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MedTech Outlook | Thursday, February 01, 2024
The European market for PBM is expected to grow to €2.5 billion by 2025. This growth is being driven by several factors, including the increasing awareness of the benefits of PBM, the growing body of evidence, and the safety and efficacy of the therapy.
FREMONT, CA: Photobiomodulation (PBM), commonly referred to as low-level laser therapy (LLLT), stands as a burgeoning discipline within the medical domain, leveraging light to induce cellular processes and facilitate healing. This non-invasive and painless therapeutic approach has demonstrated efficacy in addressing a diverse spectrum of medical conditions, including pain relief, wound healing, inflammation management, tissue regeneration, and the treatment of neurological disorders and various skin conditions. The utilisation of light in PBM showcases promising outcomes, positioning it as an innovative and versatile intervention in the realm of medical treatment.
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PBM within the healthcare landscape in Europe is experiencing a notable surge, propelled by various compelling factors. One significant catalyst is the escalating awareness surrounding the manifold benefits associated with PBM. As an increasing volume of research emerges, shedding light on the efficacy of PBM, healthcare professionals and patients alike are becoming more cognizant of its potential therapeutic applications.
A pivotal driver supporting the uptake of PBM is the expanding body of clinical evidence substantiating its effectiveness across a spectrum of conditions. For instance, recent research, as exemplified by a study published in the Journal of Pain, underscores the efficacy of PBM in alleviating pain and enhancing functionality among individuals grappling with chronic knee pain.
The safety and efficacy profile of PBM further contributes to its accelerated adoption. Noteworthy is its non-invasive nature, rendering it a secure therapeutic option with minimal side effects, obviating the need for surgical interventions or reliance on medications.
Moreover, the cost-effectiveness of PBM emerges as a compelling factor influencing its widespread utilisation. In contrast to more resource-intensive alternatives such as surgery or medication, PBM stands out as a relatively economical therapeutic modality. This confluence of factors positions PBM as a promising and accessible intervention within the evolving landscape of healthcare in Europe.
PBM is believed to exert its therapeutic effects by enhancing mitochondrial activity, the cellular powerhouses responsible for energy production. This stimulation yields several favourable outcomes, such as increased adenosine triphosphate (ATP) production, mitigated inflammation, and enhanced tissue repair. The application of PBM typically involves the use of a specialized device emitting light at specific wavelengths, with 660nm and 850nm being the most commonly utilised. PBM demonstrates versatility in treating a diverse range of conditions, encompassing both acute and chronic ailments. Among the prevalent conditions addressed by PBM are pain management, wound healing, arthritis, sports injuries, and various neurological disorders.
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