市場調查報告書
商品編碼
1541086
2024-2032 年按產品、應用、最終用途和地區分類的術中成像市場報告Intraoperative Imaging Market Report by Product, Application, End Use, and Region 2024-2032 |
2023年全球IMARC Group中影像市場規模達23億美元。複雜手術對精準度的需求不斷增加、複雜醫療狀況的發生率不斷上升、對以患者為中心的方法的日益重視以及電力行業的持續技術進步是推動市場成長的關鍵因素。
術中影像是指在手術過程中使用影像導引技術來提供解剖結構的即時視覺化。術中影像系統利用 MRI、CT 和超音波等模式幫助外科醫生更準確地完成複雜的手術。這些影像系統在神經外科、脊椎外科和骨科干預等需要高精度的手術中尤其重要。影像技術與手術工作流程無縫整合,使臨床醫生能夠做出數據驅動的決策,同時最大限度地減少手術修正的需要。透過複雜的演算法和先進的視覺化技術,這些系統增強了外科醫生的能力,從而改善了患者的治療效果。
全球市場主要是由複雜手術對精確度的需求不斷成長所推動的。與此一致的是,影像技術的進步正在提高手術效果,從而為市場提供動力。此外,越來越多的外科手術需要使用術中影像作為重要的生長誘導因素。除此之外,更高水準的醫療保健支出正在促進先進成像系統的更廣泛採用。除此之外,攜帶式和緊湊型設備的發展正在擴大這些技術的手術環境範圍。此外,繼續醫學教育和培訓計劃透過提高臨床醫生使用此類系統的能力,對市場產生積極影響。政府透過有利的監管和資金支持進一步推動市場。除此之外,患者意識和宣傳的提高正在推動市場成長。其他因素包括混合手術室的發展、醫療保健技術的國際合作以及廣泛的研發活動。
複雜醫療狀況的發生率上升
腫瘤、脊椎疾病和心血管疾病等複雜疾病的發生率不斷上升,大大影響了術中影像系統的利用率的提高。這些複雜病例的手術介入需要極高的精確度和洞察力,而術中影像可以提供這些。這些系統可提供即時、高品質的影像,使臨床醫生能夠更有效地導航手術部位,從而降低組織損傷或腫瘤切除不完全等風險。此外,即時成像提供了在手術過程中立即調整的機會,從而減少了後續手術的需要。這裡的含義不僅是技術性的,而且是技術性的。這是非常人性化的。改善手術結果的機會意味著降低發病率、更好的術後恢復,並最終提高患者的生活品質。因此,隨著複雜醫療狀況的盛行率持續上升,術中影像系統在確保有效和安全的手術介入方面的重要性預計也會隨之成長,從而推動市場擴張。
電力產業技術不斷進步
人工智慧 (AI) 日益成為醫療保健領域的革命力量,其與術中影像系統的整合也不例外。人工智慧演算法可以篩選大量資料集,辨識人眼可能無法察覺的模式和細微差別。當應用於術中成像時,這些功能可以實現更準確的影像解釋和預測分析。例如,人工智慧可以預測組織反應並即時建議調整,進一步增強外科醫生的決策過程能力。人工智慧和術中成像之間的技術協同代表了手術實踐的演變,提供了新的精度和控制水平。因此,人工智慧與術中成像的整合被認為是改變遊戲規則的因素,透過增加現有系統的複雜性和有效性,對市場成長產生相當大的影響。
越來越重視以病人為中心的方法
在當代醫療保健領域,以病人為中心的照護模式正在發生明顯的轉變。這些模型不僅優先考慮醫療治療的有效性,還考慮患者的舒適、尊嚴和整體福祉。術中成像對這範例做出了重大貢獻。透過實現更高的精度,這些系統最大限度地減少了外科手術的侵入性,從而有助於更快的恢復並減少術後併發症。從本質上講,該技術具有雙重目的:它提高了手術效果,同時也提高了患者的舒適度和安全性。例如,手術侵入性越小,恢復時間越快,這意味著住院時間更短,醫療費用更低。這些好處與當前強調患者滿意度和整體福祉的醫療保健範式產生了強烈共鳴。因此,術中影像技術與以患者為中心的醫療保健方法的結合是其日益採用和隨後市場成長的重要驅動力。
The global intraoperative imaging market size reached US$ 2.3 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 3.5 Billion by 2032, exhibiting a growth rate (CAGR) of 4.6% during 2024-2032. The escalating need for precision in complex surgeries, the rising incidences of complex medical conditions, growing emphasis on patient-centric approaches, and continual technological advancements in the power industry are among the key factors driving the market growth.
Intraoperative imaging refers to the use of image-guided technologies during surgical procedures to provide real-time visualization of anatomical structures. Utilizing modalities like MRI, CT, and ultrasound, intraoperative imaging systems help surgeons navigate through complex surgeries with greater accuracy. These imaging systems are particularly critical in procedures that demand high precision, such as neurosurgery, spinal surgeries, and orthopedic interventions. The imaging technology integrates seamlessly with the surgical workflow, enabling clinicians to make data-driven decisions while minimizing the need for surgical revisions. Through sophisticated algorithms and advanced visualization techniques, these systems enhance the surgeon's capabilities, thereby improving patient outcomes.
