世界各国のリアルタイムなデータ・インテリジェンスで皆様をお手伝い

ヘルスケアにおけるブロックチェーン市場用途別(創薬、臨床試験)、ブロックチェーンの種類別(パブリックブロックチェーン、プライベートブロックチェーン、ハイブリッドブロックチェーン、その他ブロックチェーン)、エンドユーザーの種類別(病院、製薬業界、研究機関、学術機関)、主要地域別(北米、欧州、アジア太平洋地域、その他の地域)の分布:産業動向と世界予測、2023-2035年


Blockchain in Healthcare Market: Distribution by Application (Drug Discovery, Clinical Trials) Type of Blockchain (Public Blockchain, Private Blockchain, Hybrid Blockchain, and Other Blockchains), Type of End User (Hospitals, Pharmaceutical Industry, Research Institutes and Academic Institutes), and Key Geographical Regions (North America, Europe, Asia-Pacific, and Rest of the World): Industry Trends and Global Forecasts, 2023-2035

ヘルスケアにおけるブロックチェーンの世界市場は、2023年に5800万米ドルに達すると予測され、予測期間2023年から2035年の間に22%の年平均成長率で成長すると予測されている。 医療現場は多面的な課題に直面... もっと見る

 

 

出版社 出版年月 電子版価格 ページ数 言語
Roots Analysis
ルーツアナリシス
2023年1月17日 US$4,799
シングルユーザライセンス
ライセンス・価格情報・注文方法はこちら
165 英語

 

サマリー

ヘルスケアにおけるブロックチェーンの世界市場は、2023年に5800万米ドルに達すると予測され、予測期間2023年から2035年の間に22%の年平均成長率で成長すると予測されている。

医療現場は多面的な課題に直面しており、断片化されたカルテの管理、危ういデータの完全性、相互運用性のハードル、サプライチェーン管理の非効率性、患者情報のセキュリティを損なう違反などを包含している。さらに、医学研究の大部分(約80%)は、不正、データ改ざん、臨床試験の不正行為などのエラーにより、望ましくない結果につながる障害に遭遇している。2021年7月から2022年6月にかけて、690件を超える医療データ侵害が報告されており、この業界の脆弱性が浮き彫りになっている。

こうした重大な問題に対応するため、分散型台帳技術(DLT)とも呼ばれるブロックチェーン技術が有望なソリューションとして浮上している。この革新的な技術は、医療データおよびトランザクションの安全な保存と管理を可能にする一方で、医療分野におけるシステム上の欠陥を効果的に特定する。DLTのアプリケーションは、多様なヘルスケア領域に及び、特にデータ操作の防止や臨床試験データの透明性向上による臨床試験の最適化に適している。さらに、偽造医薬品や薬剤を抑制することで、サプライチェーン管理を大幅に改善します。さらに遠隔医療では、ブロックチェーンが医療記録を不正アクセスや改ざんから守り、異なる医療提供者間での安全なデータ転送を促進する。

