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市場調查報告書
商品編碼
2106653

實驗室資訊學:市場洞察、競爭格局和市場預測 - 2034 年

Laboratory Informatics - Market Insights, Competitive Landscape, and Market Forecast - 2034

出版日期: | 出版商: DelveInsight | 英文 150 Pages | 商品交期: 2-10個工作天內

價格

概述:

  • 2025年全球實驗室資訊學市場價值為38.5億美元,預計2034年將達到76億美元。
  • 預計從 2026 年到 2034 年,該市場將以 7.9% 的複合年成長率成長。這一成長是由嚴格的資料完整性和監管合規要求、不斷增加的檢驗資料量和複雜性、人工智慧 (AI) 和先進分析技術的應用以及向雲端和 SaaS(軟體即服務)的轉變所驅動的。
  • 按產品類型分類,預計到 2025 年,實驗室資訊管理系統 (LIMS) 細分市場將佔 40% 的市場佔有率,從而推動實驗室資訊學市場的發展。
  • 按交付方式分類,預計到 2025 年,基於雲端的細分市場將引領測試資訊學市場,佔據 52% 的市場佔有率。
  • 按組件分類,軟體部分預計將引領檢測資訊學市場,到 2025 年將佔市場佔有率的 58%。
  • 按最終用戶分類,預計到 2025 年,製藥和生物技術公司將引領實驗室資訊管理市場,佔據 34% 的市場佔有率。
  • 到 2025 年,北美將佔實驗室資訊學市場的 40%,佔據最大佔有率,但預計到 2034 年,亞太地區將實現最快成長。

實驗室資訊學是指一套用於收集、管理、分析和報告科學數據,以及協調研發、品管和診斷等實驗室工作流程的軟體系統和服務。主要產品線包括:用於管理檢體、測試、結果、規格和報告的實驗室資訊管理系統 (LIMS);用於收集實驗記錄和文件的電子實驗室筆記本 (ELN);用於儲存和組織儀器資料的科學資料管理系統 (SDMS);用於確保工作場所遵守程序和層析法作業程序 (SOP) 的實驗室執行系統 (DS);主要供應商在整合平台上提供這些功能;例如,Thermo Fisher 的 SampleManager 將實驗室資訊管理系統、科學資料管理系統、電子實驗室筆記本和實驗室執行系統整合到一個平台中,並與 Chromeleon層析法資料系統整合。 LabVantage、LabWare、STARLIMS 和 Dassault Systèmes 的 BIOVIA 也提供類似的整合套件。從樣品登記和測試分配到儀器數據收集、審核、批准和報告,整個工作流程完全在審計追蹤和電子簽章的框架下進行管理。目前市場的特點是從本地部署系統轉變為雲端和SaaS(軟體即服務)模式轉變,以及人工智慧(AI)和高階分析功能在整個資訊技術堆疊中的整合。

實驗室資訊學市場的主要市場促進因素

  • 嚴格的資料完整性和法規遵循要求是其中的一項。美國食品藥物管理局(FDA) 執行《聯邦法規》第 21 篇第 11 部分關於電子記錄和電子簽章的規定,並在受監管的檢查室中應用 ALCOA 和 ALCOA Plus 原則來確保資料完整性。
  • 協調一致的國際標準,例如歐盟電腦系統附件 11、電腦系統驗證的 ISPE GAMP 5 框架、測試和校準實驗室的 ISO/IEC 17025 以及醫療測試實驗室的 ISO 15189。
  • 來自基因組學、醫學影像和連網設備的實驗室數據量和複雜性不斷增加,這需要科學數據管理和整合資訊平台來應對這項挑戰。
  • 隨著人工智慧 (AI) 和先進分析技術的快速普及,LabVantage、Revvity、STARLIMS 和 Sapio Sciences 等供應商正在將 AI 功能整合到實驗室資訊管理系統和電子實驗室筆記本 (ELN) 中。
  • 目前,各行各業都在大力發展雲端技術和軟體即服務 (SaaS) 解決方案,這降低了基礎設施成本,並加快了各種規模檢查室的部署速度。
  • 隨著製藥和生物技術研發的擴展,以及合約研究和測試的成長,需要資訊技術的實驗室數量正在增加。
  • 我們致力於打造一個連網的、無紙化的實驗室,將實驗室自動化和資訊科技與設備、企業資源規劃 (ERP) 和製造執行系統 (MES) 結合。

推動實驗室資訊學市場成長的因素

市場促進因素

嚴格的資料完整性和監管合規要求

實驗室資訊學市場的主要驅動力是實驗室在良好生產規範 (GMP) 下運作對資料完整性和法規合規性的要求。美國食品藥物管理局(FDA) 於 1997 年最終確定的《聯邦法規彙編》第 21 篇第 11 部分 (21 CFR Part 11) 定義了電子記錄和電子簽章被視為可靠且與紙質文件等效的標準,並適用於在相關法規(包括現行實驗室規範 (GGLMP)、實驗室的良好規範 (PGLMP)、實驗室和臨床規範。 FDA 的資料完整性指南正式確立了 ALCOA 和 ALCOA Plus 原則。這些要求不僅要求資料具有可追溯性、清晰易讀、及時、原始和準確,還要求資料完整、一致、持久且可用。大規模滿足這些要求需要一個經過驗證的資訊系統,該系統能夠確保審計追蹤、保障用戶存取安全並強制執行電子簽章。實驗室資訊管理系統 (LIMS) 和電子實驗記錄本 (ELN) 提供這些管理功能,在整個記錄生命週期中收集帶有時間戳記且檢驗的原始資料。 LabWare 等供應商聲稱其系統符合美國聯邦法規 21 CFR 第 11 部分和歐盟附件 11 的要求,並在 FDA、EMA 和 MHRA 的檢查中獲得批准。由於合規性是強制性的,並且會接受審計,製藥、生物技術和診斷行業的受監管實驗室正在採用資訊學作為證明數據完整性的主要手段。持續且日益嚴格的要求,使得市場對符合規範的實驗室資訊管理系統、電子實驗記錄本及其驗證服務的需求保持穩定。

