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2088645

자기공명혈관조영(MRA) 시장 : 제품 유형, 기술, 자장 강도, 용도, 최종 사용자별 - 세계 시장 예측(2026-2032년)

Magnetic Resonance Angiography Market by Product Type, Technology, Field Strength, Application, End User - Global Forecast 2026-2032

발행일: | 리서치사: 구분자 360iResearch | 페이지 정보: 영문 196 Pages | 배송안내 : 1-2일 (영업일 기준)

    
    
    




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※ 부가세 별도
한글목차
영문목차

자기공명혈관조영(MRA) 시장은 2032년까지 연평균 복합 성장률(CAGR) 11.57%로 성장해 76억 7,000만 달러 규모로 확대될 것으로 예측됩니다.

주요 시장 통계
기준 연도(2025년) 35억 6,000만 달러
추정 연도(2026년) 39억 2,000만 달러
예측 연도(2032년) 76억 7,000만 달러
CAGR(%) 11.57%

자기공명혈관조영(MRA) 시장 개요

자기공명혈관조영(MRA)은 MRI의 물리적 원리를 이용하여, 이온화 방사선을 사용하지 않고 동맥과 정맥을 시각화하는 특수한 혈관 영상 진단 기술입니다. 뇌혈관 질환, 말초동맥 질환, 신장동맥 협착, 대동맥 병변, 선천성 혈관 기형 및 수술 전 혈관 매핑 평가에 도움이 됩니다. 의료 현장에서 조기 진단과 경과 관찰이 중요시되는 가운데, MRA는 컴퓨터 단층촬영 혈관조영(CTA)이나 카테터를 이용한 혈관조영을 대체하거나 이를 보완하는 비침습적 기법으로서 그 중요성이 커지고 있습니다.

MRA 분야의 획기적인 변화

MRA 분야는 검사 중심의 영상 진단에서 통합적인 혈관 치료 경로로 점차 전환되고 있습니다. 병원과 영상진단센터에서는 뇌졸중 검사, 동맥류 평가, 말초혈관 평가 및 만성 혈관 질환의 경과 관찰에 MRA를 활용하고 있으며, 한편 방사선과 팀은 진단의 신뢰성을 저해하지 않으면서 스캐너의 처리 능력을 향상시킬 수 있는 보다 신속한 프로토콜을 모색하고 있습니다.

MRA에서 인공지능이 미치는 누적 영향

인공지능(AI)은 MRA 촬영, 재구성, 판독 및 워크플로우 조정 등 모든 단계에 걸쳐 누적 영향을 미치고 있습니다. AI를 활용한 재구성 및 노이즈 제거를 통해 스캔 시간을 단축하고 보다 일관된 화질을 확보할 수 있습니다. 한편, 자동화된 혈관 분할, 협착 정량화 및 이상 감지 도구는 방사선과 의사의 업무 효율성과 재현성을 향상시키도록 설계되었습니다.

자기공명 혈관조영(MRA)에 관한 주요 지역별 인사이트

북미는 성숙한 MRI 인프라, 강력한 신경방사선학 및 심혈관 영상진단 역량, 그리고 미국과 캐나다의 확립된 보험 환급 제도 덕분에 계속해서 자기공명 혈관조영의 주요 지역으로 자리매김하고 있습니다. 미국은 전문의 밀도가 높고, 종합 뇌졸중 센터 및 대규모 대학 병원의 혜택을 누리고 있는 반면, 캐나다의 공공 자금 지원 의료 제도는 뇌졸중, 혈관외과, 종양학 및 만성 질환 치료 경로를 통해 수요를 뒷받침하고 있습니다.

아세안(ASEAN), GCC, EU, 브릭스(BRICS), G7, 나토(NATO)의 주요 그룹별 인사이트

아세안 시장에서는 특히 도시 지역을 중심으로 공립 병원의 시설 현대화 및 민간 진단 기관에 대한 투자를 통해 MRI 이용 기회가 확대되고 있습니다. MRA에 대한 수요는 심혈관 질환 위험 증가, 당뇨병 유병률, 뇌졸중 부담 증가, 그리고 정밀한 신경혈관 영상 진단의 필요성과 밀접한 관련이 있지만, 보험 환급 제도의 불균형, 스캐너의 접근성, 그리고 방사선과 전문의 인력 부족이 도입 진척에 계속해서 영향을 미치고 있습니다.

