Clinical Diagnosis Automation

Clinical diagnosis automation is the use of computational systems to support or perform parts of the process of identifying diseases and health conditions from clinical data. These systems process information such as symptoms, medical images, laboratory results, and electronic health records, using rule-based logic or machine-learning models to detect patterns, estimate diagnostic probabilities, and present decision support to clinicians. In engineering, the field combines software development, data science, biomedical signal processing, and human-centered design to build reliable tools for screening, triage, and clinical workflow support. Proper validation, interpretability, privacy, and oversight are essential for safe integration and equitable patient care.

Clinical Diagnosis Automation - Related Videos

Research

JoVE Journal - Immunology and Infection

Automated Cell Enrichment of Cytomegalovirus-specific T cells for Clinical Applications using the Cytokine-capture System

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Cited by 23 •

2015

The goal of this protocol is to manufacture pathogen-specific clinical-grade T cells using a bench-top, automated, second generation cell enrichment device that incorporates a closed cytokine capture system and does not require dedicated staff or use of a GMP facility. The cytomegalovirus pp65-specific-T cells generated can be directly administered to patients.

Education

JoVE Core - Pathophysiology

Type II Diabetes Mellitus III: Clinical Manifestations and Diagnosis

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2026

Type 2 diabetes mellitus develops gradually and is often asymptomatic in early stages.Clinical ManifestationsWhen symptoms appear, they include fatigue, blurred vision, pruritus, delayed wound healing, and recurrent infections, particularly candidal infections. Peripheral neuropathy may present as numbness or tingling in the extremities. Classic hyperglycemia symptoms—polyuria, polydipsia, and polyphagia—are less common. Most patients are overweight and frequently have associated hypertension...

Research

JoVE Journal - Medicine
Free Sample

FISH for Pre-implantation Genetic Diagnosis

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Cited by 17 •

2011

This article describes the selection of suitable probes for single-cell FISH, spreading techniques for blastomere nuclei, and in situ hybridization and signal scoring, applied to pre-implantation genetic diagnosis (PGD) in a clinical setting.

Diagnosis of Musculus Gastrocnemius Tightness - Key Factors for the Clinical Examination

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Cited by 12 •

2016

Isolated Musculus gastrocnemius tightness is a common cause for foot and ankle pathologies. Currently no standardized examination procedure exists. This manuscript demonstrates that 20 degree of knee flexion eliminates the restraining effect of the M. gastrocnemius on ankle dorsiflexion and presents a video description of a standardized examination protocol.

High-throughput, Automated Extraction of DNA and RNA from Clinical Samples using TruTip Technology on Common Liquid Handling Robots

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Cited by 13 •

2013

TruTip is a simple nucleic acid extraction technology whereby a porous, monolithic binding matrix is inserted into a pipette tip. Consequently, the sample preparation format is compatible with most liquid handling instruments, and can be used for many medium to high-throughput clinical applications and sample types.

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