This session, presented by the renowned V. Carlyle, RN, BSN-CCRN, is a deep dive into the complexities of hemodynamic waveform analysis. Understanding these waveforms is crucial in critical care and perioperative settings, as it aids in accurate patient assessment and management. Key learning points: Fundamentals of hemodynamic waveform generation and interpretation. Techniques to analyze different waveforms and what they signify about cardiac function. Application of waveform analysis in diagnosing and managing patient conditions. Educational Objectives: Enhance knowledge of hemodynamic monitoring principles. Develop skills in interpreting complex waveforms. Understand the clinical applications and implications of waveform analysis in patient care. Who Should Attend: This session is highly beneficial for perfusionists, cardiac nurses, cardiovascular technologists, and other medical professionals involved in cardiac care and surgery. It offers an opportunity to understand a critical aspect of patient monitoring that directly impacts treatment decisions and outcomes. Benefits of Attending: Deepen your understanding of hemodynamic principles. Learn from an experienced healthcare professional with extensive knowledge in cardiac care. Gain valuable insights into advanced diagnostic techniques. Opportunity to earn continuing education units (CEUs) for professional development. Registration and More Information: For registration details and further information about this session and other offerings in the PerfWeb 97 series, please visit our website. Enhance your professional skills and join a network of experts dedicated to improving cardiac care.
Joe Basha's PerfWeb #27 — ECMO cannulation. Extracorporeal Membrane Oxygenation — Perfusion
Joe Basha's PerfWeb #27 — Advanced hemodynamic monitoring in the critical care unit — Perfusion
Joe Basha's PerfWeb #27 — Cannulation Strategies for ECMO Support of the Transcatheter Aortic Valve — Perfusion
Joe Basha's PerfWeb #26 — Managing Unwanted Intravascular Material. AngioVac Circuit — Perfusion
Joe Basha's PerfWeb #26 — Patient and Hospital physical - financial benefits of avoiding sternotomy. Minimally Invasive Surgery — Perfusion
Joe Basha's PerfWeb #26 — Goal directed therapy. Oxygen Delivery (DO2) — Perfusion
Joe Basha's PerfWeb #26 — Goal directed perfusion and Discussion — Perfusion
Joe Basha's PerfWeb #26 — Case studies in success Avoiding sternotomy — Perfusion
Joe Basha's PerfWeb #26 — Protecting the patient from intra procedure PE — Perfusion
Joe Basha's PerfWeb #25 — Does Ultrafiltration (UF) on Cardiopulmonary Bypass (CPB) reduce urine output? — Perfusion
Joe Basha's PerfWeb #25 — Organ Crosstalk: Cardiorenal Syndromes Heart Lung Kidney Interactions. Hormonal signals — Perfusion
Joe Basha's PerfWeb #25 — Fluid overload is deadly. Fluid overload on Cardiopulmonary Bypass (CPB) Hypervolemia — Perfusion
Joe Basha's PerfWeb #25 — How ECMO contributes to maintaining kidney dysfunction Acute Kidney Injury (AKI) — Perfusion
Joe Basha's PerfWeb #25 — Acute Kidney Injury (AKI). Drivers Of Urine Production — Perfusion
Joe Basha's PerfWeb #25 — What is AKI Acute Kidney Injury explained RIFLE AKIN and KDIGO Criteria for assessing AKI — Perfusion
Joe Basha's PerfWeb #24 — Extracorporeal Membrane Oxygenation (ECMO) and Patient Survival — Perfusion
Joe Basha's PerfWeb #24 — ECMO The tools to deliver, ECMO therapy — Perfusion
Joe Basha's PerfWeb #24 — ECMO Staffing Model Perfusionist, Nurse, Respiratory Therapist ECMO Specialist — Perfusion
Joe Basha's PerfWeb #24 — ECMO Circuit Design and Safety (VA ECMO, VV ECMO and more) — Perfusion
Joe Basha's PerfWeb #24 — ECMO and Plasma Molecular Adsorption Therapy — Perfusion
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