國際標準的協調和電腦系統的驗證

在美國以外,一套協調一致的國際標準和驗證要求架構支持著各地區對實驗室資訊學的需求。歐盟附件11規定了歐洲法規環境下的電腦化系統,並體現了美國聯邦法規21 CFR第11部分中關於電子記錄和電子簽章的要求。同時,ISPE GAMP 5框架提供了一種基於風險的電腦化系統驗證調查方法,實驗室可以利用該方法驗證資訊學,避免過度驗證。 ISO/IEC 17025規定了檢測和校準實驗室的能力要求,ISO 15189規定了醫學實驗室的能力要求;這兩項標準都旨在促進資訊學在可追溯性管理、分析方法控制和報告方面的應用。例如,STARLIMS符合美國聯邦法規21 CFR第11部分關於審計追蹤和電子簽章的要求、ISO/IEC 17025關於檢測實驗室的要求以及ISO 15189關於醫學檢查室。隨著 GAMP 5 第二版的發布,驗證指南的範圍已擴展至雲端運算、人工智慧和敏捷開發,使驗證實踐與現代資訊技術系統相契合。這些標準適用於製藥、臨床、環境、食品和法醫學檢查室以及所有地區,建議採用經過驗證、可審計且持續更新的資訊技術,以跟上監管變化的步伐。該標準框架的廣度和一致性已將資訊技術從單純的操作便利轉變為合規要求,滿足了全球受監管檢查室的需求,並有利於那些提供成熟驗證支援的供應商。

市場限制因素

實驗室資訊學市場面臨許多相互關聯的限制因素,阻礙了其發展。其中最主要的因素是高成本、複雜的系統架構以及漫長的實作和驗證過程。由於資訊系統必須根據每個檢查室的工作流程進行配置,並與儀器和企業系統整合,且必須基於美國聯邦法規21 CFR Part 11和GAMP 5進行驗證以證明其合規性,因此需要耗費大量時間、專業知識和資金,這對於小規模的檢查室而言可能構成障礙。與包括實驗室儀器、層析法數據系統、企業資源計劃(ERP)、製造執行系統(MES)和品管系統在內的各種生態系統進行整合,在技術上極具挑戰性,而缺乏通用的互通性標準使得連接項目成本高昂且風險巨大。從現有的本地部署舊有系統遷移會中斷運營,並對資料完整性和業務永續營運構成風險。此外,實驗室通常會使用實驗室資訊管理系統長達10年或更久,導致更新周期長,新銷售成長緩慢。在受監管的環境中,對資料安全和資料儲存位置的擔憂限制了高度敏感的實驗室資料向雲端環境的遷移。歷史上,由於資料敏感度和資料量龐大,這些環境中的雲端採用率一直落後於其他產業。經驗豐富的資訊學和電腦系統驗證專家的短缺限制了實驗室部署、檢驗和維護複雜系統的能力。此外,主流平台所需的高階配置可能需要管理員具備專業知識。雖然人工智慧 (AI) 的應用是推動雲端遷移的動力,但它也帶來了驗證、可解釋性和法規核准等挑戰,這些挑戰必須在自動化輸出能夠被受監管的操作所信任之前得到解決。客製化可能會增加維護負擔並使升級複雜化。此外,市場集中於少數幾家大型供應商可能會增加轉換成本,並限制實驗室和小規模供應商的柔軟性。這些因素共同減緩了雲端部署和現代化的步伐,供應商必須在合規性、效率、整合和成本方面展現出明顯的優勢,才能維持成長。

目錄

第1章:引言

  • 調查範圍
  • 市場區隔
  • 市場概覽

第2章:實驗室資訊學市場:執行摘要

  • 主要亮點和市場概覽

第3章:實驗室資訊學市場:關鍵影響因素

  • 市場促進因素
    • 嚴格的資料完整性和監管合規要求
    • 測試數據的數量和複雜性日益增加
    • 人工智慧(AI)和先進分析技術的引入
    • 遷移到雲端和SaaS(軟體即服務)
  • 市場限制因素
    • 實施和檢驗成本高成本且複雜。
    • 整合、遷移和漫長的更新周期
    • 雲端安全和人才短缺
  • 市場機遇
    • 人工智慧、雲端運算和互聯實驗室
    • 新興市場和跨產業擴張

第4章:人工智慧、地緣政治、貿易與經濟趨勢

第5章:監理分析

  • 美國
  • 歐洲
  • 日本
  • 中國

第6章:波特五力分析

第7章:實驗室資訊學市場:評估

  • 依產品類型
    • 實驗室資訊管理系統(LIMS)
    • 電子實驗室筆記本(ELN)
    • 科學資料管理系統(SDMS)
    • 實驗室執行系統(LES)
    • 層析法資料系統(CDS)
    • 測試、分析和其他資訊學
  • 根據配送方式而定
    • 現場
    • 基於雲端的
  • 按組件
    • 軟體
    • 服務
  • 最終用戶
    • 製藥和生物技術公司
    • 受託研究機構
    • 學術研究機構
    • 臨床和診斷檢查室
    • 化工/石油化工
    • 食品/飲料
    • 其他
  • 按地區
    • 北美洲
    • 歐洲
    • 亞太地區
    • 世界其他地區

第8章:實驗室資訊學市場:競爭格局

  • 競爭分析
  • 企業市場占有率分析(加值服務)

第9章:實驗室資訊學市場:新創企業資金籌措與投資趨勢

第10章:公司簡介與產品簡介

  • Thermo Fisher Scientific Inc.
  • LabWare, Inc.
  • LabVantage Solutions, Inc.
  • Dassault Systemes SE
  • STARLIMS Corporation
  • Agilent Technologies, Inc.
  • Waters Corporation
  • Revvity, Inc.
  • Clarivate Plc
  • Benchling, Inc.

第11章:KOL的觀點

第12章:專案式教學方法

第13章:關於 DelveInsight

第14章 免責聲明與聯絡方式

Product Code: DIMDCL0798

Laboratory Informatics Market Summary

Overview:

  • The global laboratory informatics market was valued at USD 3.85 billion in 2025 and is projected to reach USD 7.60 billion by 2034.
  • The market is expected to expand at a CAGR of 7.9% during the forecast period 2026-2034, supported by stringent data integrity and regulatory compliance requirements, the rising volume and complexity of laboratory data, the adoption of artificial intelligence and advanced analytics, and the shift toward cloud and software-as-a-service deployment.
  • By product type, the laboratory information management systems segment dominated the laboratory informatics market with a 40% share in 2025.
  • By delivery mode, the cloud-based segment dominated the laboratory informatics market with a 52% share in 2025.
  • By component, the software segment dominated the laboratory informatics market with a 58% share in 2025.
  • By end-user, the pharmaceutical and biotechnology companies segment dominated the laboratory informatics market with a 34% share in 2025.
  • North America accounted for the largest share of the laboratory informatics market at 40% in 2025, while Asia-Pacific is anticipated to register the fastest growth through 2034.

