scholarly journals A review of implantable pulsatile blood pumps: Engineering perspectives

2020 ◽  
Vol 43 (9) ◽  
pp. 559-569
Author(s):  
Tingting Wu ◽  
Ashraf W Khir ◽  
Maximilian Kütting ◽  
Xinli Du ◽  
Hao Lin ◽  
...  

It has been reported that long-term use of continuous-flow mechanical circulatory support devices (CF-MCSDs) may induce complications associated with diminished pulsatility. Pulsatile-flow mechanical circulatory support devices (PF-MCSDs) have the potential of overcoming these shortcomings with the advance of technology. In order to promote in-depth understanding of PF-MCSD technology and thus encourage future mechanical circulatory support device innovations, engineering perspectives of PF-MCSD systems, including mechanical designs, drive mechanisms, working principles, and implantation strategies, are reviewed in this article. Some emerging designs of PF-MCSDs are introduced, and possible elements for next-generation PF-MCSDs are identified.

Perfusion ◽  
2020 ◽  
Vol 35 (6) ◽  
pp. 474-483
Author(s):  
Inge Köhne

Since the use of continuous flow blood pumps as ventricular assist devices is standard, the problems with haemolysis have increased. It is mainly induced by shear stress affecting the erythrocyte membrane. There are many investigations about haemolysis in laminar and turbulent blood flow. The results defined as threshold levels for the damage of erythrocytes depend on the exposure time of the shear stress, but they are very different, depending on the used experimental methods or the calculation strategy. Here, the results are resumed and shown in curves. Different models for the calculation of the strengths of erythrocytes are discussed. There are few results reported about tests of haemolysis in blood pumps, but some theoretical approaches for the design of continuous flow blood pumps according to low haemolysis have been investigated within the last years.


2021 ◽  
Vol 21 (1) ◽  
Author(s):  
Christoph Nix ◽  
Rashad Zayat ◽  
Andreas Ebeling ◽  
Andreas Goetzenich ◽  
Uma Chandrasekaran ◽  
...  

Abstract Background Resuscitation using a percutaneous mechanical circulatory support device (iCPR) improves survival after cardiac arrest (CA). We hypothesized that the addition of inhaled nitric oxide (iNO) during iCPR might prove synergistic, leading to improved myocardial performance due to lowering of right ventricular (RV) afterload, left ventricular (LV) preload, and myocardial energetics. This study aimed to characterize the changes in LV and RV function and global myocardial work indices (GWI) following iCPR, both with and without iNO, using 2-D transesophageal echocardiography (TEE) and GWI evaluation as a novel non-invasive measurement. Methods In 10 pigs, iCPR was initiated following electrically-induced CA and 10 min of untreated ventricular fibrillation (VF). Pigs were randomized to either 20 ppm (20 ppm, n = 5) or 0 ppm (0 ppm, n = 5) of iNO in addition to therapeutic hypothermia for 5 h following ROSC. All animals received TEE at five pre-specified time-points and invasive hemodynamic monitoring. Results LV end-diastolic volume (LVEDV) increased significantly in both groups following CA. iCPR alone led to significant LV unloading at 5 h post-ROSC with LVEDV values reaching baseline values in both groups (20 ppm: 68.2 ± 2.7 vs. 70.8 ± 6.1 mL, p = 0.486; 0 ppm: 70.8 ± 1.3 vs. 72.3 ± 4.2 mL, p = 0.813, respectively). LV global longitudinal strain (GLS) increased in both groups following CA. LV-GLS recovered significantly better in the 20 ppm group at 5 h post-ROSC (20 ppm: − 18 ± 3% vs. 0 ppm: − 13 ± 2%, p = 0.025). LV-GWI decreased in both groups after CA with no difference between the groups. Within 0 ppm group, LV-GWI decreased significantly at 5 h post-ROSC compared to baseline (1,125 ± 214 vs. 1,835 ± 305 mmHg%, p = 0.011). RV-GWI was higher in the 20 ppm group at 3 h and 5 h post-ROSC (20 ppm: 189 ± 43 vs. 0 ppm: 108 ± 22 mmHg%, p = 0.049 and 20 ppm: 261 ± 54 vs. 0 ppm: 152 ± 42 mmHg%, p = 0.041). The blood flow calculated by the Impella controller following iCPR initiation correlated well with the pulsed-wave Doppler (PWD) derived pulmonary flow (PWD vs. controller: 1.8 ± 0.2 vs. 1.9 ± 0.2L/min, r = 0.85, p = 0.012). Conclusions iCPR after CA provided sufficient unloading and preservation of the LV systolic function by improving LV-GWI recovery. The addition of iNO to iCPR enabled better preservation of the RV-function as determined by better RV-GWI. Additionally, Impella-derived flow provided an accurate measure of total flow during iCPR.