MRA 도입과 관련된 주요국의 동향

미국은 학술 방사선 의학, 인증 뇌졸중 센터, 혈관외과 프로그램, MRI의 광범위한 이용 가능성, 그리고 영상 진단 AI에 대한 FDA의 적극적인 승인 절차에 힘입어, 가장 규모가 크고 혁신 주도적인 MRA 시장이 되었습니다. 캐나다 수요는 공공 자금을 통한 영상 진단 접근성, 주별 투자 주기, 그리고 뇌졸중, 암, 혈관 질환 치료 경로에서의 임상적 우선순위에 의해 결정됩니다. 한편, 멕시코와 브라질에서는 민간 병원, 진단 체인, 그리고 심혈관 및 대사 질환의 부담이 커지고 있는 인구를 대상으로 서비스를 제공하는 도시 지역의 3차 의료 기관이 주도적인 역할을 하고 있습니다.

업계 리더를 위한 실천적인 제안

업계 리더는 스캐너의 활용도를 높이고, 환자의 움직임으로 인한 재촬영을 줄이는 보다 신속하고 표준화된 MRA 프로토콜을 우선적으로 도입해야 합니다. 벤더와 공급업체는 1.5T 및 3T MRI 시스템 전반에 걸쳐 신경혈관, 신장, 대동맥, 말초혈관 영상 촬영에 최적화된 프로토콜 라이브러리를 제공함으로써 도입을 촉진할 수 있습니다.

조사 방법

본 요약본은 체계적인 1차 및 2차 조사 프레임워크를 바탕으로 작성되었으며, 공개된 증거와 검증된 시장 분석을 종합하고 있습니다. 2차 정보원에는 규제 데이터베이스, 의료 기관의 간행물, 방사선 학회의 지침, 동료 심사를 거친 의학 문헌, 병원의 조달 동향, 보험 환급에 관한 참고 자료, 그리고 거시경제적 의료 지표가 포함됩니다.

결론

의료계가 정확하고 비침습적이며 방사선 피폭이 없는 혈관 영상 기술을 추구하는 가운데, 자기공명혈관조영(MRA)은 앞으로도 지속적인 중요성을 유지할 것으로 보입니다. 이러한 수요는 심혈관 질환 및 신경혈관 질환의 질병 부담, 고령화, 추적 영상 진단의 필요성, 그리고 MRI 인프라에 대한 지속적인 투자에 의해 뒷받침되고 있습니다.

자주 묻는 질문

  • 자기공명혈관조영(MRA) 시장 규모는 어떻게 예측되나요?
  • 자기공명혈관조영(MRA)의 주요 활용 분야는 무엇인가요?
  • MRA 분야에서 인공지능(AI)의 역할은 무엇인가요?
  • 북미 지역에서 MRA 시장의 강점은 무엇인가요?
  • 아세안 시장에서 MRA 수요에 영향을 미치는 요인은 무엇인가요?
  • MRA 시장에서 주요 기업은 어디인가요?

목차

제1장 서문

제2장 조사 방법

제3장 주요 요약

제4장 시장 개요

제5장 시장 인사이트

제6장 AI의 누적 영향(2026년)

제7장 자기공명혈관조영(MRA) 시장 : 제품 유형별

제8장 자기공명혈관조영(MRA) 시장 : 기술별

제9장 자기공명혈관조영(MRA) 시장 : 자장 강도별

제10장 자기공명혈관조영(MRA) 시장 : 용도별

제11장 자기공명혈관조영(MRA) 시장 : 최종 사용자별

제12장 자기공명혈관조영(MRA) 시장 : 지역별

제13장 자기공명혈관조영(MRA) 시장 : 그룹별

제14장 자기공명혈관조영(MRA) 시장 : 국가별

제15장 경쟁 구도

제16장 기업 개요

KTH 26.07.22

The Magnetic Resonance Angiography Market is projected to grow by USD 7.67 billion at a CAGR of 11.57% by 2032.

