STRENGTHENING PATIENT CARE AND SAFETY IN COMPLEX, HIGH-RISK PAEDIATRIC LIVER TRANSPLANT SURGERY
Innovative mixed reality technology enhances pre-surgical planning at NUH's specialised paediatric organ transplant centre in
One remarkable child is little Avira, who at two years old, has already undergone two major life-saving surgeries.
Diagnosed with a rare illness known as biliary atresia when she was less than a month old, bile was trapped inside Avira's liver, which led to liver damage and scarring. If left untreated, her liver would eventually fail.
Biliary atresia occurs in approximately one in every 20,000 live births, with a slightly higher prevalence in females.
Overcoming the first hurdle with primary treatment
Liver transplantation has proven highly successful in the long-term treatment of children with biliary atresia, with an overall survival of more than 90 per cent. However, the initial treatment is to perform a Kasai procedure because 50 to 60 per cent of children experience significant improvement and may survive well with their own liver until much older.
Hence, Avira first underwent the Kasai procedure at two months old, where her surgeon Adjunct Associate Professor
Nonetheless, three in five children may still face progressive liver-related complications following a Kasai procedure.
For Avira, a post-operative follow-up two months later revealed progressive deterioration of her liver function and a liver transplant was deemed necessary. Her mother,
Preparing for a complex, high-risk surgery with hybrid mixed reality technology
Preparing Avira for her transplant required overcoming significant challenges.
Liver transplants in a small child (weighing less than 10kg) is relatively rare and considered highly challenging. These cases require specialised surgical expertise and careful planning due to the complexities involved in such small patients.
Factors such as the child's small size, the need for appropriately sized liver donor grafts, and the delicate nature of paediatric patients add significant risks and technical difficulty to the procedure.
Being extremely small, Avira needed to be on a feeding tube to gain weight in two months. Furthermore, her small size meant that her surgeons would have to split her mother's donated liver (known as graft reduction) to ensure that the organ would be a right fit for Avira.
Unlike adults, small children being transplanted with grafts too large or too small for them may present issues following liver transplantation and as the child grows older.
Studies have found that different approaches and graft-size matching strategies that are age- and body weight-appropriate are crucial for better outcomes in paediatric living donor liver transplantations.
In addition to reducing the graft size of the donor liver, the surgical team needed to determine the exact size of the liver graft needed. Incorrectly estimating the size of the graft could lead to a longer time on the operating table for Avira, and could also increase the risk of graft damage.
To ensure the right size of the graft for Avira, the surgical team, led by Adj A/
"Holomedicine leverages mixed reality to interact with virtual objects superimposed onto the real world, allowing for unparalleled accuracy in pre-surgical planning," explained Dr
"This hybrid technique enhances surgical planning, giving us a solid road map with the potential of greater precision so that patient care and safety can be improved during the surgery itself," said Adj A/
NUCOT is the only specialist centre in
As we celebrate World Transplant Day, we honour the courage of all transplanted children and their families. Through continuous innovation and compassionate care, NUCOT remains committed to transforming lives and offering hope to families navigating the complexities of organ transplantation.
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SOURCE National University Hospital
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