1. Preface
1.1. Market Definition and Scope
1.2. Market Segmentation
1.3. Key Research Objectives
1.4. Research Highlights
2. Assumptions and Research Methodology
3. Executive Summary : Global Market
4. Market Overview
4.1. Introduction
4.1.1. Product Definition
4.1.2. Industry Evolution / Developments
4.2. Overview
4.3. Key Market Indicators
4.3.1. Region/Country Specific
4.3.2. Product/Application/Disease Indication Specific
4.3.3. Target Market Specific – Global Scenario
4.4. Market Dynamics
4.4.1. Drivers
4.4.2. Restraints
4.4.3. Opportunity
4.5. Global Market Analysis and Forecasts, 2023–2033
4.5.1. Market Revenue Projections (US$ Mn)
4.6. Market – Global Supply Demand Scenario
4.7. Porter’s Five Force Analysis
4.8. Market Outlook
4.9. Dental 3D Printing: Technology Snapshot
4.10. Dental 3D Printing: Process Overview
4.11. Dental 3D Printing: Prominent Software Tools
5. Global Market Analysis and Forecasts, By Technology
5.1. Introduction & Definition
5.2. Key Findings / Developments
5.3. Key Trends
5.4. Market Value Forecast By Technology, 2023–2033
5.4.1. Vat Photopolymerization
5.4.1.1. Stereolithography
5.4.1.2. Digital Light Processing
5.4.2. Fused Deposition Modeling
5.4.3. PolyJet Technology
5.4.4. Selective Laser Sintering
5.4.5. Others
5.5. Market Attractiveness By Technology
6. Global Market Analysis and Forecasts, By Material
6.1. Introduction & Definition
6.2. Key Findings / Developments
6.3. Key Trends
6.4. Market Value Forecast By Materials, 2023–2033
6.4.1. Metals
6.4.2. Photopolymer
6.4.3. Ceramic
6.4.4. Others
6.5. Market Attractiveness By Material
7. Global Market Analysis and Forecasts, By Application
7.1. Introduction & Definition
7.2. Key Findings / Developments
7.3. Key Trends
7.4. Market Value Forecast By Application, 2023–2033
7.4.1. Dental Implants
7.4.2. Dentures
7.4.3. Crowns & Bridges
7.4.4. Others
7.5. Market Attractiveness By Application
8. Global Market Analysis and Forecasts, By Region
8.1. Key Findings
8.2. Policies and Regulations
8.3. Market Value Forecast By Region
8.3.1. North America
8.3.2. Europe
8.3.3. Asia Pacific
8.3.4. Latin America
8.3.5. Middle East and Africa
8.4. Market Attractiveness By Country/Region
9. North America Market Analysis and Forecast
9.1. Introduction
9.1.1. Key Findings
9.1.2. Policies and Regulations
9.1.3. Key Trends
9.2. Market Value Forecast By Technology, 2023–2033
9.2.1. Vat Photopolymerization
9.2.1.1. Stereolithography
9.2.1.2. Digital Light Processing
9.2.2. Fused Deposition Modeling
9.2.3. PolyJet Technology
9.2.4. Selective Laser Sintering
9.2.5. Others
9.3. Market Value Forecast By Material , 2023–2033
9.3.1. Metals
9.3.2. Photopolymer
9.3.3. Ceramic
9.3.4. Others
9.4. Market Value Forecast By Application, 2023–2033
9.4.1. Dental Implants
9.4.2. Dentures
9.4.3. Crowns & Bridges
9.4.4. Others
9.5. Market Value Forecast By Country , 2023–2033
9.5.1. U.S.
9.5.2. Canada
9.6. Market Attractiveness Analysis
9.6.1. By Technology
9.6.2. By Material
9.6.3. By Application
9.6.5. By Country
10. Europe Market Analysis and Forecast
10.1. Introduction
10.1.1. Key Findings
10.1.2. Policies and Regulations
10.1.3. Key Trends
10.2. Market Value Forecast By Technology, 2023–2033
10.2.1. Vat Photopolymerization
10.2.1.1. Stereolithography
10.2.1.2. Digital Light Processing
10.2.2. Fused Deposition Modeling
10.2.3. PolyJet Technology
10.2.4. Selective Laser Sintering
10.2.5. Others
10.3. Market Value Forecast By Material , 2023–2033
10.3.1. Metals
10.3.2. Photopolymer
10.3.3. Ceramic
10.3.4. Others