レポート範囲
 創薬・臨床試験市場におけるブロックチェーンの現状と、短期・中期・長期的に起こりうる進化についてハイレベルな見解を提供する、レポートで取り上げた主要な洞察のエグゼクティブサマリー。
 ブロックチェーン技術の概要、パブリックブロックチェーン、プライベートブロックチェーン、コンソーシアムブロックチェーンなどの種類と様々な業界におけるアプリケーションに関する情報、さらに、特に創薬と臨床試験におけるアプリケーションブロックチェーンを取り上げています。
 ブロックチェーンの種類、医薬品開発アプリケーションの種類、臨床試験管理内のアプリケーション、エンドユーザーの種類に関する情報を掲載し、創薬と臨床試験におけるブロックチェーンの全体的な市場状況を詳細にレビューしています。
 サプライヤーの強さ、ポートフォリオの多様性、ポートフォリオの強さに基づく、ブロックチェーン技術プロバイダーの洞察に満ちた企業競争力分析。
 創薬・臨床試験向けブロックチェーンプラットフォームの提供に携わる主要プレイヤーの精緻なプロフィール。各プロフィールは、設立年、従業員数、本社所在地、主要幹部、財務情報(入手可能な場合)、独自プラットフォームの応用分野の詳細、最近の開発、情報に基づく将来の見通しに関する情報とともに、企業の簡単な概要を掲載しています。
 2017年から2022年の間に、この領域に従事する利害関係者によって締結された様々な提携やパートナーシップの詳細な分析。この領域の利害関係者が採用したパートナーシップモデルの簡単な説明を含む。
 創薬や臨床試験におけるブロックチェーンの研究に関連する査読済みの科学論文を、出版年、論文の種類、人気の出版社、人気の著作権者、キーワードなど、いくつかの関連パラメータに基づいて詳細にレビュー。本章では、主要ジャーナルも紹介している。
 信頼性の高いSWOTフレームワークの下、ブロックチェーンに関連する関連動向、主要な推進要因、課題に関する情報。
 ブロックチェーンの利点と課題の詳細とともに、さまざまな業界におけるブロックチェーンの歴史と進化に関する詳細なケーススタディ。
 洞察に満ちた市場予測分析により、2035年までの創薬・臨床試験におけるブロックチェーン市場の成長可能性を強調。将来機会の詳細を提供するため、予測はブロックチェーンの種類(パブリックブロックチェーン、プライベートブロックチェーン、ハイブリッドブロックチェーン、その他のブロックチェーン)、エンドユーザーの種類(病院、製薬業界、研究機関、学術機関)、主要地域(北米、欧州、アジア太平洋地域、その他の地域)に基づいて区分されています。

主要市場企業
 Alten Calsoft Labs
 コンセンシス
 Humanscape
 ハイパーレッジャー財団
 IBM
 インフォシス
 Innoplexus
 メドスフィア
 ソルラボ
 ストラタム
テックマヒンドラ