Laboratory informatics is the set of software systems and services used to capture, manage, analyze, and report scientific data and to orchestrate laboratory workflows across research, development, quality control, and diagnostic settings. The core product families are the laboratory information management system, which manages samples, tests, results, specifications, and reporting; the electronic laboratory notebook, which captures experimental records and documentation; the scientific data management system, which stores and organizes instrument data; the laboratory execution system, which enforces procedures and standard operating procedures at the point of work; and the chromatography data system, which controls analytical instruments and processes their output. Leading vendors deliver these capabilities on unified platforms, and Thermo Fisher SampleManager combines the laboratory information management system with the scientific data management system, electronic laboratory notebook, and laboratory execution system on one platform integrated with the Chromeleon chromatography data system, while LabVantage, LabWare, STARLIMS, and Dassault Systemes BIOVIA offer comparable integrated suites. The workflow proceeds from sample registration and test assignment through instrument data capture, review, approval, and reporting, all under audit trail and electronic signature controls. The contemporary market is defined by the shift from on-premise systems to cloud and software-as-a-service delivery and by the integration of artificial intelligence and advanced analytics across the informatics stack.

Laboratory Informatics Market Key Growth Drivers

  • Stringent data integrity and regulatory compliance requirements, with the U.S. Food and Drug Administration enforcing 21 CFR Part 11 for electronic records and signatures and the ALCOA and ALCOA plus principles for data integrity across regulated laboratories.
  • Harmonized international standards, including EU Annex 11 for computerized systems, the ISPE GAMP 5 framework for computerized system validation, and ISO/IEC 17025 for testing and calibration laboratories and ISO 15189 for medical laboratories.
  • Rising volume and complexity of laboratory data from genomics, imaging, and connected instruments that require scientific data management and integrated informatics platforms.
  • Rapid adoption of artificial intelligence and advanced analytics, with vendors including LabVantage, Revvity, STARLIMS, and Sapio Sciences embedding artificial intelligence across laboratory information management systems and electronic laboratory notebooks.
  • A pronounced shift toward cloud and software-as-a-service deployment that lowers infrastructure cost and accelerates implementation across laboratories of every size.
  • Growth of pharmaceutical and biotechnology research and development and the expansion of contract research and testing that increases the number of laboratories requiring informatics.
  • Laboratory automation and the drive toward the connected and paperless laboratory that integrates informatics with instruments, enterprise resource planning, and manufacturing execution systems.

Key Companies in Laboratory Informatics Market

The competitive field is led by integrated platform vendors that offer the full informatics stack, challenged by specialist electronic laboratory notebook and cloud-native vendors and by regional providers. The leading participants in the laboratory informatics market include the following:

  • Thermo Fisher Scientific Inc.
  • LabWare, Inc.
  • LabVantage Solutions, Inc.
  • Dassault Systemes SE
  • STARLIMS Corporation
  • Agilent Technologies, Inc.
  • Waters Corporation
  • Revvity, Inc.
  • Clarivate Plc
  • Benchling, Inc.

Factors Contributing to the Growth of the Laboratory Informatics Market

Market Drivers

Stringent Data Integrity and Regulatory Compliance Requirements

The foundational driver of the laboratory informatics market is the requirement for data integrity and regulatory compliance in laboratories that operate under Good Practice regulations. The U.S. Food and Drug Administration 21 CFR Part 11, finalized in 1997, defines the criteria under which electronic records and electronic signatures are considered trustworthy and equivalent to paper, and it applies to laboratories working under predicate rules including current Good Manufacturing Practice, Good Laboratory Practice, and Good Clinical Practice. The agency data integrity guidance formalizes the ALCOA and ALCOA plus principles, which require that data be attributable, legible, contemporaneous, original, and accurate, together with complete, consistent, enduring, and available, and these expectations can only be met at scale with validated informatics that enforce audit trails, secure user access, and electronic signatures. Laboratory information management systems and electronic laboratory notebooks provide these controls, capturing original, time-stamped, traceable data across the record lifecycle, and vendors including LabWare state that their systems meet 21 CFR Part 11 and EU Annex 11 requirements with a track record of acceptance in FDA, EMA, and MHRA inspections. Because compliance is mandatory and inspected, regulated laboratories in pharmaceutical, biotechnology, and diagnostic settings adopt informatics as the primary means of demonstrating data integrity. The persistence and tightening of these requirements sustains durable demand for compliant laboratory information management systems, electronic laboratory notebooks, and the validation services that support them.

Harmonized International Standards and Computerized System Validation

Beyond the United States, a harmonized framework of international standards and validation expectations sustains demand for laboratory informatics across regions. EU Annex 11 governs computerized systems in the European regulated environment and mirrors the electronic records and signatures expectations of 21 CFR Part 11, while the ISPE GAMP 5 framework provides the risk-based methodology for computerized system validation that laboratories use to validate their informatics without over-validation. ISO/IEC 17025 sets the requirements for the competence of testing and calibration laboratories, and ISO 15189 sets the requirements for medical laboratories, both of which drive the adoption of informatics that manage traceability, method control, and reporting. STARLIMS, for example, conforms to 21 CFR Part 11 for audit trails and electronic signatures and to ISO/IEC 17025 for testing laboratories and ISO 15189 for medical laboratories. The publication of the GAMP 5 Second Edition extended validation guidance to cloud computing, artificial intelligence, and agile development, aligning validation practice with the modern informatics stack. These standards apply across pharmaceutical, clinical, environmental, food, and forensic laboratories and across regions, and they favor informatics that are validated, auditable, and continuously updated for regulatory change. The breadth and consistency of the standards framework converts informatics from an operational convenience into a compliance necessity, sustaining demand across regulated laboratories worldwide and favoring vendors with proven validation support.