10.4. Market Value Forecast By Application, 2023–2033
10.4.1. Dental Implants
10.4.2. Dentures
10.4.3. Crowns & Bridges
10.4.4. Others
10.5. Market Value Forecast By Country , 2023–2033
10.5.1. Germany
10.5.2. France
10.5.3. U.K.
10.5.4. Spain
10.5.5. Italy
10.5.6. Russia
10.5.7. Rest of Europe
10.6. Market Attractiveness Analysis
10.6.1. By Technology
10.6.2. By Material
10.6.3. By Application
10.6.4. By Country
11. Asia Pacific Market Analysis and Forecast
11.1. Introduction
11.1.1. Key Findings
11.1.2. Policies and Regulations
11.1.3. Key Trends
11.2. Market Value Forecast By Technology , 2023–2033
11.2.1. Vat Photopolymerization
11.2.1.1. Stereolithography
11.2.1.2. Digital Light Processing
11.2.2. Fused Deposition Modeling
11.2.3. PolyJet Technology
11.2.4. Selective Laser Sintering
11.2.5. Others
11.3. Market Value Forecast By Material , 2023–2033
11.3.1. Metals
11.3.2. Photopolymer
11.3.3. Ceramic
11.3.4. Others
11.4. Market Value Forecast By Application, 2023–2033
11.4.1. Dental Implants
11.4.2. Dentures
11.4.3. Crowns & Bridges
11.4.4. Others
11.5. Market Value Forecast By Country , 2023–2033
11.5.1. China
11.5.2. Japan
11.5.3. India
11.5.4. Australia & New Zealand
11.5.5. Rest of Asia Pacific
11.6. Market Attractiveness Analysis
11.6.1. By Technology
11.6.2. By Material
11.6.3. By Application
11.6.4. By Country
12. Latin America Market Analysis and Forecast
12.1. Introduction
12.1.1. Key Findings
12.1.2. Policies and Regulations
12.1.3. Key Trends
12.2. Market Value Forecast By Technology, 2023–2033
12.2.1. Vat Photopolymerization
12.2.1.1. Stereolithography
12.2.1.2. Digital Light Processing
12.2.2. Fused Deposition Modeling
12.2.3. PolyJet Technology
12.2.4. Selective Laser Sintering
12.2.5. Others
12.3. Market Value Forecast By Material , 2023–2033
12.3.1. Metals
12.3.2. Photopolymer
12.3.3. Ceramic
12.3.4. Others
12.4. Market Value Forecast By Application, 2023–2033
12.4.1. Dental Implants
12.4.2. Dentures
12.4.3. Crowns & Bridges
12.4.4 Others
12.5. Market Value Forecast By Country , 2023–2033
12.5.1. Brazil
12.5.2. Mexico
12.5.3. Rest of Latin America
12.6. Market Attractiveness Analysis
12.6.1. By Technology
12.6.2. By Material
12.6.3. By Application
12.6.4. By Country
13. Middle East and Africa Market Analysis and Forecast
13.1. Introduction
13.1.1. Key Findings
13.1.2. Policies and Regulations
13.1.4. Key Trends
13.2. Market Value Forecast By Technology, 2023–2033
13.2.1. Vat Photopolymerization
13.2.1.1. Stereolithography
13.2.1.2. Digital Light Processing
13.2.2. Fused Deposition Modeling
13.2.3. PolyJet Technology
13.2.4. Selective Laser Sintering
13.2.5. Others
13.3. Market Value Forecast By Material , 2023–2033
13.3.1. Metals
13.3.2. Photopolymer
13.3.3. Ceramic
13.3.4. Others
13.4. Market Value Forecast By Application, 2023–2033
13.4.1. Dental Implants
13.4.2. Dentures
13.4.3. Crowns & Bridges
13.4.4. Others
13.5. Market Value Forecast By Country , 2023–2033
13.5.1. GCC Countries
13.5.2. South Africa
13.5.3. Rest of Middle East and Africa
13.6. Market Attractiveness Analysis
13.6.1. By Technology
13.6.2. By Material
13.6.3. By Application
13.6.4. By Country
14. Competition Landscape
14.1. Market Player – Competition Matrix (By Tier and Size of companies)
14.2. Market Share Analysis By Company, 2018 (Estimated)
14.3. Company Profiles
14.3.1. Asiga
14.3.1.1. Overview
14.3.1.2. Financials
14.3.1.3. Recent Developments
14.3.1.4. Strategy
14.3.2. Concept Laser GmbH
14.3.2.1. Overview
14.3.2.2. Financials
14.3.2.3. Recent Developments
14.3.2.4. Strategy
14.3.3. 3D Systems, Inc.
