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20 results on '"frank-starling"'

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1. Mechano‐electric and mechano‐chemo‐transduction in cardiomyocytes

3. Piezo buffers mechanical stress via modulation of intracellular Ca2+ handling in the Drosophila heart.

4. Piezo buffers mechanical stress via modulation of intracellular Ca2+ handling in the Drosophila heart

5. Carotid Artery Corrected Flow Time Measured by Wearable Doppler Ultrasound Accurately Detects Changing Stroke Volume During the Passive Leg Raise in Ambulatory Volunteers

7. Multiscale Modeling of Cardiovascular Function Predicts That the End-Systolic Pressure Volume Relationship Can Be Targeted via Multiple Therapeutic Strategies

8. Multiscale Modeling of Cardiovascular Function Predicts That the End-Systolic Pressure Volume Relationship Can Be Targeted via Multiple Therapeutic Strategies.

9. The Frank-Starling Law: a jigsaw of titin proportions.

10. Carotid Artery Corrected Flow Time Measured by Wearable Doppler Ultrasound Accurately Detects Changing Stroke Volume During the Passive Leg Raise in Ambulatory Volunteers.

11. Historical perspective on heart function: the Frank-Starling Law.

13. Multiscale Modeling of Cardiovascular Function Predicts That the End-Systolic Pressure Volume Relationship Can Be Targeted via Multiple Therapeutic Strategies

14. Mechano-electric and mechano-chemo-transduction in cardiomyocytes

15. Piezo buffers mechanical stress via modulation of intracellular Ca 2+ handling in the Drosophila heart.

16. Sarcomere length dependence of power output is increased after PKA treatment in rat cardiac myocytes.

17. The Frank–Starling Law

18. Hypovolemia explains the reduced stroke volume at altitude

19. Titin-Based Modulation of Calcium Sensitivity of Active Tension in Mouse Skinned Cardiac Myocytes Materials and Methods Preparations and Solutions

20. Hypovolemia explains the reduced stroke volume at altitude.

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