Neoplatinum F.U.E / D.H.I.

NEOPLATINUM D.H.I FUTURE OF HAIR TRANSPLANT 100% success rate is the goal of every hair transplant surgeon. For clients choosing a hair transplant, the same is true.  It’s time to move past the future now. We are able to deliver up to 100% results using our most recent neo Platinum dht technique thanks to our committed research team and cutting-edge instrumentation. In order to deliver the best results possible with a certain number of Grafts, we have continuously worked to improve our methods. There are three main steps in a hair transplant. Grafts are first removed, then handled and stored outside the body, and finally they are replanted beneath the skin of the recipient area, which is bald. Fue done with traditional instruments result 80-82 percent Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo. In each of these steps there are chances of grafts damage. There is a chance that the graftEach of these steps has the potential to damage the grafts,   While performing extraction, consider the quality of the extraction equipment, its weight, RPM, traction, the sharpness of the punch, the type of punch being used, the material of the punch, and, most importantly, the person performing the extraction. All of the above factors are crucial in determining the actual outcome of the extraction process. According to my research, FUE with traditional instruments and dental motors can cause up to 20% graft damage. This graft damage can increase by up to 40% in some cases. This graft damage will undoubtedly manifest as poor results. So there was a need to look further and conduct some instrumentation research. I began my research in 2015, when I was quite afraid of changing our traditional methods of doing a few things. Because there was no development facility in India at the time, we had to form alliances with US and Taiwanese companies to improve the instrumentation. After many failed attempts, I was able to determine the exact torque and RPM of the machine, as well as the ideal weight required to perform the best hair transplant in the world. We created ultralightweight micromotors. This micromotor can weigh up to 20 grammes. The traditional FUE motor, which is a traditional dental motor  used to weight approximately 250 grammes . My initial success with these small motors was very encouraging. I was able to reduce graft damage up to 12% from 18 %. Although I was happy with the advancements I had made with this achievement, I was still looking into what I could do to achieve 100% results. In fact, it was my dream to achieve 100% results for my clients. The next target was holding material, which was used to keep the grafts outside the body. After all of the hits and trials, and a lot of money spent on these studies, I believe I have found the best graft holding solution to integrate into my practise. The final but not least point was to determine the best instrument for skin slitting. This was the culmination of my research and development for my most recent technique, the neoplatinum hair transplant technique. I discovered that the sapphire blade was the best for skin slitting in hair transplant. My quest to find an ideal solution for 100% results ended with this. With changes and modifications to my extraction equipment, I was able to reduce wastages by up to 12% from 18%. The rest of the improvement came from modifying the holding solution and the slitting instrument.  Neoplatinum hair transplant: extraction equipment and holding material introduced Clients wonder why, if you did your research and development in 2016 and 2017, it took so long to publicise it openly. The answer is that whenever we change any traditional technique we have, we must proceed slowly. So, when we first started using our new equipment on our clients, we only did four to 5% of the total transplant so that if there is some negative impact, it does not ruin the entire result. Only one out of every twenty clients used to give us permission to transplant this small percentage of area using our new technique. With such a small number of clients for research, it took us three to four years to achieve this level of assurance. This is why it took us approximately 7 years to complete our research and develop this brand new fail safe hair transplant protocol. will get damaged in each of these steps. When performing extraction, consider the calibre of the extraction tool, its weight, RPM, traction, punch sharpness, punch type, punch material, and—most importantly—the person performing the extraction. The actual result of the extraction process will be determined by all the aforementioned factors, which are crucial. According to my research, using dental motors and traditional FUE instruments can result in up to 20% graft damage. This graft damage may rise by up to 40% in some circumstances. This graft damage will undoubtedly manifest itself in the form of subpar results. Therefore, it was necessary to look further and conduct some instrumentation research. I began my research in 2015, when I was still very apprehensive about changing our established ways of doing things. Since India did not have a development facility at the time, we had to establish partnerships with US and Taiwanese companies to improve the instrumentation. After numerous failed attempts, I was able to determine the precise torque, RPM, and ideal weight needed to perform the best hair transplant in the history of hair transplantation. We developed extremely lightweight micromotors. This tiny motor is up to 20 grammes in weight. The conventional FUE motor, which is actually a conventional dental motor We used to wear clothing that weighed about 250 grammes. With these little motors, I had a lot of initial success. I was able to use graft that was up to 7–8% damaged. Even though I was happy with the progress I made with this success, I was still

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