Market Restraints

The laboratory informatics market faces several interrelated restraints that temper its growth. The foremost is the high cost, complexity, and duration of implementation and validation, since informatics must be configured to each laboratory's workflows, integrated with instruments and enterprise systems, and validated under 21 CFR Part 11 and GAMP 5 to demonstrate compliance, which requires time, specialized expertise, and capital that can be prohibitive for smaller laboratories. Integration with the diverse ecosystem of laboratory instruments, chromatography data systems, enterprise resource planning, manufacturing execution, and quality systems is technically demanding, and the absence of universal interoperability standards adds cost and risk to connectivity projects. Migration from entrenched legacy on premise systems is disruptive and carries risk to data integrity and business continuity, and because laboratories typically retain a laboratory information management system for a decade or more, replacement cycles are long and new sales are slow to materialize. Data security and residency concerns constrain the movement of sensitive laboratory data to cloud environments in regulated settings, and cloud adoption in these environments has historically lagged other industries because of the sensitivity and volume of the data. The shortage of experienced informatics and computerized system validation professionals limits the capacity of laboratories to implement, validate, and maintain advanced systems, and the deep configuration required by the leading platforms can demand administrator expertise. The adoption of artificial intelligence, while a driver, raises questions of validation, explainability, and regulatory acceptance that must be resolved before automated outputs can be relied upon in regulated work. Customization can create maintenance burden and complicate upgrades, and the concentration of the market among a few large vendors can raise switching costs and constrain flexibility for laboratories and smaller providers. Together these factors moderate the pace of adoption and modernization and require vendors to demonstrate clear compliance, efficiency, integration, and cost advantages to sustain growth.

Laboratory Informatics Market Segment Analysis

The global laboratory informatics market is segmented by product type (laboratory information management systems (LIMS), electronic laboratory notebooks (ELN), scientific data management systems (SDMS), laboratory execution systems (LES), chromatography data systems (CDS), and laboratory analytics and other informatics), by delivery mode (on-premise, cloud-based), by component (software and services), by end-user (pharmaceutical and biotechnology companies, contract research organizations, academic and research institutes, clinical and diagnostic laboratories, chemical and petrochemical, food and beverages, land others), and by geography (North America, Europe, Asia-Pacific, and the Rest of the World).

By Product Type

Dominant Subsegment: Laboratory Information Management Systems.

The laboratory information management systems category is expected to dominate the market. The laboratory information management systems segment accounted for a 40% share of the laboratory informatics market in 2025. The laboratory information management system is the central system of record in the laboratory, managing samples, tests, specifications, results, approvals, reporting, instrument connectivity, inventory, and compliance, and it is the foundation on which the wider informatics stack is built. Its dominance reflects its universal role across regulated and non-regulated laboratories and its position as the primary system through which laboratories demonstrate data integrity and regulatory compliance. The leading platforms are built upon the laboratory information management system and extend it with the electronic laboratory notebook, scientific data management system, and laboratory execution system, and Thermo Fisher SampleManager, LabWare, LabVantage, and STARLIMS all deliver the laboratory information management system as the core of an integrated suite. The system enforces the audit trails, electronic signatures, and secure access required by 21 CFR Part 11 and EU Annex 11, and it connects to instruments, enterprise resource planning, and manufacturing execution systems to enable the connected laboratory. The addition of artificial intelligence and analytics modules to laboratory information management systems, and the migration of these systems to cloud and subscription models, further reinforce their centrality. Because the laboratory information management system is the indispensable core of laboratory informatics and the primary vehicle for compliance and workflow management, it remains the largest and most defensible product segment, and its centrality sustains its leadership across the forecast period.

By Delivery Mode

Dominant Subsegment: Cloud-Based.

The cloud-based category is expected to dominate the market. The cloud-based segment accounted for a 52% share of the laboratory informatics market in 2025. Cloud and software-as-a-service delivery has become the leading deployment model because it lowers infrastructure and maintenance cost, accelerates implementation and validation, scales capacity, and provides the foundation for aggregating data and applying analytics across sites. Its dominance reflects the migration of laboratories from legacy on-premise databases toward cloud and subscription models and the preference of new adopters for rapid, low-capital deployment. The leading vendors have made cloud delivery central to their offerings, and LabVantage provides its full platform as software-as-a-service, LabWare offers SOC 2 certified software-as-a-service laboratory information management systems with rapid deployment, STARLIMS offers on-premise, hybrid, and cloud options, and Thermo Fisher offers SampleManager on a managed cloud environment, on-premise, or a customer cloud. Cloud delivery is particularly important for smaller laboratories and for distributed, multi-site organizations that require common access, and it enables continuous regulatory updates and the integration of artificial intelligence services. Although cloud adoption in regulated laboratories has historically been slower because of data sensitivity, hybrid and subscription models have become the foundation for modern informatics architecture. As laboratories migrate to reduce cost, improve scalability, and access analytics, the cloud-based segment leads the market and drives replacement demand, and its alignment with the analytics and artificial intelligence modernization cycle sustains its leadership across the forecast period.

Laboratory Informatics Market Region Analysis

Dominant Region: North America

North America accounted for a 40% share of the global laboratory informatics market in 2025, representing the highest regional market share globally. The leadership of the region reflects the concentration of the pharmaceutical, biotechnology, and diagnostic industries, the presence of the leading informatics vendors, a stringent and well-defined regulatory framework, and the early adoption of cloud and artificial intelligence in the laboratory. The United States is the largest national market, supported by the size of its life sciences sector, the density of research, development, quality control, and clinical laboratories, and the rigor of the U.S. Food and Drug Administration framework. The agency enforces 21 CFR Part 11 for electronic records and signatures, applies the ALCOA and ALCOA plus data integrity principles, and maintains current Good Manufacturing Practice records requirements under 21 CFR Part 211 and Good Laboratory Practice under 21 CFR Part 58, and it has advanced a Computer Software Assurance approach that streamlines the validation of laboratory and quality-system software. The leading vendors, including Thermo Fisher Scientific, LabWare, LabVantage, and STARLIMS, are headquartered or heavily operate in the region, which accelerates the adoption of new platforms and artificial intelligence capabilities. The concentration of large, regulated laboratory operations, the availability of capital for modernization, and the maturity of cloud adoption reinforce the leadership of the region. The combination of industry concentration, regulatory rigor, vendor presence, and early adoption of automation and analytics sustains the position of North America as the largest regional market across the forecast period.