KEY MARKET STATISTICS
Base Year [2025] USD 3.56 billion
Estimated Year [2026] USD 3.92 billion
Forecast Year [2032] USD 7.67 billion
CAGR (%) 11.57%

Magnetic Resonance Angiography Market Introduction

Magnetic Resonance Angiography (MRA) is a specialized vascular imaging technique that uses MRI physics to visualize arteries and veins without ionizing radiation. It supports assessment of cerebrovascular disease, peripheral artery disease, renal artery stenosis, aortic pathology, congenital vascular anomalies, and pre-surgical vascular mapping. As healthcare systems prioritize earlier diagnosis and longitudinal monitoring, MRA is gaining relevance as a non-invasive alternative or complement to computed tomography angiography and catheter-based angiography.

The magnetic resonance angiography market is shaped by demand for high-quality vascular imaging, installed MRI capacity, clinical preference for radiation-free diagnostics, and innovation in contrast-enhanced and non-contrast MRA sequences. Adoption is strongest where advanced radiology infrastructure, trained MRI technologists, reimbursement pathways, and cardiovascular and neurovascular care networks are well established. According to the World Health Organization, cardiovascular diseases remain the leading cause of death globally, reinforcing the clinical need for accurate vascular imaging across acute care, chronic disease management, and interventional planning.

Transformative Shifts in the MRA Landscape

The MRA landscape is shifting from procedure-centered imaging toward integrated vascular care pathways. Hospitals and diagnostic imaging centers are using MRA for stroke workups, aneurysm evaluation, peripheral vascular assessment, and follow-up of chronic vascular conditions, while radiology teams seek faster protocols that improve scanner throughput without compromising diagnostic confidence.

Technology development is also changing competitive dynamics. Non-contrast MRA is becoming more important because it can reduce reliance on gadolinium-based contrast agents in patients with renal impairment or repeated imaging needs. At the same time, high-field MRI systems, advanced coils, parallel imaging, compressed sensing, and motion-correction techniques are improving image quality and shortening acquisition times, strengthening MRA's role in precision vascular imaging. These shifts align with broader healthcare priorities around radiation reduction, contrast-agent stewardship, value-based imaging, and standardized reporting for vascular disease.

Cumulative Impact of Artificial Intelligence in MRA

Artificial intelligence is having a cumulative impact across MRA acquisition, reconstruction, interpretation, and workflow orchestration. AI-enabled reconstruction and denoising can support shorter scan times and more consistent image quality, while automated vessel segmentation, stenosis quantification, and anomaly detection tools are designed to improve radiologist efficiency and reproducibility.

Regulatory activity confirms that AI is no longer experimental in medical imaging; the U.S. FDA maintains an expanding list of cleared AI-enabled medical devices, with radiology representing the largest category. For MRA, the most practical near-term value is expected in protocol optimization, triage of suspected vascular abnormalities, quantitative reporting, and integration with enterprise imaging systems, provided models are validated across scanner vendors, patient populations, and clinical settings. Successful deployment also depends on transparent performance monitoring, cybersecurity controls, interoperability with picture archiving and communication systems, and clinician oversight to minimize bias and preserve diagnostic accountability.

Key Regional Insights for Magnetic Resonance Angiography

North America remains a leading region for magnetic resonance angiography due to mature MRI infrastructure, strong neuroradiology and cardiovascular imaging capabilities, and established reimbursement mechanisms in the United States and Canada. The United States benefits from high specialist density, comprehensive stroke centers, and large academic medical centers, while Canada's publicly funded system supports demand through stroke, vascular surgery, oncology, and chronic disease pathways.

Europe shows broad adoption supported by universal or mixed healthcare systems, strong radiology societies, and advanced hospital networks across Germany, France, the United Kingdom, Italy, and Spain. The European Union's emphasis on medical device regulation, post-market surveillance, data protection, and evidence-based procurement also influences purchasing decisions, AI deployment, and contrast-agent stewardship. Russia continues to support MRA demand through large hospital systems and specialist diagnostic centers.

