Your English writing platform
Discover LudwigExact(13)
Clinical repair of cranial bone defects using biological or metal grafts are limited by tissue availability or poor functional bone restoration.
The available scientific evidence supports the view that all the 4 known factors contributing to bone restoration should be given an equal acknowledgment and recognition.
The ongoing development of nanocomposites for bone restoration will result in smart, theranostic materials, capable of acting therapeutically in direct feedback with the outcome of in situ disease monitoring at the cellular and subcellular scales.
We have previously reported that the standard tissue engineering approach to provide solutions for impaired fracture healing, bone restoration and regeneration must include the utilisation of growth factors, scaffolds, mesenchymal stem cells and an optimal mechanical environment (diamond concept).
Based on this capacity and synergy of biomaterials and cell growth factors, a new bioengineering approach for bone restoration and regeneration, also known as bone tissue engineering, has been developed to treat large-size or complicated discontinuity problems in bone.
The standard tissue engineering approach to provide solutions for impaired fracture healing, bone restoration and regeneration includes the utilisation of growth factors, scaffolds and mesenchymal stem cells (triangular concept).
Similar(47)
LLLT applications, which have been promoted by some authors and manufacturers of the LLLT devices, included the acceleration of wound healing, enhancement of the remodeling and repair of bones, restoration of normal neural function following injury, pain attenuation, and modulation of the immune system [27].
The impacted bone restores short-term stability for the revision prosthesis and allows long-term restoration of bone stock [ 17, 36].
Advantages of structural allografts include their biologic potential, versatility, relative cost-effectiveness, bone stock restoration, and potential for ligamentous reattachment.
The study indicates that the hybrid porous implant design which combines the advantages of different pore sizes may be meaningful and promising for bone defect restoration.
These techniques have shown success in pre-clinical settings with respect to regenerating various tissue types, and have designed implantable structures investigated in clinical trials for bone defect restoration, pulmonary disease, dysphagia, and lung cancer.
Write better and faster with AI suggestions while staying true to your unique style.
Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com