The growing environmental impact from healthcare sector necessitates the adoption of sustainable strategies to reuse, recycle, reduce waste, lower carbon emissions, etc. In ophthalmology, surgical waste poses a significant environmental challenge, particularly due to the high volume of surgeries, along with single-use instruments, packaging materials and disposable surgical supplies. Examples of practical strategies to reduce surgical waste include adopting reusable surgical instruments when safe and feasible, minimizing unnecessary packaging and optimizing operating room protocols, e.g., multidose topical drops on multiple patients. An education regarding sustainability for medical personnel can further decrease waste production in the long term. Collaboration between healthcare providers, manufacturers and policymakers is essential to developing and integrating sustainability into ophthalmic practice. By implementing these strategies, ophthalmologists can contribute to a more environmentally responsible healthcare system without compromising patient safety.
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http://dx.doi.org/10.1016/j.apjo.2025.100182 | DOI Listing |
Asia Pac J Ophthalmol (Phila)
March 2025
Retina Division, Department of Ophthalmology, Faculty of Medicine, Chiang Mai University, Chiang Mai, Thailand.
The growing environmental impact from healthcare sector necessitates the adoption of sustainable strategies to reuse, recycle, reduce waste, lower carbon emissions, etc. In ophthalmology, surgical waste poses a significant environmental challenge, particularly due to the high volume of surgeries, along with single-use instruments, packaging materials and disposable surgical supplies. Examples of practical strategies to reduce surgical waste include adopting reusable surgical instruments when safe and feasible, minimizing unnecessary packaging and optimizing operating room protocols, e.
View Article and Find Full Text PDFReprod Biomed Online
November 2024
IVIRMA Global Research Alliance, IVIRMA Madrid, Spain; Instituto de Investigación Sanitaria La Fe (IIS La Fe), Valencia, Spain, and Rey Juan Carlos University, Madrid, Spain.
With a growing number of women in developed countries having children later in life, it is time to rethink women's reproductive health. This trend of 'delayed parenthood' reflects a complex interplay of labour market rules, personal choices, rarefying social connections and the renowned possibilities of assisted reproductive technology (ART). While ART offers support, its success wanes with age, prompting a rise in additional strategies such as elective ovarian cryopreservation.
View Article and Find Full Text PDFJ Robot Surg
March 2025
Institute of Academic Surgery (IAS), Royal Prince Alfred Hospital, Sydney, NSW, Australia.
World J Urol
March 2025
MRC Centre for Transplantation, King's College London, London, UK.
Purpose: The aim of this systematic review is to assess the environmental impact of urologic procedures and equipment (P), specifically comparing emissions and waste generation between single-use and reusable devices (I and C), while also exploring strategies for emission reduction and providing relevant recommendations for sustainable practices in urology.
Methods: The review registered to PROSPERO (ID: CRD42024576865) and adhered to the Preferred Reporting Items for Systematic Reviews and Meta-analyses (PRISMA) guidelines. A systematic search was conducted to identify studies addressing sustainability, carbon footprint, and environmental impact in urology.
Annu Int Conf IEEE Eng Med Biol Soc
July 2024
Current Ex Vivo Lung Perfusion (EVLP) systems are designed to support lungs outside of the body for up to 12 hours, allowing clinicians limited opportunity to assess organ function and viability prior to transplant. However, prolonged EVLP would allow for advanced time-dependent therapies such as immunomodulation, cell-based therapies and gene editing for donor lung repair and reconditioning. Therefore, we have developed a novel optimized bioenvironment for prolonged (NOBEL) EVLP to preserve a donor lung up to 30 hours.
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