Asia-Pacific is a fast-evolving opportunity base as China, Japan, India, South Korea, Australia, and ASEAN countries expand MRI access, tertiary care capacity, and advanced diagnostics. Japan and South Korea benefit from high-technology healthcare environments, China is scaling high-end imaging infrastructure, India is expanding access in metropolitan and tier-2 cities, and Australia maintains strong use through public-private specialist referral networks. Latin America, led by Brazil and Mexico, shows momentum in private imaging networks and tertiary hospitals, while the Middle East benefits from healthcare modernization in GCC markets, hospital digitization, and investment in specialist care. Africa remains comparatively underpenetrated, with MRA demand concentrated in major urban hospitals, academic centers, and private diagnostic facilities where MRI availability and specialist interpretation are accessible.

Key Group Insights Across ASEAN, GCC, EU, BRICS, G7, and NATO

ASEAN markets are expanding access to MRI through public hospital upgrades and private diagnostic investment, particularly in urban centers. Demand for MRA is tied to rising cardiovascular risk, diabetes prevalence, stroke burden, and the need for advanced neurovascular imaging, although uneven reimbursement, scanner availability, and radiologist workforce constraints continue to shape adoption.

The GCC is investing in tertiary care, medical tourism, and digital health infrastructure, making it a high-potential group for advanced MRI angiography systems and AI-enabled imaging workflows. The European Union prioritizes safety, interoperability, privacy, clinical evidence, and regulatory compliance, creating demand for validated MRA protocols, harmonized reporting, and AI solutions that meet medical device and data governance requirements.

BRICS countries represent a scale-driven opportunity, with China and India expanding diagnostic capacity, Brazil strengthening private imaging access, Russia maintaining specialized hospital networks, and South Africa serving as a regional hub for advanced tertiary care. G7 countries remain innovation leaders due to installed MRI capacity, academic research output, aging populations, and reimbursement maturity, while NATO countries benefit from broader healthcare and defense-linked requirements for trauma, vascular assessment, rehabilitation, and advanced imaging readiness.

Key Country Insights for MRA Adoption

The United States is the largest and most innovation-driven MRA market, supported by academic radiology, certified stroke centers, vascular surgery programs, broad MRI availability, and an active FDA pathway for imaging AI. Canada's demand is shaped by publicly funded imaging access, provincial investment cycles, and clinical prioritization of stroke, cancer, and vascular disease pathways, while Mexico and Brazil are led by private hospitals, diagnostic chains, and tertiary urban centers serving populations with growing cardiometabolic disease burden.

In Europe, the United Kingdom, Germany, France, Italy, and Spain maintain strong clinical use of MRA across neurovascular, aortic, renal, and peripheral vascular indications. Germany benefits from advanced imaging infrastructure and specialist hospital networks, France from centralized healthcare planning and strong clinical governance, and the United Kingdom from national pathways for stroke and vascular care. Italy and Spain support demand through public hospital systems and regional specialty centers, while Russia retains MRA utilization through large hospital systems, academic institutions, and specialist centers.

Asia-Pacific country dynamics are diverse. China is scaling high-end imaging capacity and domestic medical technology development, India is expanding MRI access in metropolitan and tier-2 cities, Japan has advanced MRI adoption and aging-related vascular demand, South Korea combines hospital digitization with high technology uptake, and Australia maintains strong demand through specialist referral networks and public-private healthcare delivery. Across these countries, MRA adoption is most closely linked to MRI availability, reimbursement clarity, subspecialty radiology capacity, stroke preparedness, and the ability to integrate advanced protocols into routine clinical workflows.

Actionable Recommendations for Industry Leaders

Industry leaders should prioritize faster, standardized MRA protocols that improve scanner utilization and reduce patient motion-related repeat scans. Vendors and providers can strengthen adoption by offering optimized protocol libraries for neurovascular, renal, aortic, and peripheral vascular imaging across 1.5T and 3T MRI systems.

Commercial strategies should emphasize non-contrast MRA capabilities, AI-assisted workflow tools, and evidence demonstrating diagnostic performance, patient safety, and operational efficiency. Partnerships with academic medical centers, stroke networks, vascular surgery departments, and cloud-based imaging platforms can accelerate validation, implementation, and clinical acceptance.

Executives should also align product development with regulatory expectations, cybersecurity requirements, data protection rules, and interoperability standards. In emerging markets, financing models, radiographer training, service uptime, remote reading partnerships, and structured education for referring clinicians can be as important as scanner specifications in driving sustainable adoption.

