Finding studies
Finding studies
Take this into the appointment.
Saves the questions and what to expect into your notes, next to the visit they belong to.
Lead
University of Pittsburgh
With the growth of the investigators diabetic and geriatric populations today, greater demand is being placed on the medical arena to treat their complications. There is currently no effective treatment for diabetic neuropathy which is one of the leading reasons for the development of diabetic ulcerations with high peak plantar pressure. An optical pedobarograph has been used to help study the pressures under the foot.\[24\] By minimizing high peak plantar pressures through autologous fat transfer, pain and skin lesions have the potential to be minimized. Restoring the plantar fat pad with autologous fat grafting has the potential to improve foot function, decrease foot pain, bone pain, and nerve pain in the sensate foot and potentially decrease the incidence of foot ulceration in diabetics. It also serves to increase shock absorption during gait. Research has shown greater viability and cellular function with fat grafts processed using the Coleman technique than with other techniques.\[25\] It is the investigators aim to implement the Coleman technique to increase pedal shock absorption on a long term basis. Increasing shock absorption is prophylactic for reducing calcaneal contusions and stress fractures. By limiting an antalgic, compensatory gait, this will limit injury to the patient's superstructure and/or the contralateral foot and leg, ultimately improving the patient's overall systemic health. By minimizing high peak plantar pressures through autologous fat transfer, more severe diabetic complications may be minimized. Heel fat pad augmentation may reduce ulcer formation and/or reformation, and reduce the subsequent comorbid conditions of osteomyelitis and amputation. Typically, ulceration due to bone prominence may be best treated by surgical resection of the prominent bone. However, there exists a population of diabetics that will have a greater chance of developing an acute Charcot event post-surgery or transfer lesions that will ultimately break down. Transfer lesions and re-ulceration is considered a common complication after diabetic foot ulcer surgery.\[26\] Also some patients may not be medically stable making an aggressive osseous surgical procedure inadvisable. If autologous fat grafting does prove to be effective in the foot, it could become a concomitant procedure performed with osseous procedures for a target population of diabetics to limit transfer lesions and ulceration post operatively. If the proposed aims are achieved, patients will be able to have long lasting reconstruction of the heel fat pad with a minimally invasive procedure using autologous tissue. The ultimate costs of maintaining specialized extrinsic padding, shoe gear, and issues with patient compliance can be reduced or eliminated. It could potentially save the medical arena the costs of treating diabetic ulcerations and the resultant complications. The need for other fillers such as silicone which can migrate and involve lymph nodes can be eliminated, as can the need for repeat injections of other temporary fillers which are currently used without any evidence-based medicine. This project will improve scientific knowledge, technical capability, and clinical practice in both the field of plastic surgery and podiatry. Not only will it influence these fields, but augmenting the heel fat pad has the potential to benefit diabetics, geriatric patients, Wounded Warriors with amputations whom have differential loading of their remaining lower extremity, athletes, and cosmetic patients who would like a more active lifestyle than their current foot pain allows. Determining the intrinsic fat properties that lead to a consistent and high fat retention rate can have an enormous impact on the current clinical field of fat grafting. Over 80,000 autologous fat grafting procedures were documented in 2013 by The American Society for Aesthetic Plastic Surgery.\[27\] Determining the factors related to fat retention can aid surgeons in determining the potential amount of fat that may be necessary for optimizing retention, and potentially avoid need for recurrent treatments. Further on, this data would also allow bioengineers to specifically develop fillers using the constituents known to be of importance for the final retention. This project will increase scientific knowledge, technical capability, and improve clinical collaboration between Foot and Ankle Specialists, Plastic Surgeons, and Adipose Stem Cell Biologists.
Age
18–any
Sex
ALL
Healthy volunteers
Not accepted