14.3.3.1. Overview
14.3.3.2. Financials
14.3.3.3.Recent Developments
14.3.3.4. Strategy
14.3.4. EnvisionTEC, Inc.
14.3.4.1. Overview
14.3.4.2. Financials
14.3.4.3. Recent Developments
14.3.4.4. Strategy
14.3.5. Formlabs, Inc.
14.3.5.1. Overview
14.3.5.2. Financials
14.3.5.3. Recent Developments
14.3.5.4. Strategy
14.3.6. Renishaw plc.
14.3.6.1. Overview
14.3.6.2. Financials
14.3.6.3. Recent Developments
14.3.6.4. Strategy
14.3.7. DWS System
14.3.7.1. Overview
14.3.7.2. Financials
14.3.7.3. Recent Developments
14.3.7.4. Strategy
14.3.8. Prodways Group
14.3.8.1. Overview
14.3.8.2. Financials
14.3.8.3. Recent Developments
14.3.8.4. Strategy
14.3.9. Stratasys Ltd
14.3.9.1. Overview
14.3.9.2. Financials
14.3.9.3. Recent Developments
14.3.9.4. Strategy
14.3.10. SLM Solutions
14.3.10.1. Overview
14.3.10.2. Financials
14.3.10.3. Recent Developments
14.3.10.4. Strategy
Table 01: Global Market Size (US$ Mn) Forecast, by Technology, 2023–2033Table 02: Global Market Size (US$ Mn) Forecast, by Vat Photopolymerization Technology, 2023–2033
Table 03: Global Market Size (US$ Mn) Forecast, by Material, 2023–2033
Table 04: Global Market Size (US$ Mn) Forecast, by Application, 2023–2033
Table 05: Global Market Size (US$ Mn) Forecast, by Region, 2023–2033
Table 06: North America Market Size (US$ Mn) Forecast, by Country, 2023–2033
Table 07: North America Market Size (US$ Mn) Forecast, by Technology, 2023–2033
Table 08: North America Market Size (US$ Mn) Forecast, by Vat Photopolymerization Technology, 2023–2033
Table 09: North America Market Size (US$ Mn) Forecast, by Material, 2023–2033
Table 10: North America Market Size (US$ Mn) Forecast, by Application, 2023–2033
Table 11: Europe Market Size (US$ Mn) Forecast, by Country, 2023–2033
Table 12: Europe Market Size (US$ Mn) Forecast, by Technology, 2023–2033
Table 13: Europe Market Size (US$ Mn) Forecast, by Vat Photopolymerization Technology, 2023–2033
Table 14: Europe Market Size (US$ Mn) Forecast, by Material, 2023–2033
Table 15: Europe Market Size (US$ Mn) Forecast, by Application, 2023–2033
Table 16: Asia Pacific Market Size (US$ Mn) Forecast, by Country, 2023–2033
Table 17: Asia Pacific Market Size (US$ Mn) Forecast, by Technology, 2023–2033
Table 18: Asia Pacific Market Size (US$ Mn) Forecast, by Vat Photopolymerization Technology, 2023–2033
Table 19: Asia Pacific Market Size (US$ Mn) Forecast, by Material, 2023–2033
