2018
DOI: 10.1016/j.biopha.2018.03.049
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Cardio-supportive devices (VRD & DCC device) and patches for advanced heart failure: A review, summary of state of the art and future directions

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Cited by 23 publications
(17 citation statements)
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“…The medical mesh implanted for 14 d endured a pull‐off force of 2.27 N, as compared to 0.91 N for a silicon implant. The first soft robotic device (CorInnova Inc., USA) that can be delivered by a minimally invasive method through a delivery tube was designed (Figure i) . The pneumatic driver inside the device conforms to the heart without sutures and compresses the heart in synchrony with the native heart rhythm.…”
Section: Soft Bioelectronics–assisted Therapymentioning
confidence: 99%
“…The medical mesh implanted for 14 d endured a pull‐off force of 2.27 N, as compared to 0.91 N for a silicon implant. The first soft robotic device (CorInnova Inc., USA) that can be delivered by a minimally invasive method through a delivery tube was designed (Figure i) . The pneumatic driver inside the device conforms to the heart without sutures and compresses the heart in synchrony with the native heart rhythm.…”
Section: Soft Bioelectronics–assisted Therapymentioning
confidence: 99%
“…Active hydraulic ventricular attaching support system (ASD) is a net cover made of silicone a biocompatible material with a heart-shaped configuration consisting of flexible interconnected hollow tubules; it is surgically fixed to the outer wall of the heart and covers both ventricles of the heart providing physical support [18]. ASD is manufactured as previously described method [19,20]. Briefly, the 3D printed wax model of ASD was made at first, and covered it with silicone evenly, then heated it at 100 • C for one hour to melt the wax and obtain the pure silicone ASD (Fig.…”
Section: Designing and Manufacturing Of Asdmentioning
confidence: 99%
“…In addition to mechanical reinforcement of the myocardium, patches may also be engineered to serve as a cellular substrate (i.e., engineered ECM) to recruit and retain cell types involved in native myocardial regeneration and angiogenesis ( Serpooshan et al, 2013 ). Building on these techniques, scaffolds can serve as vehicles to deliver therapeutic cytokines, growth factors, proteins, and stem cells to the affected areas ( Naveed et al, 2018 ).…”
Section: Tissue Engineered Solutionsmentioning
confidence: 99%