Table of Contents
Chapter 1 Methodology And Scope
1.1 Market Segmentation & Scope
1.1.1 Device
1.1.2 Application
1.1.3 End-use
1.1.4 Estimates And Forecast Timeline
1.2 Research Methodology
1.3 Information Procurement
1.3.1 Purchased Database
1.3.2 GVR’s Internal Database
1.3.3 Secondary Sources
1.3.4 Primary Research
1.3.5 Details Of Primary Research
1.4 Information Or Data Analysis
1.4.1 Data Analysis Models
1.5 Market Formulation & Validation
1.6 Model Details
1.6.1 Commodity Flow Analysis (Model 1)
1.6.1.1 Approach 1: Commodity Flow Approach
1.6.2 Volume Price Analysis (Model 2)
1.6.2.1 Approach 2: Volume Price Analysis
1.7 List Of Secondary Sources
1.8 Objectives
1.8.1 Objective 1
1.8.2 Objective 2
Chapter 2 Executive Summary
2.1 Market Outlook
2.2 Segment Outlook
2.3 Competitive Insights
Chapter 3 Minimally Invasive Surgical Instruments Market: Variables, Trends & Scope
3.1 Market Lineage Outlook
3.1.1 Related/Ancillary Market Outlook
3.2 Market Variable Analysis
3.2.1 Market Driver Analysis
3.2.1.1 Increasing Prevalence Of Chronic Diseases
3.2.1.2 Technological Advancements In Minimally Invasive Surgical Instruments
3.2.1.3 Rising Geriatric Population
3.2.1.4 Increasing Demand For Minimally Invasive Surgical Procedures
3.2.2 Market Restraint Analysis
3.2.2.1 Long Waiting Time For Surgeries
3.2.2.2 Lack Of Skilled Professionals
3.3 Penetration & Growth Prospect Mapping
3.4 Business Environment Analysis Tools
3.4.1 Swot Analysis, By Pest
3.4.2 Porter’s Five Forces Analysis
3.4.3 Major Deals & Strategic Alliances Analysis
3.4.3.1 Product Launch
3.4.3.2 Merger & Acquisition
3.4.3.3 Collaboration & Partnership
3.4.3.4 Supply And Distribution Agreement
3.4.3.5 Regulatory Approval
3.4.3.6 Product Investment
3.4.3.7 Product Diversification
3.4.4 Market Entry Strategies
Chapter 4 Minimally Invasive Surgical Instruments Market: Device Estimates And Trend Analysis
4.1 Definitions And Scope
4.2 Minimally Invasive Surgical Instruments Market Share Analysis,
4.3 Segment Dashboard
4.4 Minimally Invasive Surgical Instruments Market: By Device Analysis
4.4.1 Handheld Instruments
4.4.1.1 Handheld Instruments Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
4.4.2 Inflation Devices
4.4.2.1 Inflation Devices Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
4.4.2.2 Cutter Instruments
4.4.2.2.1 Cutter Instruments Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
4.4.2.3 Guiding Devices
4.4.2.3.1 Guiding Devices Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
4.4.3 Electrosurgical Devices
4.4.3.1 Electrosurgical Devices Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
4.4.4 Auxiliary Devices
4.4.4.1 Auxiliary Devices Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
4.4.5 Monitoring And Visualization Devices
4.4.5.1 Monitoring And Visualization Devices Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
Chapter 5 Minimally Invasive Surgical Instruments Market: Application Estimates And Trend Analysis
5.1 Definitions And Scope
5.2 Minimally Invasive Surgical Instruments Market Share Analysis, 2023 & 2030
5.3 Segment Dashboard
5.4 Minimally Invasive Surgical Instruments Market: By Device Analysis
5.4.1 Cardiac
5.4.1.1 Cardiac Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
5.4.1.2 Gastrointestinal
5.4.1.2.1 Gastrointestinal Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
5.4.1.3 Orthopedic
5.4.1.3.1 Orthopedic Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
5.4.1.4 Vascular
5.4.1.4.1 Vascular Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
5.4.1.5 Gynecological
5.4.1.5.1 Gynecological Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
5.4.1.6 Urological
5.4.1.6.1 Urological Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
5.4.1.7 Thoracic
5.4.1.7.1 Thoracic Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
5.4.1.8 Cosmetics
5.4.1.8.1 Cosmetics Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
5.4.1.9 Dental
5.4.1.9.1 Dental Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
5.4.1.10 Others
5.4.1.10.1 Others Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
Chapter 6 Minimally Invasive Surgical Instruments Market: End-use Estimates And Trend Analysis