Fastest Growing Region: Asia-Pacific

Asia-Pacific is projected to register the fastest compound annual growth rate through 2034. The region is expanding its pharmaceutical, biotechnology, and contract research and testing industries, building research and quality control laboratory capacity, and strengthening regulatory requirements, which drives demand for laboratory informatics. China, Japan, and India are the principal national markets, supported by growing domestic life sciences sectors, rising research and development and manufacturing activity, and the expansion of contract research and testing. India is a major global center for contract research and laboratory outsourcing, and its laboratories adopt informatics at scale to serve international clients under regulatory control. As national authorities strengthen data integrity and quality requirements and as domestic companies expand their portfolios and international presence, laboratories adopt validated, cloud-based, and increasingly artificial intelligence-enabled informatics. The combination of industry expansion, regulatory strengthening, outsourcing concentration, and rising adoption of cloud and analytics positions Asia-Pacific as the fastest-growing regional market, and it attracts investment and commercial focus from the leading global vendors seeking presence in high-growth national markets.

Regional Commentary

North America

North America leads the market, supported by the concentration of the pharmaceutical, biotechnology, and diagnostic industries, the presence of the leading informatics vendors, and a stringent regulatory framework. The United States dominates the region through the size of its life sciences sector, the rigor of the U.S. Food and Drug Administration data integrity and validation requirements, and the early adoption of cloud and artificial intelligence. The concentration of large, regulated laboratory operations and the availability of capital for modernization sustain demand for comprehensive, validated informatics platforms.

Europe

Europe is a mature and substantial market, shaped by EU Annex 11 for computerized systems, EU Good Manufacturing Practice, and the international standards ISO/IEC 17025 and ISO 15189, together with the GAMP 5 validation framework. Germany, the United Kingdom, France, Italy, and Spain are the principal national markets, supported by strong regulatory rigor, a large pharmaceutical and chemical industry base, and the presence of European vendors including Dassault Systemes BIOVIA. Demand is sustained by data integrity requirements and by the modernization of laboratory operations.

Asia-Pacific

Asia-Pacific is the fastest-growing region, driven by the expansion of the pharmaceutical, biotechnology, and contract research industries and the strengthening of regulatory requirements across China, Japan, and India. India is a major global center for contract research and laboratory outsourcing, and the adoption of cloud-based and artificial intelligence-enabled informatics is rising as regulatory requirements and laboratory capacity grow. The region attracts commercial focus from the leading global vendors seeking presence in high-growth national markets.

Rest of World

The Rest of World, spanning Latin America, the Middle East, and Africa, represents an emerging opportunity as life sciences, food, environmental, and clinical laboratory capacity expands and as regulatory authorities strengthen data integrity and quality requirements. Growth is supported by investment in laboratory infrastructure, the adoption of cloud and subscription models, and rising awareness of compliance obligations, though the adoption of advanced informatics varies by market. Vendors pursue these markets through cloud delivery and partnerships suited to developing regulatory infrastructure.

Laboratory Informatics Market Competitive Landscape

The global laboratory informatics market is classified as Consolidated. A small group of integrated platform vendors dominates the market through comprehensive informatics suites that combine the laboratory information management system with the electronic laboratory notebook, scientific data management system, and laboratory execution system, supported by strong installed bases, global delivery, and continuous investment in cloud and artificial intelligence, while specialist electronic laboratory notebook and cloud-native vendors and regional providers compete on differentiated technology, usability, and rapid deployment. Competition centers on the breadth of the informatics stack, cloud delivery, artificial intelligence and analytics, regulatory conformity, and integration with instruments and enterprise systems, and product launches, artificial intelligence introductions, and acquisitions intensify the contest. The competitive landscape is evaluated across the following dimensions:

  • Market concentration: Consolidated, with a small group of integrated platform vendors holding the majority of global revenue through comprehensive informatics suites, alongside a tier of specialist electronic laboratory notebook, cloud-native, and regional providers.
  • Leading players: Thermo Fisher Scientific, with SampleManager, LabWare, LabVantage, and STARLIMS lead with integrated laboratory information management system, electronic laboratory notebook, scientific data management system, and laboratory execution system suites, while Dassault Systemes BIOVIA, Agilent Technologies, Waters, Revvity, Clarivate through IDBS, and Benchling contest defined segments and R&D informatics.
  • Geographic reach: The leading vendors maintain global commercial and service organizations, while regional providers and specialists leverage local relationships and rapid, cost-effective deployment to serve their domestic and neighboring markets.
  • Product portfolio strength: Competitive advantage rests on breadth across the laboratory information management system, electronic laboratory notebook, scientific data management system, laboratory execution system, chromatography data system, and analytics within a unified platform, since laboratories increasingly consolidate the informatics stack onto a single suite rather than assembling point solutions.
  • Pipeline strength: Development is concentrated in artificial intelligence and advanced analytics, cloud and software-as-a-service delivery, semantic data integration and scientific data lakes, and integration with instruments, enterprise resource planning, and manufacturing execution systems.
  • Strategic partnerships: Collaboration spans implementation and validation partners, integration with instrument and enterprise systems, and alliances that extend delivery and support reach across regions and industries.
  • M&A activity: Consolidation has shaped the field, exemplified by Thermo Fisher's expansion of its informatics portfolio and by Clarivate's acquisition of IDBS, alongside continued consolidation of laboratory informatics and electronic laboratory notebook assets among the leaders.
  • Innovation focus: Innovation is shifting toward embedded artificial intelligence and analytics, cloud-native and subscription delivery, unified data management across the informatics stack, and integration that enables the connected and paperless laboratory.
  • Regulatory standing: Conformity with 21 CFR Part 11, EU Annex 11, GAMP 5, and the ISO/IEC 17025 and ISO 15189 standards, together with a track record of acceptance in FDA, EMA, and MHRA inspections, is a decisive competitive credential and a principal axis of competition among the leaders.

Laboratory Informatics Market Recent Developmental Activities

In 2025, LabVantage Solutions, Inc. introduced its LabVantage 8.9 release with voice command support through its Lottie and Open Talk system, unveiled at Pittcon 2025, alongside artificial intelligence-powered analytics and semantic search across its laboratory information management system, electronic laboratory notebook, laboratory execution system, and scientific data management system platform. Strategic significance: the release advanced artificial intelligence and usability within a unified, no-code informatics platform, reinforcing competition on embedded intelligence.