2020 ◽  
Vol 23 (2) ◽  
pp. 124-132
Author(s):  
David J. Horvath ◽  
Dennis W. Horvath ◽  
Jamshid H. Karimov ◽  
Barry D. Kuban ◽  
Takuma Miyamoto ◽  
...  

2019 ◽  
Vol 40 (Supplement_1) ◽  
Author(s):  
V Pazzanese ◽  
M B Ancona ◽  
L F Bertoldi ◽  
M Pagnesi ◽  
C Marini ◽  
...  

Abstract Background The Impella () percutaneous mechanical circulatory support device is a catheter-based, impeller-driven, axial-flow pump. It reduces left ventricular (LV) stroke work and myocardial oxygen demand while increasing systemic and coronary perfusion in the setting of cardiogenic shock (CS). Purpose The aim of the study was to evaluate clinical characteristics and outcomes of patients with CS treated with Impella at our center. Methods Our single-center, real-world, observational registry included all consecutive patients with CS treated with Impella 2.5, CP, 5.0, or RP at our center from February 2013 to June 2018. Indication for Impella implantation was CS, defined as hypotension (systolic blood pressure <90 mmHg) despite adequate filling status with signs of hypoperfusion. Results A total of 130 patients were included in the registry, mean age was 61±12 years, and 79.2% were males. A history of prior MI, chronic heart failure, and chronic kidney disease was present in 28.9%, 26.1%, and 18.3%, respectively. The etiologies of CS were the following: fulminant myocarditis in 6.1% of the patients, acute coronary syndromes in 59.2%, peri-procedural CS during ventricular tachycardia ablation in 7.7% and acute heart failure in 27%. Out-of-hospital cardiac arrest was present in 30.4% of the patients; 60.2% were in INTERMACS I class at presentation. At admission, mean arterial pressure (MAP) was 65±18 mmHg, serum lactate was 6.7±5.5 mmol/L, mean left ventricular ejection fraction 21.4±11.7%, right ventricular dysfunction was indeed present in 48.6% of the patients. Inotropic drugs support was used in 66.4% of the patients. Impella 2.5, CP, and 5.0 were implanted in 76.1%, 15.4%, and 1.5% of the patients, respectively. Impella RP was also used in 11.5% of patients.The mean duration of support was 135±167 hours. Of note, extra-corporeal membrane oxygenation (ECMO) and intra-aortic balloon pump (IABP) were implanted before Impella insertion in 42.8% and 46.7% of the patients, respectively. Escalation to ECMO, ventricular assist device, or heart transplantation was needed in 35.8% of the patients. During hospital stay, acute kidney injury occurred in 56.7% of the patients; need of renal replacement therapy (RRT) 31.7%; access site-related bleeding 14.3%; life-threatening bleeding 31.5%; acute limb ischemia 14.5%; hemolysis 33.3%. The rate of all-cause mortality at 30 day was 39.7%. Need of RRT was the only independent predictor of 30-day mortality (OR 6.56; CI 1.71–25.15; p=0.006). Conclusion Our single-center, real-world, observational experience reports acceptable clinical outcomes after Impella implantation in a particularly complex population of patients with CS (INTERMACS class I in 60.2% of patients, prior use of ECMO in 42.8% of patients). All-cause mortality at 30 days was 39.7%, and need of RRT was the only independent predictor for 30-day mortality.


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