6.1 Definitions And Scope
6.2 Minimally Invasive Surgical Instruments Market Share Analysis, 2023 & 2030
6.3 Segment Dashboard
6.4 Minimally Invasive Surgical Instruments Market: By End Use Analysis
6.4.1 Hospitals
6.4.1.1 Hospitals Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
6.4.2 Ambulatory Surgical Centers
6.4.2.1 Ambulatory Surgical Centers Minimally Invasive Surgical Instruments Market, 2018 – 2030 (USD Million)
Chapter 7 Regional Outlook
7.1 Minimally Invasive Surgical Instruments Market Share By Region, 2023 & 2030
7.2 North America
7.2.1 North America MIS Instruments Market, 2018 – 2030 (USD Million)
7.2.2 U.S.
7.2.2.1 Key Country Dynamics
7.2.2.2 Regulatory Scenario & Reimbursement Structure
7.2.2.3 Competitive Scenario
7.2.2.4 U.S. MIS Instruments Market, 2018 – 2030 (USD Million)
7.2.3 Canada
7.2.3.1 Key Country Dynamics
7.2.3.2 Regulatory Scenario & Reimbursement Structure
7.2.3.3 Competitive Scenario
7.2.3.1 Canada MIS Instruments Market, 2018 – 2030 (USD Million)
7.3 Europe
7.3.1 Europe MIS Instruments Market, 2018 – 2030 (USD Million)
7.3.2 UK
7.3.2.1 Key Country Dynamics
7.3.2.2 Regulatory Scenario & Reimbursement Structure
7.3.2.3 Competitive Scenario
7.3.2.4 U.K. MIS Instruments Market, 2018 – 2030 (USD Million)
7.3.3 Germany
7.2.3.1 Key Country Dynamics
7.2.3.2 Regulatory Scenario & Reimbursement Structure
7.2.3.3 Competitive Scenario
7.3.3.4 Germany MIS Instruments Market, 2018 – 2030 (USD Million)
7.3.4 France
7.3.4.1 Key Country Dynamics
7.3.4.2 Regulatory Scenario & Reimbursement Structure
7.3.4.3 Competitive Scenario
7.3.4.4 France MIS Instruments Market, 2018 – 2030 (USD Million)
7.3.5 Italy
7.3.5.1 Key Country Dynamics
7.3.5.2 Regulatory Scenario & Reimbursement Structure
7.3.5.3 Competitive Scenario
7.3.5.4 Italy MIS Instruments Market, 2018 – 2030 (USD Million)
7.3.6 Spain
7.3.6.1 Key Country Dynamics
7.3.6.2 Regulatory Scenario & Reimbursement Structure
7.3.6.3 Competitive Scenario
7.3.6.4 Spain MIS Instruments Market, 2018 – 2030 (USD Million)
7.3.7 Denmark
7.3.7.1 Key Country Dynamics
7.3.7.2 Regulatory Scenario & Reimbursement Structure
7.3.7.3 Competitive Scenario
7.3.7.4 Denmark MIS Instruments Market, 2018 – 2030 (USD Million)
7.3.8 Sweden
7.3.8.1 Key Country Dynamics
7.3.8.2 Regulatory Scenario & Reimbursement Structure
7.3.8.3 Competitive Scenario
7.3.8.4 Sweden MIS Instruments Market, 2018 – 2030 (USD Million)
7.3.9 Norway
7.3.9.1 Key Country Dynamics
7.3.9.2 Regulatory Scenario & Reimbursement Structure
7.3.9.3 Competitive Scenario
7.3.9.4 Norway MIS Instruments Market, 2018 – 2030 (USD Million)
7.4 Asia Pacific
7.4.1 Asia Pacific MIS Instruments Market, 2018 – 2030 (USD Million)
7.4.2 Japan
7.4.2.1 Key Country Dynamics
