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Produktbild: Urine

Urine Promising Biomarker Source for Early Disease Detection

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Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

06.07.2026

Abbildungen

IX, 427 p. 89 illus., 69 illus. in color.

Herausgeber

Youhe Gao

Verlag

Springer Singapore

Seitenzahl

427

Maße (L/B/H)

23,5/15,5/2,4 cm

Gewicht

663 g

Auflage

Second Edition 2025

Sprache

Englisch

ISBN

978-981-9678-88-4

Beschreibung

Portrait

Dr. Youhe Gao is a Professor at the College of Life Sciences, Beijing Normal University. Further, he is the chair of Urine Proteome Initiative of Human Proteome Project (HPP) Human Proteome Organization (HUPO). Prof. Gao is the winner of the National Science Fund for Distinguished Young Scholars Award and the New Century National Hundred, Thousand and Ten Thousand Talent Project. His research chiefly focuses on urinary biomarker, an area in which he has published more than 130 articles.

 

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

06.07.2026

Abbildungen

IX, 427 p. 89 illus., 69 illus. in color.

Herausgeber

Youhe Gao

Verlag

Springer Singapore

Seitenzahl

427

Maße (L/B/H)

23,5/15,5/2,4 cm

Gewicht

663 g

Auflage

Second Edition 2025

Sprache

Englisch

ISBN

978-981-9678-88-4

Herstelleradresse

Springer-Verlag KG
Sachsenplatz 4-6
1201 Wien
AT

Email: ProductSafety@springernature.com

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  • Produktbild: Urine
  • Chapter 1. Factors beyond science in the development of urine biomarkers.- Chapter 2. Human Urine proteome a powerful source for clinical research.- Chapter 3. Comparison of Urinary Proteomes Among Three Animal Models.- Chapter 4. Urimem, a membrane that preserves urine for largescale biomarker study.- Chapter 5. Posttranslation Modifications of Human Urine.- Chapter 6. Application of Peptide Level and Posttranslational Modifications to Integrative Analyses in Proteomics.- Chapter 7. BiomarkerExtractor a deep learning-based model for text mining of urine biomarkers.- Chapter 8. Why are there proteins in urine.- Chapter 9. Changes in the urine proteome in an acute hypoxic rat model.- Chapter 10. Analysis of the active alterations in the urinary proteome of rats during the immunization process.- Chapter 11.Urine Glucose Levels Are Disordered Before Blood Glucose Level Increase Was Observed in Zucker Diabetic Fatty Rats.- Chapter 12. Comparison of urine proteomes from tumor-bearing mice with those from tumor-resected mice.- Chapter 13. Progress in the application of urine proteomics in cancer biomarker discovery.- Chapter 14. Urine proteome application in neurodegenerative diseases biomarker discovery.- Chapter 15. Urinary Proteome Biomarker Discovery in Autism.- Chapter 16. Progress of urinary proteome research in respiratory diseases.- Chapter 17. Changes of urinary proteome in acute and chronic pulmonary inflammation.- Chapter 18. Changes of urinary proteome in global cerebral ischemia-reperfusion injury.- Chapter 19. Urinary complement factor D is increased in primary malignant hypertension.- Chapter 20. The application of urinary proteomics in early detection of digestive diseases.- Chapter 21. Application of urine proteome in biomarker discovery for cardiovascular diseases.- Chapter 22. Comparison of urinary proteomes among three rat models of abdominal infection bacteria.- Chapter 23. Serial Changes of Urinary Proteome in Animal Models of Renal Diseases.- Chapter 24. Dynamic urine proteome changes in a rat model of simvastatin-induced skeletal muscle injury.- Chapter 25. Using one–to–many urine proteome comparisons to provide clues for fever of unknown origin.- Chapter 26. Exploring the overall effects of two traditional Chinese medicines on the body by urinary proteome.- Chapter 27. Effects of extrinsic factors on the urinary proteome.- Chapter 28. Take a deep breath.- Chapter 29. Tears: Potential Window for Monitoring Systemic Conditions.- Chapter 30. Changes of urine protiens in the rat e-cigarette model.- Chapter 31. Changes in the urinary proteome of rats after short-term intake of magnesium L-threonate(MgT).