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目次

1. PREFACE
1.1. Overview
1.2. Key Market Insights
1.3. Scope of the Report
1.4. Research Methodology
1.5 Key Questions Answered
1.6. Chapter Outlines
2. EXECUTIVE SUMMARY
2.1 Chapter Overview
3. INTRODUCTION
3.1. Chapter Overview
3.2. Overview of Blockchain Technology
3.2.1. Ethereum vs Hyperledger Fabric
3.3. Types of Blockchain
3.3.1. Permissionless or Public Blockchain
3.3.2. Permissioned or Private Blockchain
3.3.3. Federated or Consortium Blockchain
3.4. Applications of Blockchain Across Various Industries
3.5. Applications of Blockchain in Drug Discovery and Clinical Trials
3.6. Advantages and Limitations of Blockchain
3.7. Future Perspectives
4. MARKET OVERVIEW
4.1. Chapter Overview
4.2. List of Blockchain Technology Providers
4.2.1. Analysis by Year of Establishment
4.2.2. Analysis by Company Size
4.2.3. Analysis by Region of Headquarters
4.2.4. Analysis by Location of Headquarters
4.2.5. Analysis by Year of Establishment, Company Size, and Region of Headquarters
4.2.6. Analysis by Type of Blockchain(s)
4.2.7. Analysis by Type of Drug Development Application(s)
4.2.8. Analysis by Application(s) within Clinical Trial Management
4.2.9. Analysis by Type of End-User(s)
4.2.10. Analysis by Type of Blockchain and Type of End-User(s)
4.2.11. Analysis by Type of Blockchain and Type of Drug Development Application(s)
5. COMPANY COMPETITIVENESS ANALYSIS
5.1. Chapter Overview
5.2. Assumptions / Key Parameters
5.3. Methodology
5.4. Company Competitiveness Analysis: Blockchain Technology Providers based inNorth America (Peer Group I)
5.5. Company Competitiveness Analysis: Blockchain Technology Providers based inEurope (Peer Group II)
5.6. Company Competitiveness Analysis: Blockchain Technology Providers based inAsia Pacific and RoW (Peer Group III)
6. COMPANY PROFILES
6.1. Chapter Overview
6.2. Alten Calsoft Labs
6.2.1. Company Overview
6.2.2. Financial Information
6.2.3. Application Areas of Proprietary Platform
6.2.4. Recent Developments and Future Outlook
6.3. ConsenSys
6.3.1. Company Overview
6.3.2. Application Areas of Proprietary Platform
6.3.3. Recent Developments and Future Outlook
6.4. IBM
6.4.1. Company Overview
6.4.2. Financial Information
6.4.3. Application Areas of Proprietary Platform
6.4.4. Recent Development and Future Outlooks
6.5. Stratumn
6.5.1. Company Overview
6.5.2. Application Areas of Proprietary Platform
6.5.3. Recent Development and Future Outlook
6.6. Infosys
6.6.1. Company Overview
6.6.2. Financial Information
6.6.3. Application Areas of Proprietary Platform
6.6.4. Recent Developments and Future Outlook
6.7. Tech Mahindra
6.7.1. Company Overview
6.7.2. Financial Information
6.7.3. Application Areas of Proprietary Platform
6.7.4. Recent Developments and Future Outlook
6.8. Humanscape
6.8.1. Company Overview
6.8.2. Application Areas of Proprietary Platform
6.8.3. Recent Developments and Future Outlook
6.9. Hyperledger Foundation
6.9.1. Company Overview
6.9.2. Application Areas of Proprietary Platform
6.9.3. Recent Developments and Future Outlook
6.10. Innoplexus
6.10.1. Company Overview
6.10.2. Application Areas of Proprietary Platform
6.10.3. Recent Developments and Future Outlook
6.11. Medsphere
6.11.1. Company Overview
6.11.2. Application Areas of Proprietary Platform
6.11.3. Recent Developments and Future Outlook
6.12. Solulab
6.12.1. Company Overview
6.12.2. Application Areas of Proprietary Platform
6.12.3. Recent Developments and Future Outlook
7. PARTNERSHIPS AND COLLABORATIONS
7.1. Chapter Overview
7.2. Partnership Models
7.3 Blockchain in Drug Discovery and Clinical Trials: Recent Partnerships and Collaborations
7.3.1. Analysis by Year of Partnership
7.3.2. Analysis by Type of Partnership
7.3.3. Analysis by Year and Type of Partnership
