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

Circadian timing of the dystrophin associated complex across the brain and body

大脑和身体中肌营养不良蛋白相关复合物的昼夜节律

Morse, Isaac; Nedergaard, Maiken; Hablitz, Lauren M

Cerebrospinal fluid flow modulates brain health

脑脊液流动调节大脑健康

Hablitz, Lauren M; Nedergaard, Maiken

Biological Fluid Flows: Signaling Mediums for Circadian Timing

生物流体流动:昼夜节律的信号传导介质

Duyvesteyn, Evalien; Vizcarra, Velia S; Waight, Emma; Balbuena, Estephanie; Hablitz, Lauren M

Circadian Mechanisms in Brain Fluid Biology

脑液生物学中的昼夜节律机制

Vizcarra, Velia S; Fame, Ryann M; Hablitz, Lauren M

Circadian rhythms of macrophages are altered by the acidic tumor microenvironment

酸性肿瘤微环境改变巨噬细胞的昼夜节律

Amelia M Knudsen-Clark, Daniel Mwangi, Juliana Cazarin, Kristina Morris, Cameron Baker, Lauren M Hablitz, Matthew N McCall, Minsoo Kim, Brian J Altman

Blood osmolytes such as sugar can drive brain fluid flows in a poroelastic model

血液渗透压调节剂(例如糖)可以在多孔弹性模型中驱动脑液流动。

Bork, Peter A R; Gianetto, Michael; Newbold, Evan; Hablitz, Lauren; Bohr, Tomas; Nedergaard, Maiken

GABAergic signalling in the suprachiasmatic nucleus is required for coherent circadian rhythmicity.

视交叉上核中的 GABA 能信号传导是昼夜节律协调所必需的

Klett Nathan, Gompf Heinrich S, Allen Charles N, Cravetchi Olga, Hablitz Lauren M, Gunesch Ali N, Irwin Robert P, Todd William D, Saper Clifford B, Fuller Patrick M

Glymphatic influx and clearance are accelerated by neurovascular coupling

神经血管耦合加速淋巴的流入和清除

Stephanie Holstein-Rønsbo #, Yiming Gan #, Michael J Giannetto, Martin Kaag Rasmussen, Björn Sigurdsson, Felix Ralf Michael Beinlich, Laura Rose, Verena Untiet, Lauren M Hablitz, Douglas H Kelley, Maiken Nedergaard

Loss of aquaporin-4 results in glymphatic system dysfunction via brain-wide interstitial fluid stagnation

水通道蛋白-4 的缺失导致全脑间质液停滞,从而导致淋巴系统功能障碍

Ryszard Stefan Gomolka, Lauren M Hablitz, Humberto Mestre, Michael Giannetto, Ting Du, Natalie Linea Hauglund, Lulu Xie, Weiguo Peng, Paula Melero Martinez, Maiken Nedergaard, Yuki Mori

5-HT2A receptor dysregulation in a schizophrenia relevant mouse model of NMDA receptor hypofunction

精神分裂症相关小鼠模型中 NMDA 受体功能低下的 5-HT2A 受体失调

Kazuhito Nakao #, Mahendra Singh #, Kiran Sapkota, Andrew Fitzgerald, John J Hablitz, Kazu Nakazawa