Table 20: Asia Pacific Market Size (US$ Mn) Forecast, by Application, 2023–2033
Table 21: Latin America Market Size (US$ Mn) Forecast, by Country, 2023–2033
Table 22: Latin America Market Size (US$ Mn) Forecast, by Technology, 2023–2033
Table 23: Latin America Market Size (US$ Mn) Forecast, by Vat Photopolymerization Technology, 2023–2033
Table 24: Latin America Market Size (US$ Mn) Forecast, by Material, 2023–2033
Table 25: Latin America Market Size (US$ Mn) Forecast, by Application, 2023–2033
Table 26: Middle East & Africa Market Size (US$ Mn) Forecast, by Country, 2023–2033
Table 27: Middle East & Africa Market Size (US$ Mn) Forecast, by Technology, 2023–2033
Table 28: Middle East & Africa Market Size (US$ Mn) Forecast, by Vat Photopolymerization Technology, 2023–2033
Table 29: Middle East & Africa Market Size (US$ Mn) Forecast, by Material, 2023–2033
Table 30: Middle East & Africa Market Size (US$ Mn) Forecast, by Application, 2023–2033
| ※参考情報 歯科用3D印刷は、歯科領域におけるデジタル技術の一つであり、コンピュータによって生成された3Dデジタルモデルを基にして、様々な歯科用具や補綴物を製造するプロセスです。この技術は、従来の手法に比べて高精度で迅速な製造が可能であり、患者のニーズに応じたカスタマイズが容易に行えるため、近年注目を集めています。 歯科用3D印刷にはいくつかの種類があります。代表的なものとして、光造形(SLA)、粉末焼結(SLS)、熱溶融積層(FDM)などがあります。光造形は、紫外線光を使って樹脂を硬化させる方式で、非常に高い精度が求められる補綴物や矯正用装置の製造に適しています。粉末焼結は、粉末状の材料をレーザーで焼結する方法で、金属やセラミック材料が使用されることが多く、強度が必要な部品に向いています。熱溶融積層は、熱で溶かしたフィラメントを積み重ねて物体を作成する方式で、コストが低く、多様な素材が使用できるため、実験的な用途や教育用に利用されます。 歯科用3D印刷の用途は多岐にわたります。具体的には、歯型模型、補綴物(クラウン、ブリッジ、義歯など)、矯正装置、インプラントガイド、さらには手術用モデルやトレーニング用の教材などが含まれています。これにより、医師は患者一人ひとりに適した治療を提供できるだけでなく、デジタルデータを基にしたアプローチで、製造の効率化を図ることもできます。 さらに、患者へのフィッティング精度向上や治療スピードの向上にも寄与します。従来の方法では、型取りから完成までに時間を要することが多かったのですが、3D印刷を用いることでそのプロセスが大幅に短縮され、患者の負担も軽減されます。また、デジタルスキャン技術が進化したことにより、患者の口腔内の状態を正確にデジタルデータ化できるようになり、より精密な治療が可能になっています。 また、歯科用3D印刷には関連技術も数多く存在します。その一つがデジタルスキャニングです。口腔内のデジタルデータを取得するための技術で、これにより患者の歯や顎の形状を正確に読み取ることができます。これを用いることで、印刷物の精度が高まり、治療結果が向上します。また、CAD(コンピュータ支援設計)ソフトウェアを利用することで、デジタルモデルの作成や修正が簡単に行えるため、プロセスがさらに効率化されます。 今後の展望として、歯科用3D印刷技術の進化が期待されています。材料の多様化や精度の向上、高速化などが実現すれば、さらに多くの治療適応が広がるでしょう。また、患者のカスタムニーズへの対応が進むことで、個々のニーズに応じたより良い医療サービスの提供が可能になると考えられます。特に、個別対応が必要な矯正治療や、複雑な形状を持つ補綴物に関しては、3D印刷の利点が大いに活用されるでしょう。 さらに、サステナビリティの観点からも、3D印刷は注目されています。従来の製造方法と比較して、材料の無駄が少なく、必要な分だけを材料として使用できるため、資源の効率的な利用が可能です。これにより、環境負荷の低減も期待されています。 このように、歯科用3D印刷は、多様な利点を持つ革新的な技術であり、今後の歯科医療の発展に大きく寄与していくと考えられます。患者中心のアプローチを強化する手段として、ますます重要性を増していくことでしょう。 |
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