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Martin Maw
Martin Maw
在 meduniwien.ac.at 的电子邮件经过验证
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年份
Effects of functional electrical stimulation on denervated laryngeal muscle in a large animal model
J Cheetham, JD Perkins, JC Jarvis, M Cercone, M Maw, JW Hermanson, ...
Artificial organs 39 (10), 876-885, 2015
372015
Continuous LVAD monitoring reveals high suction rates in clinically stable outpatients
C Gross, H Schima, T Schlöglhofer, K Dimitrov, M Maw, J Riebandt, ...
Artificial Organs 44 (7), E251-E262, 2020
362020
Early detection of pump thrombosis in patients with left ventricular assist device
J Grabska, T Schlöglhofer, C Gross, M Maw, K Dimitrov, D Wiedemann, ...
ASAIO Journal 66 (4), 348-354, 2020
222020
LVAD speed increase during exercise, which patients would benefit the most? A simulation study
C Gross, F Moscato, T Schlöglhofer, M Maw, B Meyns, C Marko, ...
Artificial organs 44 (3), 239-247, 2020
162020
Implantable Fiber Bragg Grating Sensor for Continuous Heart Activity Monitoring: Ex-Vivo and In-Vivo Validation
D Ferraro, G D’Alesio, D Camboni, C Zinno, L Costi, M Haberbusch, ...
IEEE Sensors Journal 21 (13), 14051-14059, 2021
142021
Hemodynamic exercise responses with a continuous-flow left ventricular assist device: Comparison of patients’ response and cardiorespiratory simulations
C Gross, L Fresiello, T Schlöglhofer, K Dimitrov, C Marko, M Maw, ...
PLoS One 15 (3), e0229688, 2020
132020
The left ventricular assist device as a patient monitoring system
F Moscato, C Gross, M Maw, T Schlöglhofer, M Granegger, D Zimpfer, ...
Annals of Cardiothoracic Surgery 10 (2), 221, 2021
102021
A sensorless modular multiobjective control algorithm for left ventricular assist devices: A clinical pilot study
M Maw, T Schlöglhofer, C Marko, P Aigner, C Gross, G Widhalm, ...
Frontiers in Cardiovascular Medicine 9, 888269, 2022
92022
Development of suction detection algorithms for a left ventricular assist device from patient data
M Maw, C Gross, T Schlöglhofer, K Dimitrov, D Zimpfer, F Moscato, ...
Biomedical Signal Processing and Control 69, 102910, 2021
62021
CARD23: HeartMate 3 SNOOPY: noninvasive cardiovascular diagnosis of patients with fully magnetically levitated blood pumps
T Schlöglhofer, C Gross, T Abart, R Michael, F Kaufmann, I Weigel, ...
ASAIO Journal 68 (Supplement 2), 56, 2022
42022
Novel solutions for patient monitoring and mechanical circulatory support device control
M Maw, F Moscato, C Gross, T Schlöglhofer, H Schima
Mechanical support for heart failure: Current solutions and new technologies …, 2020
32020
Estimation of Left Ventricular Stroke Work for Rotary Left Ventricular Assist Devices
EL Wu, M Maw, AF Stephens, MC Stevens, JF Fraser, G Tansley, ...
ASAIO Journal 69 (9), 817-826, 2023
2023
BIO7: Hemodynamic Patient Responses to Activities of Daily Living in Left Ventricular Assist Device Patients in Constant Speed and with a Novel Physiological Control Algorithm
M Maw, T Schlöglhofer, C Marko, P Aigner, C Gross, G Widhalm, ...
ASAIO Journal 68 (Supplement 2), 12, 2022
2022
Modular Physiological Control for Left Ventricular Assist Devices: A Clinical Pilot Trial
M Maw, T Schloeglhofer, G Widhalm, F Wittmann, J Schlein, A Schaefer, ...
The Journal of Heart and Lung Transplantation 41 (4), S104, 2022
2022
Low-dose intravenous thrombolytic therapy for pump thrombus formation in patients with HeartWare left ventricular assist device
K Dimitrov, J Riebandt, D Wiedemann, P Angleitner, R Moayedifar, ...
WIENER KLINISCHE WOCHENSCHRIFT 129, S113-S113, 2017
2017
Micro-Embolic Signals Correlate with Pump Thrombus Formation and Non-Thrombotic Outflow Graft Occlusion in Patients with Left Ventricular Assist Devices
K Dimitrov, J Riebandt, D Wiedemann, R Moayedifar, P Simon, T Haberl, ...
The Thoracic and Cardiovascular Surgeon 65 (S 01), OP169, 2017
2017
Micro-Embolic Signals Correlate with Pump Thrombus Formation and Non-Thrombotic Outflow Graft Occlusion in Patients with Left Ventricular Assist Devices
K Dimitrov, J Riebandt, T Haberl, D Wiedemann, P Simon, R Moayedifar, ...
The Journal of Heart and Lung Transplantation 35 (4), S97, 2016
2016
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