Buch, Englisch, Band 177, 150 Seiten, HC runder Rücken kaschiert, Format (B × H): 160 mm x 241 mm, Gewicht: 412 g
Buch, Englisch, Band 177, 150 Seiten, HC runder Rücken kaschiert, Format (B × H): 160 mm x 241 mm, Gewicht: 412 g
Reihe: Reviews of Physiology, Biochemistry and Pharmacology
ISBN: 978-3-030-61494-2
Verlag: Springer International Publishing
Leading researchers are specially invited to provide a complete understanding of a key topic within the multidisciplinary fields of physiology, biochemistry and pharmacology. In a form immediately useful to scientists, this periodical aims to filter, highlight and review the latest developments in these rapidly advancing fields.
Chapter “Stationary and Non-Stationary Ion- and Water Flux Interactions in Kidney Proximal Tubule. Mathematical Analysis of Isosmotic Transport by a Minimalistic Model“ is available open access under a Creative Commons Attribution 4.0 International License via link.springer.com.
Zielgruppe
Research
Autoren/Hrsg.
Fachgebiete
- Naturwissenschaften Biowissenschaften Proteinforschung
- Medizin | Veterinärmedizin Medizin | Public Health | Pharmazie | Zahnmedizin Medizinische Fachgebiete Pharmakologie, Toxikologie
- Medizin | Veterinärmedizin Medizin | Public Health | Pharmazie | Zahnmedizin Vorklinische Medizin: Grundlagenfächer Physiologie
- Medizin | Veterinärmedizin Medizin | Public Health | Pharmazie | Zahnmedizin Vorklinische Medizin: Grundlagenfächer Biochemie (med.)
Weitere Infos & Material
1. The Role of Chemokine Receptors in Renal Fibrosis.- 2. Inflammatory biomarkers for cardiovascular risk stratification in familial hypercholesterolemia.- 3. Beyond the paradigm: novel functions of renin-producing cells.- 4. Role of ASIC1a in normal and pathological synaptic plasticity.- 5. Stationary and Non-stationary ion- and Water Flux Interactions in Kidney Proximal Tubule: Mathematical Analysis of Isomotic Transport by a Minimalistic Model.- 6. Correction to: Stationary and Nonstationary Ion and Water Flux Interactions in Kidney Proximal Tubule: Mathematical Analysis of Isosmotic Transport by a Minimalistic Model