The global market is primarily driven by the escalating need for precision in complex surgeries. In line with this, advancements in imaging technologies are enhancing surgical outcomes and thus providing an impetus to the market. Moreover, an increasing number of surgical interventions necessitate the use of intraoperative imaging as a significant growth-inducing factor. In addition to this, higher levels of healthcare spending are facilitating more widespread adoption of advanced imaging systems. Besides this, the development of portable and compact devices is expanding the range of surgical environments where these technologies can be applied. Also, continuing medical education and training programs are positively impacting the market by increasing clinician competency in the use of such systems. The market is further driven by governmental support through favorable regulations and funding. Apart from this, rising patient awareness and advocacy are fueling market growth. Other factors include the development of hybrid operating rooms, international collaborations in healthcare technology, and extensive research and development activities.
Rising incidences of complex medical conditions
The burgeoning incidence of complex medical conditions such as tumors, spinal disorders, and cardiovascular diseases is significantly influencing the increased utilization of intraoperative imaging systems. Surgical intervention in these complex cases requires an exceptional level of precision and insight, which intraoperative imaging can provide. These systems deliver real-time, high-quality images that allow clinicians to navigate surgical sites more effectively, thereby reducing risks like tissue damage or incomplete removal of tumors. Furthermore, real-time imaging provides the opportunity for immediate adjustments during the procedure, thereby reducing the need for subsequent surgeries. The implication here is not merely technological; it's profoundly human. The opportunity to improve surgical outcomes can mean reduced morbidity rates, better postoperative recovery, and ultimately, enhanced quality of life for patients. Therefore, as the prevalence of complex medical conditions continues to rise, the importance of intraoperative imaging systems in ensuring effective and safe surgical interventions is expected to grow concomitantly, thereby driving market expansion.
Continual technological advancements in the power industry
Artificial intelligence (AI) is increasingly becoming a revolutionary force in healthcare, and its integration with intraoperative imaging systems is no exception. AI algorithms can sift through vast data sets, identifying patterns and nuances that may be imperceptible to the human eye. When applied to intraoperative imaging, these capabilities result in more accurate image interpretations and predictive analytics. For instance, AI can potentially predict tissue responses and recommend adjustments in real-time, further empowering surgeons in their decision-making processes. This technological synergy between AI and intraoperative imaging represents an evolution of surgical practices, offering a new level of precision and control. Therefore, the integration of AI with intraoperative imaging is perceived as a game-changing factor that has a considerable impact on market growth by adding layers of sophistication and effectiveness to existing systems.
Growing emphasis on patient-centric approaches
In the contemporary healthcare landscape, there is a discernible shift towards patient-centric care models. These models prioritize not just the effectiveness of medical treatments but also consider the patient's comfort, dignity, and overall well-being. Intraoperative imaging contributes substantially to this paradigm. By enabling greater precision, these systems minimize the invasiveness of surgical procedures, thus aiding in faster recovery and reduced postoperative complications. In essence, the technology serves dual purposes; it enhances surgical effectiveness while also promoting patient comfort and safety. For instance, the less invasive a procedure, the quicker the recovery time, which translates into shorter hospital stays and lower healthcare costs. These benefits resonate strongly with current healthcare paradigms that emphasize patient satisfaction and holistic well-being. Therefore, the alignment of intraoperative imaging technologies with patient-centric healthcare approaches is an essential driver for its increasing adoption and subsequent market growth.
IMARC Group provides an analysis of the key trends in each segment of the market report, along with forecasts at the global, regional, and country levels from 2024-2032. Our report has categorized the market based on product, application, and end use.
iCT
iMRI
iUltrasound
C-arm Systems
C-arm systems account for the majority of the market share
The report has provided a detailed breakup and analysis of the market based on the product. This includes iCT, iMRI, iUltrasound and C-arm systems. According to the report, c-arm systems represented the largest segment.
For the C-arm systems segment in the global intraoperative imaging market, several factors are currently propelling its growth. The increasing need for real-time imaging during surgical interventions is one primary driver. Surgeons are continually seeking improved visual guidance to enhance the precision of their procedures, thus fostering demand for C-arm systems. Moreover, technological advancements are offering features such as higher resolution and mobility, further fueling adoption. Regulatory approvals are also enabling quicker market entry for innovative C-arm products. Investments in healthcare infrastructure and the availability of funding for advanced medical equipment also contribute to this upward trend. Hence, a blend of technological, regulatory, and financial factors is driving the growth of the C-arm systems segment.
Neurosurgery
Orthopedic Surgery
ENT Surgery
Oncology Surgery
Trauma Surgery/Emergency room
Cardiovascular
Others
Neurosurgery dominates the market
The report has provided a detailed breakup and analysis of the market based on the application. This includes neurosurgery, orthopedic surgery, ENT surgery, oncology surgery, trauma surgery/emergency room, cardiovascular, and others. According to the report, neurosurgery represented the largest segment.
