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

Editorial: Frontiers in the midlands society of physiological sciences (2023-2024)

社论:中部生理科学学会前沿(2023-2024)

Natarajan, Sathish Kumar; Zheng, Hong; Chandra, Surabhi; Schultz, Harold D; Chen, William C W

Chemoreflex sensitization occurs in both male and female rats during recovery from acute lung injury

在雄性和雌性大鼠急性肺损伤恢复期间,均会发生化学反射敏化。

Kamra, Kajal; Zucker, Irving H; Schultz, Harold D; Wang, Han-Jun

The superior cervical ganglion is involved in chronic chemoreflex sensitization during recovery from acute lung injury

颈上神经节参与急性肺损伤恢复期的慢性化学反射敏化。

Kamra, Kajal; Karpuk, Nikolay; Zucker, Irving H; Schultz, Harold D; Wang, Han-Jun

GLP-1 (Glucagon-Like Peptide-1) Plays a Role in Carotid Chemoreceptor-Mediated Sympathoexcitation and Hypertension

GLP-1(胰高血糖素样肽-1)在颈动脉化学感受器介导的交感神经兴奋和高血压中发挥作用

Zucker, Irving H; Wang, Han-Jun; Schultz, Harold D

Visualizing data in research articles

研究文章中的数据可视化

Schultz, Harold D

Chronic Heart Failure Abolishes Circadian Rhythms in Resting and Chemoreflex Breathing

慢性心力衰竭会破坏静息呼吸和化学反射呼吸的昼夜节律

Lewis, Robert; Hackfort, Bryan T; Schultz, Harold D

Exercise training normalizes renal blood flow responses to acute hypoxia in experimental heart failure: role of the α1-adrenergic receptor

运动训练可使实验性心力衰竭中肾血流对急性缺氧的反应恢复正常:α1-肾上腺素能受体的作用

Pügge, Carolin; Mediratta, Jai; Marcus, Noah J; Schultz, Harold D; Schiller, Alicia M; Zucker, Irving H

Exercise training attenuates chemoreflex-mediated reductions of renal blood flow in heart failure

运动训练可减轻心力衰竭中化学反射介导的肾血流量减少

Marcus, Noah J; Pügge, Carolin; Mediratta, Jai; Schiller, Alicia M; Del Rio, Rodrigo; Zucker, Irving H; Schultz, Harold D

Selective carotid body ablation in experimental heart failure: a new therapeutic tool to improve cardiorespiratory control

选择性颈动脉体消融术治疗实验性心力衰竭:一种改善心肺控制的新疗法

Del Rio, Rodrigo; Andrade, David C; Marcus, Noah J; Schultz, Harold D

In adult female hamsters hypothyroidism stimulates D1 receptor-mediated breathing without altering D1 receptor expression

在成年雌性仓鼠中,甲状腺功能减退会刺激D1受体介导的呼吸,而不会改变D1受体的表达。

Schlenker, Evelyn H; Del Rio, Rodrigo; Schultz, Harold D