Research Methodology

This executive summary is developed using a structured secondary and primary research framework, combining publicly available evidence with validated market interpretation. Secondary sources include regulatory databases, healthcare agency publications, radiology society guidance, peer-reviewed medical literature, hospital procurement signals, reimbursement references, and macroeconomic healthcare indicators.

The methodology evaluates magnetic resonance angiography across technology type, contrast use, clinical application, end user, geography, and competitive positioning without relying on market estimation, market sizing, market share, or forecasting. Insights are triangulated through source validation, trend comparison, and consistency checks against established clinical practice, including guidance from organizations such as the FDA, EMA, ACR, RSNA, OECD, and WHO where relevant.

Conclusion

Magnetic Resonance Angiography is positioned for sustained relevance as healthcare systems seek accurate, non-invasive, and radiation-free vascular imaging. Demand is supported by cardiovascular and neurovascular disease burden, aging populations, the need for follow-up imaging, and continued investment in MRI infrastructure.

The next phase of adoption will be defined by faster acquisition, non-contrast techniques, AI-enabled reconstruction and interpretation, and region-specific access strategies. Organizations that combine clinical evidence, operational efficiency, regulatory compliance, and interoperable digital integration will be best positioned to lead in the evolving MRA market.

Table of Contents

1. Preface

  • 1.1. Objectives of the Study
  • 1.2. Market Definition
  • 1.3. Market Segmentation & Coverage
  • 1.4. Years Considered for the Study
  • 1.5. Currency Considered for the Study
  • 1.6. Language Considered for the Study
  • 1.7. Key Stakeholders

2. Research Methodology

  • 2.1. Introduction
  • 2.2. Research Design
    • 2.2.1. Primary Research
    • 2.2.2. Secondary Research
  • 2.3. Research Framework
    • 2.3.1. Qualitative Analysis
    • 2.3.2. Quantitative Analysis
  • 2.4. Market Size Estimation
    • 2.4.1. Top-Down Approach
    • 2.4.2. Bottom-Up Approach
  • 2.5. Data Triangulation
  • 2.6. Research Outcomes
  • 2.7. Research Assumptions
  • 2.8. Research Limitations

3. Executive Summary

  • 3.1. Introduction
  • 3.2. CXO Perspective
  • 3.3. Market Size & Growth Trends
  • 3.4. Market Share Analysis, 2025
  • 3.5. FPNV Positioning Matrix, 2025
  • 3.6. New Revenue Opportunities
  • 3.7. Next-Generation Business Models
  • 3.8. Industry Roadmap

4. Market Overview

  • 4.1. Introduction
  • 4.2. Industry Ecosystem & Value Chain Analysis
    • 4.2.1. Supply-Side Analysis
    • 4.2.2. Demand-Side Analysis
    • 4.2.3. Stakeholder Analysis
  • 4.3. Market Dynamics
    • 4.3.1. Key Drivers
    • 4.3.2. Key Restraints
    • 4.3.3. Key Opportunities
    • 4.3.4. Key Challenges
  • 4.4. Porter's Five Forces Analysis
  • 4.5. PESTLE Analysis
  • 4.6. Market Outlook
    • 4.6.1. Near-Term Market Outlook (0-2 Years)
    • 4.6.2. Medium-Term Market Outlook (3-5 Years)
    • 4.6.3. Long-Term Market Outlook (5-10 Years)
  • 4.7. Go-to-Market Strategy

5. Market Insights

  • 5.1. Consumer Insights & End-User Perspective
  • 5.2. Consumer Experience Benchmarking
  • 5.3. Opportunity Mapping
  • 5.4. Distribution Channel Analysis
  • 5.5. Pricing Trend Analysis
  • 5.6. Regulatory Compliance & Standards Framework
  • 5.7. ESG & Sustainability Analysis
  • 5.8. Disruption & Risk Scenarios
  • 5.9. Return on Investment & Cost-Benefit Analysis

6. Cumulative Impact of Artificial Intelligence 2026

7. Magnetic Resonance Angiography Market, by Product Type

  • 7.1. Accessories
    • 7.1.1. Coils
    • 7.1.2. Injectors
    • 7.1.3. Patient Monitoring Devices
  • 7.2. MRA Systems
  • 7.3. Contrast Agents
    • 7.3.1. Gadolinium-based Agents
    • 7.3.2. Iron Oxide Nanoparticles
  • 7.4. Software

