BEST HEART SPECIALISTÂ
As medical and surgical treatments for heart defects continue to evolve, connective tissue valves can develop and adapt to a changing biological environment. Significant research has been done in the field of tissue engineering for operating and developing cardiac valves. Engineering strategies include scaffolds formed using natural and synthetic polymers, as well as a 3D biological model. Nevertheless, there exists a viable material that is truly capable of biological development and incorporation into the native patient's body. Stem cell or other cell engineering research could help fill this gap. Meanwhile, many questions have been raised about the anatomical model of the heart valve using 3D printers. First, a well-validated 3D valve imaging scheme must be established to generate the most accurate 3D imaging. All aspects of the simulation should be improved, including imaging, segmentation, 3D image reconstruction, digital programming, and multimedia 3D modeling. Then, with a carefully created model, the hemodynamics of the valve models will be tested and validated against working with human anatomy. Moreover, the broadening of materials to create 3D models deserves further attention when developing detailed reproductions of the human heart valve. It is to be hoped that materials like native human fibers will be developed so that 3D typography permits the development and testing of biologically adaptable anatomical and functional valves with patient-specific artifacts of the heart.
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- HEART SPECIALIST IN LAJPAT NAGAR
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