市場調查報告書
商品編碼
1625288
到 2030 年整形外科導航系統市場預測:按類型、技術、應用、最終用戶和地區進行的全球分析Orthopedic Navigation Systems Market Forecasts to 2030 - Global Analysis By Type (2D Navigation Systems, 3D Navigation Systems, Computer-Assisted Surgery Systems and Other Types), Technology, Application, End User and By Geography |
根據 Stratistics MRC 的數據,2024 年全球整形外科導航系統市場規模將達到 28 億美元,預計到 2030 年將達到 67 億美元,預測期內複合年成長率為 15.9%。
整形外科導航系統是用於提高整形外科手術精度、精確度和結果的先進技術。它使用即時影像和電腦軟體來指導外科醫生進行關節重建、脊椎手術和骨折融合術等手術。這些系統提供患者解剖結構的詳細 3D 視覺化,從而實現更精確的植入放置、對齊和解剖。它還包括一個附著在手術器械上的追蹤裝置,用於監測其相對於患者身體的位置。好處包括改善手術結果、減少錯誤、加快恢復速度以及最大限度地減少手術創傷。
根據 2023 年 2 月發表在《美國骨科醫師學會雜誌》上的一篇論文,微創踝關節手術 (MIS) 的受歡迎程度正在飆升。
整形外科疾病盛行率增加
隨著骨關節炎、脊椎狹窄、骨折等整形外科疾病患者數量的增加,精準手術介入的需求也隨之增加。整形外科導航系統可提高關節重建、脊椎手術和骨折修復過程中的精確度、最大限度地減少人為錯誤並改善患者的治療效果。此外,世界人口老化是整形外科疾病盛行率不斷上升的一個主要因素,醫療保健提供者需要這些系統來確保高品質的手術並提高老年患者的生活品質。
由於經濟限制,採用有限
由於初始購買、安裝和維護成本,整形外科導航系統價格昂貴,尤其是在低收入地區和小型診所。所需的專用設備(例如影像處理設備和追蹤系統)對於醫療保健提供者來說可能無法負擔,導致許多機構選擇傳統的、更便宜的方法,而導航技術的廣泛採用阻礙了市場的成長。
採用微創手術
整形外科導航系統對於膝關節和髖關節置換術以及脊椎手術等微創整形外科手術中的精確對準、減少組織損傷和更快恢復至關重要。隨著這些程序變得越來越普遍,對這些系統的需求預計會增加。這些系統提供即時指導,克服手術部位可視性和進入受限等挑戰,提高微創手術的準確性並推動市場成長。
缺乏熟練的外科醫生
將整形外科導航系統納入微創手術需要接受這兩種技術訓練的熟練外科醫生。然而,由於缺乏訓練有素的專業人員,這些先進程序的採用可能會受到阻礙。儘管培訓計畫不斷增加,但專門從事整形外科導航系統使用的外科醫生仍然很少,這可能會延遲某些地區或醫療機構的採用。
COVID-19 的影響
由於擇期手術的延誤和醫院預算的減少,COVID-19 大流行整形外科導航系統市場產生了重大影響。關節重建和脊椎手術等整形外科手術被推遲,以優先考慮重症加護,暫時減少了對導航系統的需求。然而,一旦疫情結束後擇期手術恢復,市場就開始復甦。對精準高效手術的關注重新燃起了人們對整形外科導航系統的興趣,推動了市場的適度成長。
2D 導航系統領域預計將在預測期內成為最大的領域
X 光和螢光透視影像的即時指導使外科醫生能夠在手術過程中追蹤器械和解剖結構。與 3D 系統相比,它更容易使用,因為影像集更簡單。軟體的進步正在提高影像清晰度和準確性,縮小 2D 和 3D 系統之間的差距。 2D 系統與現有透視和X光設備無縫整合,無需額外投資即可快速部署。
透視檢查領域預計在預測期內複合年成長率最高。
透視檢查預計將在預測期內顯著成長,因為它提供即時、連續的 X 光影像,使外科醫生能夠在手術過程中監測手術器械和解剖結構。這種即時回饋可確保植入和器械的準確放置。骨骼結構和軟組織的準確可視化可最大限度地減少手動錯誤,從而改善關節關節重建和脊椎手術等手術的對準,從而推動市場成長。
在技術進步和整形外科疾病盛行率上升的推動下,預計北美地區在預測期內將佔據最大的市場佔有率。人口老化、骨質疏鬆症和關節炎發病率增加以及與生活方式相關的關節退化等因素增加了對先進手術解決方案的需求。整形外科導航系統對於提高關節重建、脊椎手術和創傷治療的精確度、減少併發症和改善患者治療效果至關重要。
預計亞太地區在預測期內將實現最高成長率。這是因為整形外科導航系統與 CT、MRI 和透視等先進成像技術的整合提高了手術精度並減少了併發症。此外,日本和韓國等新興經濟體採用機器人輔助手術正在導致醫療旅遊的增加和先進醫療技術的普及,特別是對於關節重建和脊柱手術等複雜手術,這正在徹底改變這種情況。
According to Stratistics MRC, the Global Orthopedic Navigation Systems Market is accounted for $2.8 billion in 2024 and is expected to reach $6.7 billion by 2030 growing at a CAGR of 15.9% during the forecast period. Orthopedic navigation systems are advanced technologies used in orthopedic surgeries to enhance precision, accuracy, and outcomes. They use real-time imaging and computer software to guide surgeons during procedures like joint replacements, spinal surgery, and fracture fixation. These systems provide detailed 3D visualizations of the patient's anatomy, enabling more accurate placement of implants, alignment, and incisions. They also include tracking devices attached to surgical tools to monitor their position relative to the patient's body. Benefits include better surgical outcomes, reduced errors, faster recovery, and minimized surgical trauma.
