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Use of Two Intracorporeal Ventricular Assist Devices As a Total Artificial Heart
Published on: May 11, 2018
Durable left ventricular assist devices in pediatrics: impact of body size on outcomes and size limitations
Mimi Xiaoming Deng1,2, Nao Yoshida3, Christoph Haller1
1Division of Cardiac Surgery, University of Toronto, Toronto, ON, Canada.
Insights
Pediatric ventricular assist devices (VADs) face challenges in small children. While HeartMate 3™ shows promise, size-specific risks like infection and bleeding persist, necessitating tailored device development.
Area of Science:
- Pediatric cardiology
- Biomedical engineering
- Medical device development
Background:
- Limited ventricular assist device (VAD) options exist for pediatric end-stage heart failure.
- Smaller body size (<20 kg) is linked to higher VAD-related stroke risk.
- Infants (<1 year) face the highest post-implant mortality, with survival improving by age.
Purpose of the Study:
- To review the current landscape of VADs in pediatric patients.
- To highlight challenges and advancements in VAD implantation for small children.
- To discuss the implications of body size and age on VAD outcomes.
Main Methods:
- Analysis of registry data on VAD outcomes stratified by patient weight and age.
- Review of clinical benefits and limitations of different VAD types (intracorporeal vs. paracorporeal).
- Examination of recent advancements, including HeartMate 3™ (HM3) use in smaller patients and emerging technologies.
Main Results:
- Intracorporeal (IC) VADs offer greater clinical benefit than paracorporeal devices.
- HeartMate 3™ (HM3) is now used in patients as small as 17.7 kg, with comparable survival.
- Smaller body surface area patients using HM3 show increased risk of infection, renal dysfunction, bleeding, and stroke.
Conclusions:
- VAD outcomes in pediatrics are not uniform across all ages and body sizes.
- Innovative imaging and device development are crucial for improving VAD use in infants and small children.
- Size-stratified analyses and tailored device solutions are essential for advancing pediatric VAD therapy.
Abstract:
Despite the range of body sizes in children, few ventricular assist devices (VAD) exist to support pediatric patients with end-stage heart failure. Large registry data identified weight < 20 kg to be associated with higher rates of VAD-related stroke, compared to > 40 kg. Moreover, patients < 1 years of age experience the highest post-implant mortality, with 1-year survival improving in an age-dependent manner. Within different VAD types, intracorporeal continuous (IC) devices confer the greatest clinical benefit and quality of life compared to paracorporeal alternatives. The major limitation of IC VADs is the technical challenge of implantation into patients of small body size, thus the majority of patients with IC devices are pre-adolescents or older. However, since 2021, the use of HeartMate 3™ (HM3) has expanded to patients as small as 17.7 kg. Although HM3 offers equally favorable survival outcomes irrespective of body size, patients of low body surface area are more likely to experience non-device-related major infections and renal dysfunction, with suggestion for elevated risk of major bleeding and stroke. Innovative imaging strategies have emerged to assess the feasibility of HM3 implantation and facilitate preoperative planning in small children. Moreover, the unmet need for an IC device in the infant population has revived interest in the axial pump, with a pivotal clinical trial currently underway. VAD outcomes in the pediatric population are not equivalent across all ages and body sizes, thus size-stratified analyses and device development to serve the full spectrum of body habitus are key considerations as this field rapidly evolves.
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