In 2025, Sapio Sciences launched an artificial intelligence laboratory notebook with molecular docking and ad hoc analytics built into the interface, demonstrated at SLAS 2025. Strategic significance: the launch illustrated the integration of artificial intelligence and scientific computation directly into the electronic laboratory notebook, intensifying competition in research and development informatics.

Laboratory Informatics Market Segmentation

Laboratory Informatics Market Assessment by Product Type

  • Laboratory Information Management Systems (LIMS)
  • Electronic Laboratory Notebooks (ELN)
  • Scientific Data Management Systems (SDMS)
  • Laboratory Execution Systems (LES)
  • Chromatography Data Systems (CDS)
  • Laboratory Analytics and Other Informatics

Laboratory Informatics Market Assessment by Delivery Mode

  • On-Premise
  • Cloud-Based

Laboratory Informatics Market Assessment by Component

  • Software
  • Services

Laboratory Informatics Market Assessment by End-User

  • Pharmaceutical and Biotechnology Companies
  • Contract Research Organizations
  • Academic and Research Institutes
  • Clinical and Diagnostic Laboratories
  • Chemical and Petrochemical
  • Food and Beverage
  • Others

Laboratory Informatics Market Assessment by Geography

  • North America
  • United States Laboratory Informatics Market Size in USD million (2023-2034)
  • Canada Laboratory Informatics Market Size in USD million (2023-2034)
  • Mexico Laboratory Informatics Market Size in USD million (2023-2034)
  • Europe
  • Germany Laboratory Informatics Market Size in USD million (2023-2034)
  • United Kingdom Laboratory Informatics Market Size in USD million (2023-2034)
  • France Laboratory Informatics Market Size in USD million (2023-2034)
  • Italy Laboratory Informatics Market Size in USD million (2023-2034)
  • Spain Laboratory Informatics Market Size in USD million (2023-2034)
  • Rest of Europe Laboratory Informatics Market Size in USD million (2023-2034)
  • Asia-Pacific
  • China Laboratory Informatics Market Size in USD million (2023-2034)
  • Japan Laboratory Informatics Market Size in USD million (2023-2034)
  • India Laboratory Informatics Market Size in USD million (2023-2034)
  • Australia Laboratory Informatics Market Size in USD million (2023-2034)
  • South Korea Laboratory Informatics Market Size in USD million (2023-2034)
  • Rest of Asia-Pacific Laboratory Informatics Market Size in USD million (2023-2034)
  • Rest of the World
  • Middle East Laboratory Informatics Market Size in USD million (2023-2034)
  • Africa Laboratory Informatics Market Size in USD million (2023-2034)
  • South America Laboratory Informatics Market Size in USD million (2023-2034)

Key Takeaways from the Laboratory Informatics Market Report Study

  • Market size analysis for the current laboratory informatics market size (2025), and market forecast for 9 years (2026 to 2034).
  • Top key product/technology developments, mergers, acquisitions, partnerships, and joint ventures that happened over the last 3 years.
  • Key companies dominating the global laboratory informatics market.
  • Various opportunities available for competitors in the laboratory informatics market space.
  • What are the top-performing segments in 2025? How will these segments perform in 2034?
  • Which are the top-performing regions and countries in the current laboratory informatics market scenario?
  • Which are the regions and countries where companies should concentrate their opportunities for laboratory informatics market growth in the future?

Target audience who can benefit from this laboratory informatics market report study

  • Laboratory informatics product providers
  • Research organizations and consulting companies
  • Laboratory informatics-related organizations, associations, forums, and other alliances
  • Government and corporate offices
  • Start-up companies, venture capitalists, and private equity firms
  • Distributors and traders dealing in laboratory informatics
  • Various end-users who want to know more about the laboratory informatics market and the latest technological developments in the laboratory informatics market.

Frequently Asked Questions:

Q1. At what rate is the laboratory informatics market expected to grow?

The global laboratory informatics market is projected to grow at a compound annual growth rate of 7.9% during the forecast period from 2026 to 2034.

Q2. What is the current and projected size of the laboratory informatics market?

The global laboratory informatics market was valued at USD 3.85 billion in 2025 and is projected to reach USD 7.60 billion by 2034.

Q3. Which region dominates the laboratory informatics market?

North America dominated the laboratory informatics market with a 40% share in 2025, driven by the concentration of the pharmaceutical, biotechnology, and diagnostic industries, the presence of the leading vendors, a stringent regulatory framework from the U.S. Food and Drug Administration including 21 CFR Part 11 and the ALCOA plus data integrity principles, and early adoption of cloud and artificial intelligence. Asia-Pacific is projected to record the fastest compound annual growth rate through 2034, driven by the expansion of the pharmaceutical, biotechnology, and contract research industries and the strengthening of regulatory requirements across China, Japan, and India.

Q4. What are the key factors driving growth in the laboratory informatics market?

The principal drivers are stringent data integrity and regulatory compliance requirements, including the U.S. Food and Drug Administration 21 CFR Part 11 and the ALCOA plus principles, EU Annex 11, the GAMP 5 framework, and the ISO/IEC 17025 and ISO 15189 standards; the rising volume and complexity of laboratory data from genomics, imaging, and connected instruments; the adoption of artificial intelligence and advanced analytics across the informatics stack; the shift toward cloud and software-as-a-service deployment; and the growth of pharmaceutical and biotechnology research and contract testing.

Q5. Who are the major players in the laboratory informatics market?

The market is consolidated and led by Thermo Fisher Scientific Inc., LabWare, Inc., LabVantage Solutions, Inc., Dassault Systemes SE, and STARLIMS Corporation, alongside Agilent Technologies, Inc., Waters Corporation, Revvity, Inc., Clarivate Plc, and Benchling, Inc. Additional participants including Sapio Sciences, LLC, Autoscribe Informatics, LabLynx, Inc., and Agaram Technologies compete across the laboratory information management system, electronic laboratory notebook, scientific data management system, and laboratory execution system segments.

