Design of Supervisory Control System for Ventricular Assist Device

被引:0
|
作者
Cavalheiro, Andre [1 ]
Fo, Diolino Santos [1 ]
Andrade, Aron [2 ]
Cardoso, Jose Roberto [1 ]
Bock, Eduardo [2 ]
Fonseca, Jeison [2 ]
Miyagi, Paulo Eigi [1 ]
机构
[1] Univ Sao Paulo, Dept Mechatron & Mech Syst Engn, Escola Politecn, BR-09500900 Sao Paulo, Brazil
[2] Inst Dante Pazzanese Cardiol, Dept Bioengn, Sao Paulo, Brazil
关键词
Ventricular Assist Device; Petri nets; Safety Instrumented System;
D O I
暂无
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
When a patient have severe heart diseases, Ventricular Assist Device (VAD) implantation may be necessary. However, the improvement of the interaction between the device and the patient's behavior is crucial. Currently, the control of these pumps does not follow changes in patient behavior and the devices are no safe. Therefore, if VAD has no faults tolerance and no dynamic behavior according to the cardiovascular system performance, there is a serious limitation on expected results. This research investigates a mechatronic approach for this class of devices based on advanced techniques for control, instrumentation and automation to define a method for developing a hierarchical supervisory control system to control a VAD dynamically and securely. To apply this method, concepts based on Petri nets and Safety Instrumented Systems are used. This innovation reduces the interventions and unnecessary drugs, enabling a reduction of deposable material and patient hospitalization, and contributes to sustainability concept..
引用
收藏
页码:375 / +
页数:3
相关论文
共 50 条
  • [1] Automatic Control System for Ventricular Assist Device
    Fajdek, Bartlomiej
    Janiszowski, Krzysztof
    [J]. 2014 19TH INTERNATIONAL CONFERENCE ON METHODS AND MODELS IN AUTOMATION AND ROBOTICS (MMAR), 2014, : 874 - 879
  • [2] Specification of Supervisory Control Systems for Ventricular Assist Devices
    Cavalheiro, Andre C. M.
    Santos Fo, Diolino J.
    Andrade, Aron
    Cardoso, Jose Roberto
    Horikawa, Osvaldo
    Bock, Eduardo
    Fonseca, Jeison
    [J]. ARTIFICIAL ORGANS, 2011, 35 (05) : 465 - 470
  • [3] Hemodynamic guidelines for design and control of a turbodynamic pediatric ventricular assist device
    Uber, Bronwyn E.
    Webber, Steven A.
    Morell, Victor O.
    Antaki, James F.
    [J]. ASAIO JOURNAL, 2006, 52 (04) : 471 - 478
  • [4] The Medos ventricular assist device system
    Thuaudet, S
    [J]. PERFUSION-UK, 2000, 15 (04): : 337 - 343
  • [5] A tubular pediatric ventricular assist device - Design considerations and system characteristics
    Kung, RTV
    Champsaur, GL
    [J]. ASAIO JOURNAL, 1996, 42 (04) : 255 - 262
  • [6] The Thoratec® ventricular assist device system
    Whittaker, S
    Glanville, C
    [J]. PERFUSION-UK, 2000, 15 (04): : 363 - 368
  • [7] Stochastic Modeling and Control of Circulatory System with a Left Ventricular Assist Device
    Son, Jeongeun
    Du, Dongping
    Du, Yuncheng
    [J]. 2019 AMERICAN CONTROL CONFERENCE (ACC), 2019, : 5408 - 5413
  • [8] Elastance Control of a Mock Circulatory System for Ventricular Assist Device Test
    Yu, Yih-Choung
    Gopalakrishnan, Sriram
    [J]. 2009 AMERICAN CONTROL CONFERENCE, VOLS 1-9, 2009, : 1009 - 1014
  • [9] Design of a Percutaneous Left Ventricular Assist Device
    Gupta, Shivam
    Balakrishnan, K. R.
    Kumar, R. Krishna
    [J]. BIODEVICES: PROCEEDINGS OF THE 13TH INTERNATIONAL JOINT CONFERENCE ON BIOMEDICAL ENGINEERING SYSTEMS AND TECHNOLOGIES, VOL 1: BIODEVICES, 2020, 2020, : 298 - 305
  • [10] Ventricular assist device programs: Design and function
    Van Meter, CH
    Ordoyne, SKH
    Kateiva, JE
    [J]. ANNALS OF THORACIC SURGERY, 1999, 68 (02): : 643 - 645