Astrocyte redox imbalance underlies prelimbic neuronal hypoactivity and affective behavior in epilepsy

Kavli Affiliate: Dwight Bergles | Authors: Travis E Faust, Atsushi Saito, Shoichi Ishikawa, Kun Yang, Wendy Xin, Ho Namkung, Amit Agarwal, Adriana Ramos, Brian J Lee, Lindsay Hayes, Rupali Srivastava, Sunday Adelakun, Sneha Saha, Trexy Palen, Tyler Cash-Padgett, Daniel Wood, Elisa Carloni, Ryosuke Yusa, Hanna Jaaro-Peled, Jed W Fahey, Dwight E Bergles, Koko Ishizuka and […]


Continue.. Astrocyte redox imbalance underlies prelimbic neuronal hypoactivity and affective behavior in epilepsy

Immune cells adapt to distinct stem cell niches to govern tissue homeostasis

Kavli Affiliate: Daniel Mucida and Elaine Fuchs | Authors: Sara Martina Parigi, Sairaj Munavar Sajjath, Charlotte Jeanne Bell, Shaopeng Yuan, Vitoria Murakami Olyntho, Alain Robert Bonny, Sandra Nakandakari-Higa, Sergio Lira, Daniel Mucida, Gabriel D Victora and Elaine Fuchs | Summary: In adult tissues, epithelial stem cells exist within distinct residences, each endowing them with exclusive […]


Continue.. Immune cells adapt to distinct stem cell niches to govern tissue homeostasis

Down-bending Breaks in Galactic Disks Are an Intrinsic Byproduct of Inside-out Growth

Kavli Affiliate: Luis Ho | Summary:The exponential profile has long been hypothesized as the fundamental morphology of galactic disks. The IllustrisTNG simulations reproduce diverse surface-density profiles: Type I (single exponential), Type II (down-bending), and Type III (up-bending), consistent with observed mass-size relations and kinematics. Type II disks dominate the stellar-mass regime $M_star < 10^10.6 M_odot$ […]


Continue.. Down-bending Breaks in Galactic Disks Are an Intrinsic Byproduct of Inside-out Growth

Down-bending Breaks in Galactic Disks Are an Intrinsic Byproduct of Inside-out Growth

Kavli Affiliate: Luis Ho | Summary:The exponential profile has long been hypothesized as the fundamental morphology of galactic disks. The IllustrisTNG simulations reproduce diverse surface-density profiles: Type I (single exponential), Type II (down-bending), and Type III (up-bending), consistent with observed mass-size relations and kinematics. Type II disks dominate the stellar-mass regime $M_star < 10^10.6 M_odot$ […]


Continue.. Down-bending Breaks in Galactic Disks Are an Intrinsic Byproduct of Inside-out Growth