7. 4.2.2 Regulatory Scenario & Reimbursement Structure
7.4.2.3 Competitive Scenario
7.4.2.4 Japan MIS Instruments Market, 2018 – 2030 (USD Million)
7.4.3 China
7.4.3.1 Key Country Dynamics
7.4.3.2 Regulatory Scenario & Reimbursement Structure
7.4.3.3 Competitive Scenario
7.4.3.4 China MIS Instruments Market, 2018 – 2030 (USD Million)
7.4.4 India
7.4.4.1 Key Country Dynamics
7.4.4.2 Regulatory Scenario & Reimbursement Structure
7. 4.4.3 Competitive Scenario
7.4.4.4 India MIS Instruments Market, 2018 – 2030 (USD Million)
7.4.5 Australia
7.4.5.1 Key Country Dynamics
7.4.5.2 Regulatory Scenario & Reimbursement Structure
7.4.5.3 Competitive Scenario
7.4.5.4 Australia MIS Instruments Market, 2018 – 2030 (USD Million)
7.4.6 South Korea
7.4.6.1 Key Country Dynamics
7.4.6.2 Regulatory Scenario & Reimbursement Structure
7. 4.6.3 Competitive Scenario
7.4.3.4 South Korea MIS Instruments Market, 2018 – 2030 (USD Million)
7.4.7 Thailand
7.4.7.1 Key Country Dynamics
7.4.7.2 Regulatory Scenario & Reimbursement Structure
7.4.7.3 Competitive Scenario
7.4.4.4 Thailand MIS Instruments Market, 2018 – 2030 (USD Million)
7.5 Latin America
7.5.1 Latin America MIS Instruments Market, 2018 – 2030 (USD Million)
7.5.2 Brazil
7.5.2.1 Key Country Dynamics
7.5.2.2 Regulatory Scenario & Reimbursement Structure
7.5.2.3 Competitive Scenario
7.5.2.4 Brazil MIS Instruments Market, 2018 – 2030 (USD Million)
7.5.3 Mexico
7.5.3.1 Key Country Dynamics
7.5.3.2 Regulatory Scenario & Reimbursement Structure
7.5.3.3 Competitive Scenario
7.5.3.4 Mexico MIS Instruments Market, 2018 – 2030 (USD Million)
7.5.4 Argentina
7.5.4.1 Key Country Dynamics
7.5.4.2 Regulatory Scenario & Reimbursement Structure
7.5.4.3 Competitive Scenario
7.5.4.4 Argentina MIS Instruments Market, 2018 – 2030 (USD Million)
7.6 Middle East & Africa
7.6.1 Middle East & Africa MIS Instruments Market, 2018 – 2030 (USD Million)
7.6.2 South Africa
7.6.2.1 Key Country Dynamics
7.6.2.2 Regulatory Scenario & Reimbursement Structure
7.6.2.3 Competitive Scenario
7.6.2.4 South Africa MIS Instruments Market, 2018 – 2030 (USD Million)
7.6.3 Saudi Arabia
7.6.3.1 Key Country Dynamics
7.6.3.2 Regulatory Scenario & Reimbursement Structure
7.6.3.3 Competitive Scenario
7.6.3.4 Saudi Arabia MIS Instruments Market, 2018 – 2030 (USD Million)
7.6.4 UAE
7.6.4.1 Key Country Dynamics
7.6.4.2 Regulatory Scenario & Reimbursement Structure
7.6.4.3 Competitive Scenario
7.6.4.4 UAE MIS Instruments Market, 2018 – 2030 (USD Million)
7.6.5 Kuwait
7.6.5.1 Key Country Dynamics
7.6.5.2 Regulatory Scenario & Reimbursement Structure
7.6.5.3 Competitive Scenario
7.6.5.4 Kuwait MIS Instruments Market, 2018 – 2030 (USD Million)
Chapter 8 Competitive Analysis
8.1 Market Participation Categorization
