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  • 1
    Schlagwort(e): Environmental engineering. ; Biotechnology. ; Bioremediation. ; Energy policy. ; Energy and state. ; Development economics. ; Economic development. ; Engineering design. ; Developmental psychology.
    Beschreibung / Inhaltsverzeichnis: Part I: A New Discipline: Development Engineering -- Chapter 1: The Role Of Technology In Development -- Chapter 2: The Development Engineering Framework: Innovate, Evaluate, Scale -- Chapter 3: Asking the Right Questions -- Part II: Water, Sanitation and Health -- Chapter 4: Advances In Water and Health Technologies -- Chapter 5: Case Study: Electrochemical Arsenic Remediation, India (Innovation) -- Chapter 6: Case Study: Information For Intermittent Water Supply, India (Evaluation) -- Chapter 7: Case Study: Mobile Phone Diagnostic Microscopy, Vietnam/Cameroon (Innovation, Scale) -- Part III: Governance -- Chapter 8: Technologies for Governance And Accountability -- Chapter 9: Case Study: Sensors For Aid Accountability, Rwanda (Evaluation, Scale) -- Chapter 10: Case Study: High Resolution Development Indicators, Afghanistan (Evaluation, Scale) -- Chapter 11: Case Study: Monitoring For Elections And Public Service Delivery, Kenya (Evaluation, Scale) -- Part IV: Energy and Resources -- Chapter 12: Advances in Energy & Environmental Technologies -- Chapter 13: Case Study: Economic Impacts Of Rural Electrification, Kenya (Evaluation, Scale) -- Chapter 14: Case Study: Cool Joule: Flexible Energy Loads, Nicaragua (Innovation, Evaluation) -- Chapter 15: Case Study: Cookstove Monitoring and Use In East Africa (Innovation, Evaluation) -- Part V: Information -- Chapter 16: Information and Communications Technology For Development -- Chapter 17: Case Study: Community Cellular Networks, Philippines (Innovation, Evaluation) -- Chapter 18: Case Study: ICT Solutions To Bring Telemedicine To Rural India (Innovation) -- Chapter 19: Case Study: Platforms For Development Data (ODK/Mezuri) (Innovation, Scale) -- PART VI: Markets (Incorporates Agriculture) -- Chapter 20: Technologies To Improve Market Performance -- Chapter 21: Case Study: Ag Market Information Platforms, India (Innovation, Evaluation, Scale) -- Chapter 22: Case Study: Agricultural Trading Platforms, Uganda (Innovation, Evaluation) -- Chapter 23: Case Study: Inventory And Supply Chain Tracking, Sri Lanka (Evaluation) -- PART VII: Human Capital (Incorporates Labor) -- Chapter 24: Increasing the Productivity of Human Capital -- Chapter 25: Case Study: Electronic Job Search Platforms, India (Evaluation, Scale) -- Chapter 26: Case Study: Customized E-Learning Innovations, India (Evaluation) -- Chapter 27: Case Study: TBD (Evaluation) -- PART VIII: Conclusion -- Chapter 28: Promising Directions in Development Engineering.
    Materialart: Online-Ressource
    Seiten: 1 Online-Ressource (xxi, 652 Seiten) , Illustrationen
    ISBN: 9783030860653
    Sprache: Englisch
    Anmerkung: Literaturangaben
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 2
    ISSN: 1619-7089
    Schlagwort(e): Radionuclide gated heart pool scan ; Diastole ; Peak filling rate
    Quelle: Springer Online Journal Archives 1860-2000
    Thema: Medizin
    Notizen: Abstract Abnormal left ventricular diastolic function is being increasingly recognised in patients with clinical heart failure and normal systolic function. A simple routine radionuclide measure of diastolic function would therefore be useful. To establish this, the relationship of peak diastolic filling rate (normalized for either end diastolic volume, stroke volume, or peak systolic emptying rate), and heart rate, age, and left ventricular ejection fraction was studied in 64 subjects with normal cardiovascular systems using routine gated heart pool studies. The peak filling rate, when normalized to end diastolic volume, correlated significantly with heart rate, age and left ventricular ejection fraction, whereas normalization to stroke volume correlated significantly to heart rate and age but not to left ventricular ejection fraction. Peak filling rate normalized for peak systolic emptying rate correlated with age only. Multiple regression equations were determined for each of the normalized peak filling rates in order to establish normal ranges for each parameter. When using peak filling rate normalized for end diastolic volume or stroke volume, appropriate allowance must be made for heart rate, age and ejection fraction. Peak filling rate normalized to peak ejection rate is a heart rate independent parameter which allows the performance of the patient's ventricle in diastole to be compared with its systolic function. It may be used in patients with normal systolic function to serially follow diastolic function or if age corrected, to screen for diastolic dysfunction.
    Materialart: Digitale Medien
    Standort Signatur Einschränkungen Verfügbarkeit
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