The neurosurgery segment is experiencing growth due to an increasing incidence of neurological disorders and the consequent rise in neurosurgical procedures. Precision is paramount in neurosurgery, and intraoperative imaging provides the necessary real-time insights for better surgical outcomes. Technological advancements are enabling more detailed and faster imaging, which is particularly crucial in complex neurological procedures. Additionally, ongoing research and development efforts aim to make these systems more adaptable to the specific needs of neurosurgery. The increasing availability of skilled neurosurgeons familiar with intraoperative imaging technologies also positively influences this segment. Investments in specialized healthcare settings, like neurosurgical centers, further accelerate this growth. Thus, both clinical demands and technological developments are spurring the growth of the Neurosurgery segment in the global market.
Hospitals and Clinics
Ambulatory Surgical Centers
Academic Institutes and Research Laboratories
Hospitals and clinics represent the largest market segment
The report has provided a detailed breakup and analysis of the market based on the end use. This includes hospitals and clinics, ambulatory surgical centers, and academic institutes and research laboratories. According to the report, hospitals and clinics represented the largest segment.
In the hospitals and clinics segment, the emphasis on quality healthcare delivery is acting as a significant growth factor. These institutions are investing in advanced intraoperative imaging technologies to ensure better patient outcomes. Furthermore, increasing patient volumes and complexities of surgical procedures necessitate the adoption of reliable and accurate imaging systems. The availability of specialized personnel trained in operating such equipment is another driver. Additionally, collaborations between hospitals and manufacturers for custom solutions are becoming commonplace. Enhanced focus on minimally invasive surgeries, which require real-time imaging support, is also a contributing factor. Thus, various operational and clinical needs are driving the growth of intraoperative imaging in hospitals and clinics.
North America
United States
Canada
Asia-Pacific
China
Japan
India
South Korea
Australia
Indonesia
Others
Europe
Germany
France
United Kingdom
Italy
Spain
Russia
Others
Latin America
Brazil
Mexico
Others
Middle East and Africa
North America exhibits a clear dominance, accounting for the largest intraoperative imaging market share
The market research report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Asia-Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa. According to the report, North America accounted for the largest market share.
In the North America region, several factors are collectively driving the growth of the intraoperative imaging market. The well-established healthcare infrastructure provides a strong foundation for the adoption of advanced medical technologies. Governmental support in the form of research grants and favorable policies is also fostering market growth.
Additionally, the region boasts a high prevalence of chronic conditions that often require surgical interventions, subsequently boosting the demand for intraoperative imaging. A focus on delivering quality healthcare and patient safety mandates the need for precise and reliable imaging systems.
Furthermore, the presence of a skilled healthcare workforce trained in the operation of advanced equipment amplifies market growth. Industry-academia collaborations are also quite prevalent, enabling faster innovation and application of intraoperative imaging technologies. Finally, the consumer awareness and willingness to opt for advanced healthcare solutions contribute to making North America a significant player in the global market.
The leading companies are consistently focusing on technological advancements to improve the accuracy and efficiency of their imaging systems. By collaborating with healthcare providers and research institutions, these market players are fine-tuning the integration of imaging technologies within surgical workflows. They are currently working on enhancing the interoperability of their systems to enable seamless data exchange across different platforms. Regulatory compliance is another area where substantial efforts are being made to meet stringent medical standards. Ongoing clinical trials and research studies are also being sponsored to validate the efficacy of new imaging modalities. Robust after-sales support services, including training and maintenance, are being provided to ensure customer satisfaction and long-term relationships. Through these varied strategies, key players are solidifying their market positions and contributing to the overall growth of the global intraoperative imaging market.
Brainlab AG
Canon Inc.
General Electric Company
IMRIS (Deerfield Imaging Inc.)
Koninklijke Philips N.V.
Medtronic plc
NeuroLogica Corp. (Samsung Electronics Co. Ltd.)
Shenzhen Anke High-Tech Co. Ltd
Shimadzu Corporation
Siemens Ag
Stryker Corporation
Ziehm Imaging GmbH
(Please note that this is only a partial list of the key players, and the complete list is provided in the report.)
In June 2023, Brainlab AG announced an expanded collaboration outlining initiatives in their ongoing work with the AO Foundation. The AO will leverage Brainlab technology, including Mixed Reality Viewer, for craniomaxillofacial (CMF), spine and trauma education.
In September 2023, Canon Inc. Europe entered into a five-year partnership with EPA Images to upgrade its photography and videography equipment, focusing on Canon's advanced EOS R System full-frame mirrorless cameras and RF lenses. The partnership also includes extensive training and enrollment in Canon Professional Services to ensure effective utilization of the new technology.
In September 2022, IMRIS (Deerfield Imaging Inc.) announced the acquisition of Superconducting Systems, Inc. (SSI), Billerica, MA. SSI designs and develops cryogen-free (liquid helium free) superconducting magnets for medical and research applications. SSI magnets are used in commercial MRI systems throughout the world.