7.3.4. Analysis by Company Size and Type of Partnership
7.3.5. Most Active Players: Distribution by Number of Partnerships
7.3.6. Most Active Players: Distribution by Type of Partnership
7.3.7. Analysis by Type of Pharmaceutical Applications
7.3.8. Analysis by Type of Partner
7.3.9. Analysis by Geographical Region
7.3.9.1. Local and International Agreements
7.3.9.2. Intercontinental and Intracontinental Agreements
8. PUBLICATION ANALYSIS
8.1. Chapter Overview
8.2. Scope and Methodology
8.3. Blockchain Technology in Pharmaceutical Industry: Recent Publications
8.3.1. Analysis by Year of Publication
8.3.2. Analysis by Type of Article
8.3.3. Popular Journals: Analysis by Number of Publications
8.3.4. Popular Publishers: Analysis by Number of Publications
8.3.5. Popular Copyright Holders: Analysis by Number of Publications
8.3.6. Analysis by Popular Keywords
8.3.7. Analysis by Impact Factor
8.3.8. Popular Journals: Analysis by Journal Impact Factor
9. SWOT ANALYSIS
9.1. Chapter Overview
9.2. Blockchain in Drug Discovery and Clinical Trials: SWOT Analysis
9.3. Comparison of SWOT Factors
9.3.1. Strengths
9.3.1.1. Transparency and Traceability
9.3.1.2. Cost Reduction and Data Integrity
9.3.1.3. Safe and Secure Transactions
9.3.1.4. Patient Data Management
9.3.2. Weaknesses
9.3.2.1. Implementation Expense
9.3.2.2. Storage
9.3.2.3. Immutability of Data
9.3.2.4. High Energy Consumption
9.3.3. Threats
9.3.3.1. Blockchain is Prone to Cyber Attacks
9.3.3.2. Scalability
9.3.3.3. Lack of Regulations Issued by Legal Authorities
9.3.4. Opportunities
10. CASE STUDY: APPLICATIONS OF BLOCKCHAIN IN HEALTHCARE AND OTHER INDUSTRIES
10.1. Chapter Overview
10.2. Applications of Blockchain Across Various Industries
10.2.1 Blockchain in Healthcare
10.2.2. Blockchain in Banking and Financial Industry
10.2.3. Blockchain in Automotive Industry
10.2.4. Blockchain in Education
10.2.5. Blockchain in Telecom Industry
10.2.6. Blockchain in Transportation
10.2.7. Blockchain in Travel Industry
11. MARKET FORECAST AND OPPORTUNITY ANALYSIS
11.1. Chapter Overview
11.2. Key Assumptions and Methodology
11.3. Blockchain in Drug Discovery and Clinical Trials Market, 2023-2035
11.4. Blockchain in Drug Discovery and Clinical Trials Market: Distribution by Type of Blockchain, 2023 and 2035
11.4.1. Blockchain in Drug Discovery and Clinical Trials Market for Public Blockchain, 2023-2035
11.4.2. Blockchain in Drug Discovery and Clinical Trials Market for Private Blockchain, 2023-2035
11.4.3. Blockchain in Drug Discovery and Clinical Trials Market for Hybrid Blockchain, 2023-2035
11.4.4. Blockchain in Drug Discovery and Clinical Trials Market for Other Blockchains, 2023-2035
11.5. Blockchain in Drug Discovery and Clinical Trials Market: Distribution by Type of End-User, 2023 and 2035
11.5.1. Blockchain in Drug Discovery and Clinical Trials Market for Hospitals, 2023-2035
11.5.2. Blockchain in Drug Discovery and Clinical Trials Market forPharmaceutical Industry, 2023-2035
11.5.3. Blockchain in Drug Discovery and Clinical Trials Market for Research Institutes, 2023-2035
11.5.4. Blockchain in Drug Discovery and Clinical Trials Market for Academic Institutes, 2023-2035
11.6. Blockchain in Drug Discovery and Clinical Trials Market: Distribution by Key Geographical Regions, 2023 and 2035
11.6.1. Blockchain in Drug Discovery and Clinical Trials Market in NorthAmerica, 2023-2035
11.6.2. Blockchain in Drug Discovery and Clinical Trials Market in Europe, 2023-2035
11.6.3. Blockchain in Drug Discovery and Clinical Trials Market in Asia-Pacific, 2023-2035
11.6.4. Blockchain in Drug Discovery and Clinical Trials Market in Rest of theWorld, 2023-2035
12. CONCLUDING REMARKS
13. EXECUTIVE INSIGHTS
14. APPENDIX 1: TABULATED DATA
15. APPENDIX 2: LIST OF COMPANIES AND ORGANIZATIONS