8.2. Strategy Mapping
8.3. Company Market Share Analysis, 2023
8.4. Company Profiles/Listing
8.5 MEDTRONIC
8.5.1 Company Overview
8.5.2 Financial performance
8.5.3 Product Benchmarking
8.5.4 Strategic Initiatives
8.6 SIEMENS HEALTHINEERS AG
8.6.1 Company Overview
8.6.2 Financial performance
8.6.3 Product Benchmarking
8.6.4 Strategic Initiatives
8.7 ETHICON, INC. (JOHNSON & JOHNSON INC.)
8.7.1 Company Overview
8.7.2 Financial performance
8.7.3 Product Benchmarking
8.7.4 Strategic Initiatives
8.8 DEPUY SYNTHES
8.8.1 Company Overview
8.8.2 Product Benchmarking
8.8.3 Strategic Initiatives
8.9 GE HEALTHCARE
8.9.1 Company Overview
8.9.2 Financial performance
8.9.3 Product Benchmarking
8.9.4 Strategic Initiatives
8.10 ABBOTT LABORATORIES
8.10.1 Company Overview
8.10.2 Financial performance
8.10.3 Product Benchmarking
8.10.4 Strategic Initiatives
8.11 INTUITIVE SURGICAL, INC.
8.11.1 Company Overview
8.11.2 Financial performance
8.11.3 Product Benchmarking
8.11.4 Strategic Initiatives
8.12 ARTHROCARE CORPORATION
8.12.1 Company Overview
8.12.2 Financial performance
8.12.3 Product Benchmarking
8.12.4 Strategic Initiatives
8.13 NUVASIVE, INC.
8.13.1 Company Overview
8.13.2 Financial performance
8.13.3 Product Benchmarking
8.13.4 Strategic Initiatives
8.14 ZIMMER BIOMET
8.14.1 Company Overview
8.14.2 Financial performance
8.14.3 Product Benchmarking
8.14.4 Strategic Initiatives
| ※参考情報 低侵襲手術器具とは、患者に対する外科手術を行う際に、身体にかかる負担を最小限に抑えることを目的とした器具のことを言います。従来の外科手術では大きな切開を行う必要がありましたが、低侵襲手術では小さな傷口で手術を行うため、術後の痛みや回復時間が短縮されるというメリットがあります。 低侵襲手術器具には、いくつかの種類があります。まず、内視鏡手術で使用される内視鏡自体が一つの代表的な器具です。内視鏡はカメラと光源が付いており、体内の状況をリアルタイムで確認することができます。これにより、医師はより正確な手術を行うことが可能になります。 次に、鉗子やメス、クリップなどの専用の手術器具も重要です。これらは細かい操作が可能で、狭い空間でも精密な手術を支援します。特に、電気メスや超音波メスは、組織を切断するだけでなく、同時に止血を行うことができるため、出血を抑える効果もあります。 また、ロボット支援手術器具も低侵襲手術の一部として急速に発展しています。ダビンチ手術システムのようなロボットアームは、医師の手の動きを正確に再現し、微細な操作を可能にします。これにより、手術の精度が向上し、患者の回復が早まることが期待されます。 低侵襲手術の用途は多岐にわたります。一般的には消化器系、泌尿器系、婦人科、整形外科などでの使用が進んでいます。例えば、腹腔鏡手術は胆嚢摘出や虫垂切除などに広く使われています。また、膝関節の鏡視下手術や、下腹部の内視鏡手術も低侵襲手術の代表例です。これらの手術は、患者に与える負担が少なく、入院期間が短くなるため、医療コストの削減にも寄与しています。 さらに、低侵襲手術の関連技術も進化しています。画像診断技術の向上により、CTやMRIを活用した手術計画が可能になりました。これによって、手術前に患者の状態を詳細に把握し、必要な器具や手術手法を選定することができます。また、3Dモデリング技術を活用した個別化医療も注目されています。患者の身体に合わせた専用の器具を作成することで、さらに手術の精度が向上します。 ブロックチェーン技術やAIも低侵襲手術に関連する新しい技術として注目されています。データのセキュリティを高めたり、手術の経過をリアルタイムで追跡したりすることで、患者の安全性を向上させることができます。AIによる画像解析技術も進化しており、術中の判断支援や手術ビデオの解析などに利用される可能性があります。 このように、低侵襲手術器具は外科手術の分野において重要な役割を果たしています。今後、技術の進化に伴い、さらなる性能向上や新しい手術法の開発が期待されます。患者にとっては、体への負担が少ない手術が提供されることで、より良い医療を受けられる時代が到来することでしょう。医療従事者にとっては、より高い技術を駆使して患者のために尽力できる環境が整っていくと考えられます。低侵襲手術の進展がもたらす恩恵は、医療現場のみならず、社会全体に広がることでしょう。 |
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