According to an article published by the Journal of the American Academy of Orthopedic Surgeons in February 2023, minimally invasive surgery (MIS) of the foot and ankle is experiencing a surge in popularity.
Increasing prevalence of orthopedic conditions
As the number of individuals with orthopedic conditions like osteoarthritis, scoliosis, and fractures increases, there is a growing need for accurate surgical interventions. Orthopedic navigation systems offer enhanced precision during joint replacements, spinal surgeries, and fracture repair, minimizing human error and improving patient outcomes. Further the global aging population is a primary driver of the increased prevalence of orthopedic conditions, making healthcare providers increasingly relying on these systems to ensure high-quality surgeries and improve the quality of life for elderly patients.
Limited adoption due to financial constraints
Orthopedic navigation systems are costly, particularly in lower-income regions or smaller practices, due to the initial purchase, installation, and maintenance costs. The specialized equipment required, such as imaging devices and tracking systems, can be unaffordable for healthcare providers, leading many facilities to opt for traditional, less expensive methods, hindering the widespread adoption of navigation technologies thus hampering the market growth.
Adoption of minimally invasive surgical procedures
Orthopedic navigation systems are crucial for precise alignment, tissue damage reduction, and faster recovery in minimally invasive orthopedic surgeries like knee and hip replacements or spinal surgeries. As these techniques gain popularity, the demand for these systems is expected to rise. These systems offer real-time guidance, overcoming challenges like limited visibility and access to surgical sites, thereby enhancing the precision of minimally invasive surgical procedures thus encouraging the market growth.
Limited availability of skilled surgeons
The integration of orthopedic navigation systems into minimally invasive surgeries requires skilled surgeons trained in both technologies. However, the adoption of these advanced procedures can be hindered by a shortage of trained professionals. Despite increasing training programs, there are still fewer surgeons specializing in using orthopedic navigation systems, which could slow their adoption in specific regions or healthcare settings.
Covid-19 Impact
The COVID-19 pandemic significantly impacted the Orthopedic Navigation Systems Market due to delayed elective surgeries and reduced hospital budgets. Orthopedic procedures, such as joint replacements and spine surgeries, were postponed to prioritize critical care, leading to a temporary decline in demand for navigation systems. However, as elective surgeries resumed post-pandemic, the market began to recover. The focus on precision and efficient surgeries has renewed interest in orthopedic navigation systems, driving gradual market growth.
The 2D navigation systems segment is expected to be the largest during the forecast period
Over the forecasted timeframe, the 2D segment is anticipated to dominate the market share owing to real-time guidance through X-rays or fluoroscopic images, enabling surgeons to track instruments and anatomical structures during surgery. They are easier to use due to simpler image sets compared to 3D systems. Advances in software are improving image clarity and accuracy, bridging the gap between 2D and 3D systems. 2D systems can integrate seamlessly with existing fluoroscopy or X-ray machines, eliminating additional investments and enabling rapid deployment.
The fluoroscopy segment is expected to have the highest CAGR during the forecast period
The fluoroscopy segment is anticipated to witness substantial growth during the estimation period as it provides continuous X-ray imaging in real-time, allowing surgeons to monitor surgical instruments and anatomical structures during procedures. This real-time feedback ensures precise placement of implants and instruments. Accurate visualization of bone structures and soft tissues minimizes manual errors, leading to better alignment in procedures such as joint replacements and spinal surgeries boosting the growth of the market.
The North America region is expected to hold the largest share of the market during the forecast period driven by technological advancements and a rising prevalence of orthopedic conditions. Factors such as an aging population, increasing cases of osteoporosis and arthritis, and lifestyle-related joint degeneration are contributing to the demand for advanced surgical solutions. Orthopedic navigation systems have become indispensable for improving precision in joint replacement, spine surgeries, and trauma management, reducing complications, and enhancing patient outcomes.
During the estimation period, the Asia Pacific region is anticipated to record the highest growth rate owing to the integration of orthopedic navigation systems with advanced imaging technologies, such as CT, MRI, and fluoroscopy, enhances surgical precision and reduces complications. Additionally, the adoption of robotic-assisted surgeries in developed economies like Japan and South Korea is transforming the landscape, particularly for complex procedures such as joint replacements and spine surgeries driven by increasing medical tourism and improving access to advanced healthcare technologies.
Key players in the market
Some of the key players in Orthopedic Navigation Systems market include Amplitude Surgical, B. Braun SE, Brainlab, DePuy Synthes (Johnson & Johnson Services, Inc.), Exactech, Inc., Globus Medical, Kinamed Incorporated, Medtronic PLC, MicroPort Medical, NuVasive, OrthAlign, Pixee Medical, Siemens Healthineers, Smith+Nephew, Stryker, Tynor, Zimmer Biomet and Arthrex Inc.
In December 2024, Siemens Healthineers announced the acquisition of Advanced Accelerator Applications Molecular Imaging from Novartis. This strategic move expands Siemens Healthineers' network of PET radiopharmaceutical production sites across Europe, enhancing their capabilities in supporting patients with cancer, heart disease, and neurological disorders.
In November 2024, Medtronic plc announced U.S. Food and Drug Administration (FDA) clearance for its new InPen(TM) app featuring missed meal dose detection, paving the way for the launch of its Smart MDI system with the Simplera(TM) continuous glucose monitor (CGM).
In September 2024, Medtronic plc announced at the North American Spine Society (NASS) 39th Annual Meeting in Chicago the commercial launch of several software, hardware, and imaging innovations. These enhancements are designed to advance AiBLE(TM), the Medtronic smart ecosystem of innovative navigation, robotics.