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  1. 5 Ιουν 2023 · Portable, wearable and implantable artificial kidney systems require compact and efficient dialysate regeneration systems and novel membranes for improved toxin removal and long-term patency.

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  2. The implantable bioartificial kidney builds upon the existing extracorporeal Renal Assist Device (RAD), which is a bioartificial kidney that combines a membrane hemofilter and a bioreactor of human renal tubule cells to mimic many of the

  3. 20 Απρ 2018 · The implantable renal assist device (iRAD) utilizes microelectromechanical system (MEMS) technology to scale down the original RAD design into a compact, implantable and self-sustainable BAK. The iRAD combines a long-life hemofilter made of silicon nanopore membrane (SNM) with a renal tubule cell bioreactor, such as the BRECS, with immune ...

  4. Furthermore, hurdles must be considered and overcome to develop wearable and implantable artificial kidney devices that can help to improve the quality of life and life expectancy of patients with CKD.

  5. 16 Φεβ 2024 · iHemo is the name of the implanted dialysis device we are developing. iHemo uses the implantable bioartificial kidneys blood filter (hemofilter) to perform hemodialysis inside the body – without requiring needles and without any blood leaving the body.

  6. 10 Οκτ 2018 · One remarkable innovation is the implantable Renal Assist Device (iRAD) that uses micromachining techniques to fabricate a biohybrid system able to mimic renal morphology and function.

  7. In this review, we focus on two remarkable innovations that may offer significant clinical impact in the field of renal replacement therapy: the implantable artificial renal assist device (RAD) and the transplantable bioengineered kidney.

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