 

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Summary

The global blockchain in healthcare market is expected to reach USD 58 million in 2023 anticipated to grow at a CAGR of 22% during the forecast period 2023-2035.

The healthcare landscape faces multifaceted challenges, encompassing fragmented medical record maintenance, compromised data integrity, interoperability hurdles, inefficiencies in supply chain management, and breaches compromising patient information security. Additionally, a significant portion, around 80%, of medical studies encounter obstacles leading to undesired outcomes due to errors like fraud, data falsification, and trial misconduct. Between July 2021 and June 2022, over 690 healthcare data breaches were reported, highlighting the industry's vulnerability.

Responding to these critical issues, blockchain technology, also termed distributed ledger technology (DLT), emerges as a promising solution. This innovative technology effectively identifies systemic flaws within the medical sector while enabling secure storage and management of healthcare data and transactions. Its applications span diverse healthcare domains, particularly in optimizing clinical trials by preventing data manipulation and enhancing trial data transparency. Furthermore, it significantly improves supply chain management by curbing counterfeit drugs and medications. Moreover, in telemedicine, blockchain safeguards medical records from unauthorized access or tampering and facilitates secure data transfer among different healthcare providers.

Report Coverage
 An executive summary of the key insights captured in report offering a high-level view of the current state of blockchain in drug discovery and clinical trials market and its likely evolution in the short term to mid-term and long term.
 Overview of blockchain technology, along with information on its types, including public blockchain, private blockchain, and consortium blockchain and applications across various industries Additionally, it highlights the application blockchain, specifically in drug discovery and clinical trials.
 A detailed review of the overall market landscape of blockchain in drug discovery and clinical trials, featuring information on the type of blockchain(s), type of drug development application(s), applications within clinical trial management, type of end-users.
 An insightful company competitiveness analysis of blockchain technology providers, based on their supplier strength, portfolio diversity and portfolio strength
 Elaborated profiles of key players engaged in providing blockchain platforms for drug discovery and clinical trials. Each profile features a brief overview of the company along with information on their year of establishment, number of employees, location of headquarters, key executives, financial information (if available), details on application areas of proprietary platform, recent developments and an informed future outlook.
 An in-depth analysis of the various collaborations and partnerships that have been inked by stakeholders engaged in this domain, during the period 2017-2022. It includes a brief description of the partnership models adopted by stakeholders in this domain.
 A detailed review of peer-reviewed, scientific articles related to research on blockchain in drug discovery and clinical trials, based on several relevant parameters, such as year of publication, type of article, popular publishers, popular copyright holders and keywords. The chapter also highlights the key journals.
 Information on the affiliated trends, key drivers and challenges associated with blockchain, under a reliable SWOT framework.
 A detailed case study on the history and evolution of blockchain in various industries along with details on its advantages and challenges.
 An insightful market forecast analysis, highlighting the likely growth of the blockchain in drug discovery and clinical trials market till the year 2035. In order to provide details on the future opportunity, our projections have been segmented on the basis of type of blockchain (public blockchain, private blockchain, hybrid blockchain, other blockchains), type of end user (hospitals, pharmaceutical industry, research institutes and academic institutes) and key geographical regions (North America, Europe, Asia-Pacific and Rest of the world).

Key Market Companies
 Alten Calsoft Labs
 ConsenSys
 Humanscape
 Hyperledger Foundation
 IBM
 Infosys
 Innoplexus
 Medsphere
 Solulab
 Stratumn
Tech Mahindra



