Intelligent decision support to stay ahead of hypotension

 
 
 
 
 
 
 
 

Intelligent decision support to stay ahead of hypotension

 

 
 
 

Stay ahead of haemodynamic instability with predictive technology

Haemodynamic instability during cardiac surgery is associated with AKI and other complications after surgery.1‑9 Yet commonly the treatment of intraoperative hypotension has been reactive and begins after a patient is hypotensive*.8, 10‑14
 
Advances in technology and machine learning now mean haemodynamic instability can be detected early,2,8,13 and the onset of hypotension can be predicted.8,13,15-18

Acumen Hypotension Prediction Index (HPI) software, which is powered by a first-of-its-kind algorithm that was developed with machine learning, can predict the onset of hypotension 10 minutes before it occurs16,19. There is no other technology approved in Europe that predicts hypotension.16

* Hypotension is defined as mean arterial pressure (MAP) <65mmHg

Discover Acumen HPI software  »
 

Find out how much hypotension is in your practice. Let us provide you with a retrospective analysis:  

 

Medical device for professional use. For a listing of indications, contraindications, precautions, warnings, and potential adverse events, please refer to the Instructions for Use (consult eifu.edwards.com where applicable).

 

References

 

  1. Zarbock A & Engelman DT.  J Thorac Cardiovasc Surg 2020;159: 1878-1879.
  2. Maheshwari A, et al. Br J Anaesthesia 2017;119: 40–49. 
  3. Sun LY, et al. Anesthesiology 2018; 129:440-7. 
  4. Smeltz AM, et al. J Cardiothorac Vasc Anesth 2018;32: 1214-1224. 
  5. Liu YL, et al. Nephrol Dial Transplant 2009;24:504–511.
  6. de la Hoz MA, et al. Anesthesiology 2022;136: 927–939. 
  7. Molnar Z, et al. Br J Anaesth 2020;125: 419-423. 
  8. Vos JJ & Scheeren TW. Indian J Anaesth 2019;63:877-85. 
  9. Haase-Fielitz A, et al. Blood Purif 2017;43: 298–308.
  10. Bijker JB, et al. Anesthesiology 2007;107: 213e20.
  11. Shah NJ, et al. J Clin Anesth 2020;66:109961.
  12. Wang Y, et al. Nat Rev Nephrol 2017;13:697–711.
  13. Awadallah D, et al. J Cardiothorac Vasc Anesth 2020;35:1233-1236.
  14. Molnar Z, et al. Br J Anaesth 2020;125:419-423.
  15. Mathis MR, et al. Anesthesiology 2018;129:619-622.
  16. Hatib F, et al. Anesthesiology 2018;129:663-674.
  17. van der Ven WH, et al. Surgery. 2021;169:1300-1303.
  18. Shin B, et al. J Cardiothorac Vasc Anesth. 2020;35:1769-1775.
  19. Davies SJ et al. Anesth Analg. 2020;130(2):352-359.
 
 

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