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

Probe Sequencing Analysis of Regenerating Lizard Tails Indicates Crosstalk Among Osteoclasts, Epidermal Cells, and Fibroblasts.

对再生蜥蜴尾巴的探针测序分析表明破骨细胞、表皮细胞和成纤维细胞之间存在相互作用

Gamble Darian J, Lopez Samantha, Yazdi Melody, Castro-Torres Toni, Lozito Thomas P

Simulation of adult limb regeneration with lizard tail spinal cord implants reveals distinct roles of radial glia and microglia populations.

利用蜥蜴尾脊髓植入物模拟成年肢体再生,揭示了放射状胶质细胞和小胶质细胞群的不同作用

Londono Ricardo, Pan Zheyu, Hudnall Megan L, Lozito Thomas P

Long-range Atoh1 enhancers maintain competency for hair cell regeneration in the inner ear

长程Atoh1增强子维持内耳毛细胞再生能力

Shi, Tuo; Kim, Yeeun; Llamas, Juan; Wang, Xizi; Fabian, Peter; Lozito, Thomas P; Segil, Neil; Gnedeva, Ksenia; Crump, J Gage

Chromosome-level genome assembly and annotation of the crested gecko, Correlophus ciliatus, a lizard incapable of tail regeneration

对睫角守宫(Correlophus ciliatus)进行染色体水平基因组组装和注释,该蜥蜴不具备尾巴再生能力。

Gumangan, Marc A; Pan, Zheyu; Lozito, Thomas P

Ilastik: a machine learning image analysis platform to interrogate stem cell fate decisions across multiple vertebrate species

Ilastik:一个机器学习图像分析平台,用于研究多种脊椎动物物种的干细胞命运决定。

Munoz, Alma Zuniga; Soni, Kartik; Li, Angela; Lakkundi, Vedant; Iyer, Arundati; Adler, Ari; Kirkendall, Kathryn; Petrigliano, Frank; Benayoun, Bérénice A; Lozito, Thomas P; Almada, Albert E

Differences in neural stem cell identity and differentiation capacity drive divergent regenerative outcomes in lizards and salamanders

蜥蜴和蝾螈神经干细胞的特性和分化能力差异导致了不同的再生结果。

Sun, Aaron X; Londono, Ricardo; Hudnall, Megan L; Tuan, Rocky S; Lozito, Thomas P

TISSUE REPAIR AND EPIMORPHIC REGENERATION: AN OVERVIEW

组织修复与表皮再生:概述

Londono, Ricardo; Sun, Aaron X; Tuan, Rocky S; Lozito, Thomas P

Cartilage and Muscle Cell Fate and Origins during Lizard Tail Regeneration

蜥蜴尾巴再生过程中软骨细胞和肌肉细胞的命运和起源

Londono, Ricardo; Wenzhong, Wei; Wang, Bing; Tuan, Rocky S; Lozito, Thomas P

Lizard tail regeneration as an instructive model of enhanced healing capabilities in an adult amniote

蜥蜴尾巴再生可作为成年羊膜动物增强愈合能力的指导性模型

Lozito, Thomas P; Tuan, Rocky S

Stem cell-based microphysiological osteochondral system to model tissue response to interleukin-1β

基于干细胞的微生理骨软骨系统用于模拟组织对白细胞介素-1β的反应

Lin, Hang; Lozito, Thomas P; Alexander, Peter G; Gottardi, Riccardo; Tuan, Rocky S