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Table of Contents

1. PREFACE
1.1. Overview
1.2. Key Market Insights
1.3. Scope of the Report
1.4. Research Methodology
1.5 Key Questions Answered
1.6. Chapter Outlines
2. EXECUTIVE SUMMARY
2.1 Chapter Overview
3. INTRODUCTION
3.1. Chapter Overview
3.2. Overview of Blockchain Technology
3.2.1. Ethereum vs Hyperledger Fabric
3.3. Types of Blockchain
3.3.1. Permissionless or Public Blockchain
3.3.2. Permissioned or Private Blockchain
3.3.3. Federated or Consortium Blockchain
3.4. Applications of Blockchain Across Various Industries
3.5. Applications of Blockchain in Drug Discovery and Clinical Trials
3.6. Advantages and Limitations of Blockchain
3.7. Future Perspectives
4. MARKET OVERVIEW
4.1. Chapter Overview
4.2. List of Blockchain Technology Providers
4.2.1. Analysis by Year of Establishment
4.2.2. Analysis by Company Size
4.2.3. Analysis by Region of Headquarters
4.2.4. Analysis by Location of Headquarters
4.2.5. Analysis by Year of Establishment, Company Size, and Region of Headquarters
4.2.6. Analysis by Type of Blockchain(s)
4.2.7. Analysis by Type of Drug Development Application(s)
4.2.8. Analysis by Application(s) within Clinical Trial Management
4.2.9. Analysis by Type of End-User(s)
4.2.10. Analysis by Type of Blockchain and Type of End-User(s)
4.2.11. Analysis by Type of Blockchain and Type of Drug Development Application(s)
5. COMPANY COMPETITIVENESS ANALYSIS
5.1. Chapter Overview
5.2. Assumptions / Key Parameters
5.3. Methodology
5.4. Company Competitiveness Analysis: Blockchain Technology Providers based inNorth America (Peer Group I)
5.5. Company Competitiveness Analysis: Blockchain Technology Providers based inEurope (Peer Group II)
5.6. Company Competitiveness Analysis: Blockchain Technology Providers based inAsia Pacific and RoW (Peer Group III)
6. COMPANY PROFILES
6.1. Chapter Overview
6.2. Alten Calsoft Labs
6.2.1. Company Overview
6.2.2. Financial Information
6.2.3. Application Areas of Proprietary Platform
6.2.4. Recent Developments and Future Outlook
6.3. ConsenSys
6.3.1. Company Overview
6.3.2. Application Areas of Proprietary Platform
6.3.3. Recent Developments and Future Outlook
6.4. IBM
6.4.1. Company Overview
6.4.2. Financial Information
6.4.3. Application Areas of Proprietary Platform
6.4.4. Recent Development and Future Outlooks
6.5. Stratumn
6.5.1. Company Overview
6.5.2. Application Areas of Proprietary Platform
6.5.3. Recent Development and Future Outlook
6.6. Infosys
6.6.1. Company Overview
6.6.2. Financial Information
6.6.3. Application Areas of Proprietary Platform
6.6.4. Recent Developments and Future Outlook
6.7. Tech Mahindra
6.7.1. Company Overview
6.7.2. Financial Information
6.7.3. Application Areas of Proprietary Platform
6.7.4. Recent Developments and Future Outlook
6.8. Humanscape
6.8.1. Company Overview
6.8.2. Application Areas of Proprietary Platform
6.8.3. Recent Developments and Future Outlook
6.9. Hyperledger Foundation
6.9.1. Company Overview
6.9.2. Application Areas of Proprietary Platform
6.9.3. Recent Developments and Future Outlook
6.10. Innoplexus
6.10.1. Company Overview
6.10.2. Application Areas of Proprietary Platform
6.10.3. Recent Developments and Future Outlook
6.11. Medsphere
6.11.1. Company Overview
6.11.2. Application Areas of Proprietary Platform
6.11.3. Recent Developments and Future Outlook
6.12. Solulab
6.12.1. Company Overview
6.12.2. Application Areas of Proprietary Platform
6.12.3. Recent Developments and Future Outlook
7. PARTNERSHIPS AND COLLABORATIONS
7.1. Chapter Overview
7.2. Partnership Models
7.3 Blockchain in Drug Discovery and Clinical Trials: Recent Partnerships and Collaborations
7.3.1. Analysis by Year of Partnership
7.3.2. Analysis by Type of Partnership
7.3.3. Analysis by Year and Type of Partnership