Table of Contents

1. Introduction

  • 1.1. Scope of the Report
  • 1.2. Market Segmentation
  • 1.3. Market Overview at a Glance

2. Executive Summary of Laboratory Informatics Market

  • 2.1. Key Highlights and Market Snapshot

3. Key Factors Impacting the Laboratory Informatics Market

  • 3.1. Market Drivers
    • 3.1.1. Stringent Data Integrity and Regulatory Compliance Requirements
    • 3.1.2. Rising Volume and Complexity of Laboratory Data
    • 3.1.3. Adoption of Artificial Intelligence and Advanced Analytics
    • 3.1.4. Shift toward Cloud and Software-as-a-Service Deployment
  • 3.2. Market Restraints
    • 3.2.1. High Cost and Complexity of Implementation and Validation
    • 3.2.2. Integration, Migration, and Long Replacement Cycles
    • 3.2.3. Cloud Security and Talent Constraints
  • 3.3. Market Opportunities
    • 3.3.1. Artificial Intelligence, Cloud, and the Connected Laboratory
    • 3.3.2. Emerging Markets and Cross-Industry Expansion

4. Impact Analysis: AI, Geopolitical, Trade, and Economic Developments

5. Regulatory Analysis

  • 5.1. The United States
  • 5.2. Europe
  • 5.3. Japan
  • 5.4. China

6. Porter's Five Forces Analysis

  • 6.1. Bargaining Power of Suppliers
  • 6.2. Bargaining Power of Consumers
  • 6.3. Threat of New Entrants
  • 6.4. Threat of Substitutes
  • 6.5. Competitive Rivalry

7. Laboratory Informatics Market Assessment

  • 7.1. By Product Type
    • 7.1.1. Laboratory Information Management Systems (LIMS)
    • 7.1.2. Electronic Laboratory Notebooks (ELN)
    • 7.1.3. Scientific Data Management Systems (SDMS)
    • 7.1.4. Laboratory Execution Systems (LES)
    • 7.1.5. Chromatography Data Systems (CDS)
    • 7.1.6. Laboratory Analytics and Other Informatics
  • 7.2. By Delivery Mode
    • 7.2.1. On-Premise
    • 7.2.2. Cloud-Based
  • 7.3. By Component
    • 7.3.1. Software
    • 7.3.2. Services
  • 7.4. By End-User
    • 7.4.1. Pharmaceutical and Biotechnology Companies
    • 7.4.2. Contract Research Organizations
    • 7.4.3. Academic and Research Institutes
    • 7.4.4. Clinical and Diagnostic Laboratories
    • 7.4.5. Chemical and Petrochemical
    • 7.4.6. Food and Beverage
    • 7.4.7. Others
  • 7.5. By Geography
    • 7.5.1. North America
      • 7.5.1.1. United States Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.1.2. Canada Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.1.3. Mexico Laboratory Informatics Market Size in USD million (2023-2034)
    • 7.5.2. Europe
      • 7.5.2.1. Germany Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.2.2. United Kingdom Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.2.3. France Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.2.4. Italy Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.2.5. Spain Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.2.6. Rest of Europe Laboratory Informatics Market Size in USD million (2023-2034)
    • 7.5.3. Asia-Pacific
      • 7.5.3.1. China Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.3.2. Japan Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.3.3. India Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.3.4. Australia Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.3.5. South Korea Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.3.6. Rest of Asia-Pacific Laboratory Informatics Market Size in USD million (2023-2034)
    • 7.5.4. Rest of the World
      • 7.5.4.1. Middle East Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.4.2. Africa Laboratory Informatics Market Size in USD million (2023-2034)
      • 7.5.4.3. South America Laboratory Informatics Market Size in USD million (2023-2034)

8. Laboratory Informatics Market Competitive Landscape

  • 8.1. Competitive Analysis
  • 8.2. Company Share Analysis (Premium Offering)

9. Laboratory Informatics Market Startup Funding and Investment Trends

10. Company and Product Profiles

  • 10.1. Thermo Fisher Scientific Inc.
    • 10.1.1. Company Overview
    • 10.1.2. Company Snapshot
    • 10.1.3. Financial Overview
    • 10.1.4. Product Listing
    • 10.1.5. Strategic Initiatives / Entropy
  • 10.2. LabWare, Inc.
    • 10.2.1. Company Overview
    • 10.2.2. Company Snapshot
    • 10.2.3. Financial Overview
    • 10.2.4. Product Listing
    • 10.2.5. Strategic Initiatives / Entropy
  • 10.3. LabVantage Solutions, Inc.
    • 10.3.1. Company Overview
    • 10.3.2. Company Snapshot
    • 10.3.3. Financial Overview
    • 10.3.4. Product Listing
    • 10.3.5. Strategic Initiatives / Entropy
  • 10.4. Dassault Systemes SE
    • 10.4.1. Company Overview
    • 10.4.2. Company Snapshot
    • 10.4.3. Financial Overview
    • 10.4.4. Product Listing
    • 10.4.5. Strategic Initiatives / Entropy
  • 10.5. STARLIMS Corporation
    • 10.5.1. Company Overview
    • 10.5.2. Company Snapshot
    • 10.5.3. Financial Overview
    • 10.5.4. Product Listing
    • 10.5.5. Strategic Initiatives / Entropy
  • 10.6. Agilent Technologies, Inc.
    • 10.6.1. Company Overview
    • 10.6.2. Company Snapshot
    • 10.6.3. Financial Overview
    • 10.6.4. Product Listing
    • 10.6.5. Strategic Initiatives / Entropy
  • 10.7. Waters Corporation
    • 10.7.1. Company Overview
    • 10.7.2. Company Snapshot
    • 10.7.3. Financial Overview
    • 10.7.4. Product Listing
    • 10.7.5. Strategic Initiatives / Entropy
  • 10.8. Revvity, Inc.
    • 10.8.1. Company Overview
    • 10.8.2. Company Snapshot
    • 10.8.3. Financial Overview
    • 10.8.4. Product Listing
    • 10.8.5. Strategic Initiatives / Entropy
  • 10.9. Clarivate Plc
    • 10.9.1. Company Overview
    • 10.9.2. Company Snapshot
    • 10.9.3. Financial Overview
    • 10.9.4. Product Listing
    • 10.9.5. Strategic Initiatives / Entropy
  • 10.10. Benchling, Inc.
    • 10.10.1. Company Overview
    • 10.10.2. Company Snapshot
    • 10.10.3. Financial Overview
    • 10.10.4. Product Listing
    • 10.10.5. Strategic Initiatives / Entropy

For illustrative purposes, only the top 10 companies are listed in the Table of Contents. The report may include analysis and references to additional companies where relevant to the market assessment.

