iris

Developing Body-Components-Based Theranostic Nanoparticles for Targeting Ovarian Cancer

开发基于人体成分的靶向卵巢癌的诊疗纳米颗粒

Edelman, Ravit; Assaraf, Yehuda G; Slavkin, Anton; Dolev, Tamar; Shahar, Tal; Livney, Yoav D

Mesenchymal stem cells as natural biofactories for exosomes carrying miR-124a in the treatment of gliomas

间充质干细胞作为携带 miR-124a 的外泌体的天然生物工厂,用于治疗胶质瘤

Lang, Frederick M; Hossain, Anwar; Gumin, Joy; Momin, Eric N; Shimizu, Yuzaburo; Ledbetter, Dan; Shahar, Tal; Yamashita, Shinji; Parker Kerrigan, Brittany; Fueyo, Juan; Sawaya, Raymond; Lang, Frederick F

Hyaluronic acid-serum albumin conjugate-based nanoparticles for targeted cancer therapy

用于靶向癌症治疗的透明质酸-血清白蛋白偶联物纳米颗粒

Edelman, Ravit; Assaraf, Yehuda G; Levitzky, Inna; Shahar, Tal; Livney, Yoav D