7.3.4. Analysis by Company Size and Type of Partnership
7.3.5. Most Active Players: Distribution by Number of Partnerships
7.3.6. Most Active Players: Distribution by Type of Partnership
7.3.7. Analysis by Type of Pharmaceutical Applications
7.3.8. Analysis by Type of Partner
7.3.9. Analysis by Geographical Region
7.3.9.1. Local and International Agreements
7.3.9.2. Intercontinental and Intracontinental Agreements
8. PUBLICATION ANALYSIS
8.1. Chapter Overview
8.2. Scope and Methodology
8.3. Blockchain Technology in Pharmaceutical Industry: Recent Publications
8.3.1. Analysis by Year of Publication
8.3.2. Analysis by Type of Article
8.3.3. Popular Journals: Analysis by Number of Publications
8.3.4. Popular Publishers: Analysis by Number of Publications
8.3.5. Popular Copyright Holders: Analysis by Number of Publications
8.3.6. Analysis by Popular Keywords
8.3.7. Analysis by Impact Factor
8.3.8. Popular Journals: Analysis by Journal Impact Factor
9. SWOT ANALYSIS
9.1. Chapter Overview
9.2. Blockchain in Drug Discovery and Clinical Trials: SWOT Analysis
9.3. Comparison of SWOT Factors
9.3.1. Strengths
9.3.1.1. Transparency and Traceability
9.3.1.2. Cost Reduction and Data Integrity
9.3.1.3. Safe and Secure Transactions
9.3.1.4. Patient Data Management
9.3.2. Weaknesses
9.3.2.1. Implementation Expense
9.3.2.2. Storage
9.3.2.3. Immutability of Data
9.3.2.4. High Energy Consumption
9.3.3. Threats
9.3.3.1. Blockchain is Prone to Cyber Attacks
9.3.3.2. Scalability
9.3.3.3. Lack of Regulations Issued by Legal Authorities
9.3.4. Opportunities
10. CASE STUDY: APPLICATIONS OF BLOCKCHAIN IN HEALTHCARE AND OTHER INDUSTRIES
10.1. Chapter Overview
10.2. Applications of Blockchain Across Various Industries
10.2.1 Blockchain in Healthcare
10.2.2. Blockchain in Banking and Financial Industry
10.2.3. Blockchain in Automotive Industry
10.2.4. Blockchain in Education
10.2.5. Blockchain in Telecom Industry
10.2.6. Blockchain in Transportation
10.2.7. Blockchain in Travel Industry
11. MARKET FORECAST AND OPPORTUNITY ANALYSIS
11.1. Chapter Overview
11.2. Key Assumptions and Methodology
11.3. Blockchain in Drug Discovery and Clinical Trials Market, 2023-2035
11.4. Blockchain in Drug Discovery and Clinical Trials Market: Distribution by Type of Blockchain, 2023 and 2035
11.4.1. Blockchain in Drug Discovery and Clinical Trials Market for Public Blockchain, 2023-2035
11.4.2. Blockchain in Drug Discovery and Clinical Trials Market for Private Blockchain, 2023-2035
11.4.3. Blockchain in Drug Discovery and Clinical Trials Market for Hybrid Blockchain, 2023-2035
11.4.4. Blockchain in Drug Discovery and Clinical Trials Market for Other Blockchains, 2023-2035
11.5. Blockchain in Drug Discovery and Clinical Trials Market: Distribution by Type of End-User, 2023 and 2035
11.5.1. Blockchain in Drug Discovery and Clinical Trials Market for Hospitals, 2023-2035
11.5.2. Blockchain in Drug Discovery and Clinical Trials Market forPharmaceutical Industry, 2023-2035
11.5.3. Blockchain in Drug Discovery and Clinical Trials Market for Research Institutes, 2023-2035
11.5.4. Blockchain in Drug Discovery and Clinical Trials Market for Academic Institutes, 2023-2035
11.6. Blockchain in Drug Discovery and Clinical Trials Market: Distribution by Key Geographical Regions, 2023 and 2035
11.6.1. Blockchain in Drug Discovery and Clinical Trials Market in NorthAmerica, 2023-2035
11.6.2. Blockchain in Drug Discovery and Clinical Trials Market in Europe, 2023-2035
11.6.3. Blockchain in Drug Discovery and Clinical Trials Market in Asia-Pacific, 2023-2035
11.6.4. Blockchain in Drug Discovery and Clinical Trials Market in Rest of theWorld, 2023-2035
12. CONCLUDING REMARKS
13. EXECUTIVE INSIGHTS
14. APPENDIX 1: TABULATED DATA
15. APPENDIX 2: LIST OF COMPANIES AND ORGANIZATIONS

 

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