8. Magnetic Resonance Angiography Market, by Technology

  • 8.1. Contrast Enhanced MRA
    • 8.1.1. Time-of-Flight (TOF)
    • 8.1.2. Phase Contrast (PC)
  • 8.2. Non Contrast Enhanced MRA

9. Magnetic Resonance Angiography Market, by Field Strength

  • 9.1. Low Field MRI
  • 9.2. Mid Field MRI
  • 9.3. High Field MRI

10. Magnetic Resonance Angiography Market, by Application

  • 10.1. Cardiac & Thoracic Vessels
    • 10.1.1. Coronary Artery Imaging
    • 10.1.2. Aortic Imaging
    • 10.1.3. Pulmonary Artery Imaging
  • 10.2. Neurovascular
    • 10.2.1. Stroke Diagnosis
    • 10.2.2. Aneurysm Detection
    • 10.2.3. Carotid Artery Imaging
  • 10.3. Peripheral Vascular
    • 10.3.1. Lower Extremity Arteries
    • 10.3.2. Upper Extremity Arteries
  • 10.4. Renal Angiography
  • 10.5. Abdomen Imaging

11. Magnetic Resonance Angiography Market, by End User

  • 11.1. Hospitals
  • 11.2. Academic & Research Institute
  • 11.3. Ambulatory Surgical Centers
  • 11.4. Diagnostic Imaging Centers

12. Magnetic Resonance Angiography Market, by Region

  • 12.1. Asia-Pacific
  • 12.2. North America
  • 12.3. Latin America
  • 12.4. Europe
  • 12.5. Middle East
  • 12.6. Africa

13. Magnetic Resonance Angiography Market, by Group

  • 13.1. ASEAN
  • 13.2. GCC
  • 13.3. European Union
  • 13.4. BRICS
  • 13.5. G7
  • 13.6. NATO

14. Magnetic Resonance Angiography Market, by Country

  • 14.1. United States
  • 14.2. Canada
  • 14.3. Mexico
  • 14.4. Brazil
  • 14.5. United Kingdom
  • 14.6. Germany
  • 14.7. France
  • 14.8. Russia
  • 14.9. Italy
  • 14.10. Spain
  • 14.11. China
  • 14.12. India
  • 14.13. Japan
  • 14.14. Australia
  • 14.15. South Korea

15. Competitive Landscape

  • 15.1. Market Concentration Analysis, 2025
    • 15.1.1. Concentration Ratio (CR)
    • 15.1.2. Herfindahl Hirschman Index (HHI)
  • 15.2. Recent Developments & Impact Analysis, 2025
  • 15.3. Product Portfolio Analysis, 2025
  • 15.4. Benchmarking Analysis, 2025

16. Company Profiles

  • 16.1. Agfa-Gevaert N.V.
  • 16.2. Aspect Imaging Ltd.
  • 16.3. Aurora Imaging Technology, Inc.
  • 16.4. Bruker Corporation
  • 16.5. Canon Medical Systems Corporation
  • 16.6. Carestream Health, Inc.
  • 16.7. CurveBeam AI, Inc.
  • 16.8. Esaote S.p.A.
  • 16.9. FUJIFILM Holdings Corporation
  • 16.10. GE HealthCare Technologies Inc.
  • 16.11. Hyperfine, Inc.
  • 16.12. IMRIS Inc.
  • 16.13. Koninklijke Philips N.V.
  • 16.14. Mediso Ltd.
  • 16.15. MR Solutions Ltd.
  • 16.16. Nano-X Imaging Ltd.
  • 16.17. Neusoft Medical Systems Co., Ltd.
  • 16.18. Samsung Medison Co., Ltd.
  • 16.19. Shenzhen Anke High-tech Co., Ltd.
  • 16.20. Shenzhen Mindray Bio-Medical Electronics Co., Ltd.
  • 16.21. Shimadzu Corporation
  • 16.22. Siemens Healthineers AG
  • 16.23. Synaptive Medical Inc.
  • 16.24. Time Medical Systems Co., Ltd.
  • 16.25. United Imaging Healthcare Co., Ltd.
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