PUBLISHER: Mordor Intelligence | PRODUCT CODE: 2119274
PUBLISHER: Mordor Intelligence | PRODUCT CODE: 2119274
According to Mordor Intelligence, the prenatal diagnostic software market size is expected to grow from USD 241.06 million in 2025 to USD 276.65 million in 2026 and is forecast to reach USD 511.5 million by 2031 at 13.08% CAGR over 2026-2031.

This report is Segmented by Product Type (Genetic Analysis and More), Technology (NGS Bioinformatics and More), Application (Chromosomal Abnormality Screening and More), Deployment (Cloud, and More), Workflow (Sample Accessioning, and More), End User (Hospitals and Health Systems and More), and Geography (North America and More).
The prenatal diagnostic software market benefits when non-invasive prenatal testing becomes a routine option rather than a specialist test. Guideline support and payer decisions have raised uptake in several developed health systems, increasing the number of test results that laboratories must process. Japan reported that women aged 35 years and older accounted for 30.4% of births in 2023, compared with 14% in 2003. This demographic shift increases demand for screening and creates a larger base of eligible patients. Per-sample software licensing can give laboratories recurring revenue as volumes rise. As testing reaches more average-risk pregnancies, the ability to manage high volumes efficiently becomes more important than serving only specialist high-risk cases.
AI-assisted ultrasound is addressing variation in how fetal images are captured and interpreted across care settings. A studyof AI methods for fetal ultrasound reported a pooled sensitivity of 0.84 and a specificity of 0.87 for intrauterine growth restriction detection. FetalCLIP was trained on 210,035 paired fetal ultrasound images and outperformed the tested baselines for gestational age estimation, congenital heart defect detection, and fetal structure segmentation. These tools can support less specialized obstetric settings where experienced maternal-fetal medicine staff are limited. The prenatal diagnostic software market can therefore reach clinics and community settings that previously relied on referrals for complex interpretation. Regulatory clearances and clinical validation remain central to adoption because providers need evidence that the tool can be safely incorporated into care.
Regulatory requirements can slow the introduction of prenatal software, especially for smaller developers. Under EU IVDR Regulation 2017/746, much prenatal testing software falls within Class C or D requirements that require notified body assessment. Legacy prenatal IVD manufacturers face final compliance deadlines of December 31, 2027 for Class III devices and December 31, 2028 for Class IIb devices. Quality management, laboratory accreditation, clinical validation, and post-market monitoring add further cost and time. BrightHeart received FDA approval for a predetermined change control plan in May 2025, which allows certain future model updates without separate submissions. These obligations favor well-funded suppliers and can limit the number of smaller vendors able to compete across regions.
Other drivers and restraints analyzed in the detailed report include:
For complete list of drivers and restraints, kindly check the Table Of Contents.
Integrated prenatal diagnostic platforms held 28.4% of the prenatal diagnostic software market share in 2025. Health systems use these platforms to bring sequencing intake, variant calling, risk scoring, and clinical reporting into a single environment. Integrated systems can make recurring enterprise licensing more predictable for suppliers. They also create switching costs once validated pipelines and audit trails become part of laboratory operations. Clinical reporting and decision support are increasingly delivered as modules within broader platforms. Workflow and care coordination functions follow the same pattern. This reduces the role of standalone point solutions in larger laboratory accounts. The prenatal diagnostic software market is consequently rewarding suppliers that can support the whole testing and reporting process.
Prenatal ultrasound analysis software is the fastest-growing product type, with a forecast CAGR of 13.8% through 2031. AI tools are moving from specialist research settings into routine obstetric practice as evidence and regulatory approvals accumulate. FetalCLIP illustrates this direction through a model built on paired fetal ultrasound images for several imaging tasks. Laboratory information management software remains necessary for sample tracking, quality control, and audit records. Prenatal-specific modules can include cfDNA quality checks and chain-of-custody functions. Genetic analysis software has a different role because it converts raw sequencing data into clinically useful variant calls. Basic chromosomal pipelines face more standardization, while single-gene workflows can retain higher value because of their greater analytical complexity.
NGS bioinformatics held 24.9% of revenue in 2025, making it the largest technology category. It provides the computational foundation for cfDNA-based non-invasive prenatal testing at scale. The growing range of sequenced panels is increasing both workload and clinical complexity. Single-gene disorders, copy-number variants, and multi-omics features require more advanced analysis than standard aneuploidy testing. The prenatal diagnostic software market relies on these pipelines to turn sequencing output into validated clinical information. Laboratories also need traceable versions and quality controls for their workflows. This makes the technology important to both routine volume testing and expanded clinical panels. Its role remains central as diagnostic scope broadens.
AI and machine learning are the fastest-growing technology categories, with a forecast CAGR of 13.6% through 2031. Its main uses include computer vision for structural anomaly detection and risk models that combine genomic, biometric, and maternal information. Research on AI-supported ultrasound has shown strong performance for growth restriction detection in controlled study settings. Rule-based clinical decision support still provides the guideline structure that regulators and payers expect. Computer vision can complement those systems in tasks that depend on image pattern recognition. Microarray and cytogenetic analysis software remains relevant for confirmatory testing and structural rearrangements. Multi-omics analytics is still developing, although it may become important for platforms that combine genomic, transcriptomic, and epigenomic data.
North America held 40.11% of global revenue in 2025, representing the largest regional prenatal diagnostic software market share. High NIPT use, CLIA-certified reference laboratories, and a flow of prenatal AI clearances support regional demand. Large laboratory networks also generate datasets used to develop and validate AI models. BrightHeart's predetermined change control plan approval in May 2025 gives an example of a U.S. pathway for defined post-clearance model updates.
Europe is the second-largest regional segment and is changing as IVDR obligations reshape supplier requirements. Class C and D prenatal IVD software requires a notified body assessment under the EU framework. Germany, France, and the United Kingdom have demand from national screening programs, private laboratories, and public hospitals. Italy and Spain move more slowly because procurement is divided across regional health authorities.
Asia-Pacific is the fastest-growing region, with a forecast CAGR of 14.1% through 2031. China is a key source of momentum through domestic approvals for prenatal AI devices and cost-competitive sequencing infrastructure. Kaili Medical received China's first approval for an AI prenatal ultrasound device in March 2025. Hangzhou SciDiagnostics received a Class III registration for AI chromosome karyotype analysis software in May 2026, with analysis time reported to fall from 34.42 minutes to 11.19 minutes. In Japan, women aged 35 years and older accounted for 30.4% of live births in 2023, while invasive amniocentesis fell from 16,454 cases in 2014 to 5,620 in 2023. India, South Korea, and Australia have support from private healthcare expansion, regulated IVD demand, and private insurance coverage.