11. KOL Views

12. Project Approach

13. About DelveInsight

14. Disclaimer and Contact Us

List of Tables

  • Table 1: Global Laboratory Informatics Market Size in USD million (2023-2034)
  • Table 2: Global Laboratory Informatics Market Size by Product Type in USD million (2023-2034)
  • Table 3: Global Laboratory Informatics Market Size by Delivery Mode in USD million (2023-2034)
  • Table 4: Global Laboratory Informatics Market Size by Component in USD million (2023-2034)
  • Table 5: Global Laboratory Informatics Market Size by End-User in USD million (2023-2034)
  • Table 6: Laboratory Informatics Market Size in North America in USD million (2023-2034)
  • Table 7: Laboratory Informatics Market Size in the United States in USD million (2023-2034)
  • Table 8: Laboratory Informatics Market Size in Canada in USD million (2023-2034)
  • Table 9: Laboratory Informatics Market Size in Mexico in USD million (2023-2034)
  • Table 10: Laboratory Informatics Market Size in Europe in USD million (2023-2034)
  • Table 11: Laboratory Informatics Market Size in Germany in USD million (2023-2034)
  • Table 12: Laboratory Informatics Market Size in the United Kingdom in USD million (2023-2034)
  • Table 13: Laboratory Informatics Market Size in France in USD million (2023-2034)
  • Table 14: Laboratory Informatics Market Size in Italy in USD million (2023-2034)
  • Table 15: Laboratory Informatics Market Size in Spain in USD million (2023-2034)
  • Table 16: Laboratory Informatics Market Size in the Rest of Europe in USD million (2023-2034)
  • Table 17: Laboratory Informatics Market Size in Asia-Pacific in USD million (2023-2034)
  • Table 18: Laboratory Informatics Market Size in China in USD million (2023-2034)
  • Table 19: Laboratory Informatics Market Size in Japan in USD million (2023-2034)
  • Table 20: Laboratory Informatics Market Size in India in USD million (2023-2034)
  • Table 21: Laboratory Informatics Market Size in Australia in USD million (2023-2034)
  • Table 22: Laboratory Informatics Market Size in South Korea in USD million (2023-2034)
  • Table 23: Laboratory Informatics Market Size in the Rest of Asia-Pacific in USD million (2023-2034)
  • Table 24: Laboratory Informatics Market Size in the Rest of the World in USD million (2023-2034)
  • Table 25: Laboratory Informatics Market Size in the Middle East in USD million (2023-2034)
  • Table 26: Laboratory Informatics Market Size in Africa in USD million (2023-2034)
  • Table 27: Laboratory Informatics Market Size in South America in USD million (2023-2034)
  • Table 28: Laboratory Informatics Market Competitive Landscape
  • Table 29: Laboratory Informatics Market Startup Funding and Investment Trends

List of Figures

  • Figure 1: Laboratory Informatics Market Drivers
  • Figure 2: Laboratory Informatics Market Restraints
  • Figure 3: Laboratory Informatics Market Opportunities
  • Figure 4: Impact Analysis: AI, Geopolitical, Trade, and Economic Developments
  • Figure 5: Regulatory Analysis of the Laboratory Informatics Market (the United States)
  • Figure 6: Regulatory Analysis of the Laboratory Informatics Market (Europe)
  • Figure 7: Regulatory Analysis of the Laboratory Informatics Market (Japan)
  • Figure 8: Regulatory Analysis of the Laboratory Informatics Market (China)
  • Figure 9: Porter's Five Forces Analysis of the Laboratory Informatics Market
  • Figure 10: Competitive Analysis of the Laboratory Informatics Market
  • Figure 11: Global Laboratory Informatics Market Size in USD million (2023-2034)
  • Figure 12: Global Laboratory Informatics Market Size by Product Type in USD million (2023-2034)
  • Figure 13: Global Laboratory Informatics Market Size by Delivery Mode in USD million (2023-2034)
  • Figure 14: Global Laboratory Informatics Market Size by Component in USD million (2023-2034)
  • Figure 15: Global Laboratory Informatics Market Size by End-User in USD million (2023-2034)
  • Figure 16: Laboratory Informatics Market Size in North America in USD million (2023-2034)
  • Figure 17: Laboratory Informatics Market Size in the United States in USD million (2023-2034)
  • Figure 18: Laboratory Informatics Market Size in Canada in USD million (2023-2034)
  • Figure 19: Laboratory Informatics Market Size in Mexico in USD million (2023-2034)
  • Figure 20: Laboratory Informatics Market Size in Europe in USD million (2023-2034)
  • Figure 21: Laboratory Informatics Market Size in Germany in USD million (2023-2034)
  • Figure 22: Laboratory Informatics Market Size in the United Kingdom in USD million (2023-2034)
  • Figure 23: Laboratory Informatics Market Size in France in USD million (2023-2034)
  • Figure 24: Laboratory Informatics Market Size in Italy in USD million (2023-2034)
  • Figure 25: Laboratory Informatics Market Size in Spain in USD million (2023-2034)
  • Figure 26: Laboratory Informatics Market Size in the Rest of Europe in USD million (2023-2034)
  • Figure 27: Laboratory Informatics Market Size in Asia-Pacific in USD million (2023-2034)
  • Figure 28: Laboratory Informatics Market Size in China in USD million (2023-2034)
  • Figure 29: Laboratory Informatics Market Size in Japan in USD million (2023-2034)
  • Figure 30: Laboratory Informatics Market Size in India in USD million (2023-2034)
  • Figure 31: Laboratory Informatics Market Size in Australia in USD million (2023-2034)
  • Figure 32: Laboratory Informatics Market Size in South Korea in USD million (2023-2034)
  • Figure 33: Laboratory Informatics Market Size in the Rest of Asia-Pacific in USD million (2023-2034)
  • Figure 34: Laboratory Informatics Market Size in the Rest of the World in USD million (2023-2034)
  • Figure 35: Laboratory Informatics Market Size in the Middle East in USD million (2023-2034)
  • Figure 36: Laboratory Informatics Market Size in Africa in USD million (2023-2034)
  • Figure 37: Laboratory Informatics Market Size in South America in USD million (2023-2034)