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philips bucky vision

Philips Medical Systems

Summary: The Philips Bucky Vision is a medical imaging device used primarily in radiology for diagnostic purposes. It is typically used by radiologists and technicians to perform X-ray imaging.

FDA Clearance Information

Pathway 510K
Decision Date November 24, 1998
Product Code MQB
Device Class Class 2
Evidence 419 studies

The Philips Bucky Vision was cleared through the FDA 510(k) pathway on November 24, 1998. Manufactured by Philips Medical Systems, it is classified as a Class 2 device under product code MQB.

What It Is

The Philips Bucky Vision is a radiographic system designed for capturing high-quality X-ray images. It employs advanced imaging technology to assist in the diagnosis of various medical conditions. The device is equipped with features that enhance image clarity and reduce patient exposure to radiation, making it a reliable tool in medical imaging.

Clinical Applications

This device is commonly used in hospital radiology departments and outpatient imaging centers. It is essential for performing routine X-ray examinations, including chest, abdominal, and skeletal imaging. Radiologists and radiologic technologists use it to diagnose fractures, infections, and other conditions across various patient demographics, from pediatrics to geriatrics.

Indications for Use

The FDA indications for the Philips Bucky Vision involve its use in diagnostic imaging to assist in the visualization of internal structures. It is suitable for patients requiring detailed X-ray examinations to diagnose or monitor medical conditions.

Practical Considerations

The Philips Bucky Vision is compatible with standard radiographic procedures and can be integrated into existing imaging workflows. It is important to ensure proper calibration and maintenance to optimize image quality and patient safety. Clinicians should be trained in its operation to maximize its diagnostic capabilities.

Linked Studies (20)

PubMed • 2025

Onyx Liquid Embolic Agent: Basic Knowledge for Its Use in Interventional Neuroradiology.

Journal of neuroendovascular therapy

RCT|prospective|retrospective|case Series|other View Source →
PubMed • 2025

Performance evaluation of quantitative hemoglobin A2 and fetal hemoglobin testing using commercially lyophilized vs. in-house whole blood controls in Chinese clinical laboratories: a 12-year analysis of National External Quality Assessment Data.

Clinical chemistry and laboratory medicine

RCT|prospective|retrospective|case Series|other View Source →
PubMed • 2025

Clinical progress note: Haemophilus influenzae type b.

Journal of hospital medicine

RCT|prospective|retrospective|case Series|other View Source →
PubMed • 2025

Pilot study of social media promotion of home-based self-testing for syphilis.

Sexually transmitted diseases

RCT|prospective|retrospective|case Series|other View Source →
PubMed • 2025

Clinical development and performance of the First to Know Syphilis Self-Test for over-the-counter usage: a de novo rapid test for treponemal antibody.

Journal of clinical microbiology

View Source →
PubMed • 2025

Implementation of an Opt-Out and Rapid Point-of-Care Syphilis Testing Program for Pregnant Patients Presenting to the Emergency Department.

Sexually transmitted diseases

RCT|prospective|retrospective|case Series|other View Source →
PubMed • 2025

Evaluation of Rapid Syphilis Testing Using the Syphilis Health Check in Florida, 2015-2016.

Florida public health review

View Source →
PubMed • 2025

Multiplex droplet digital PCR for the detection and quantitation of Streptococcus pneumoniae, Mycoplasma pneumoniae, and Haemophilus influenzae.

Frontiers in cellular and infection microbiology

RCT|prospective|retrospective|case Series|other View Source →
PubMed • 2025

Palm Multidiagnostic of Mycoplasma pneumoniae, Chlamydia pneumoniae, Haemophilus influenzae, and Streptococcus pneumoniae Using One-Tube CRISPR/Cas12a.

Transboundary and emerging diseases

View Source →
PubMed • 2025

Tp40: a new potential prognostic and diagnostic marker for syphilis.

Microbiology spectrum

View Source →
PubMed • 2025

Serotonin sets up neutrophil extracellular traps to promote neuroendocrine prostate cancer metastasis in the liver.

The Journal of clinical investigation

RCT|prospective|retrospective|case Series|other View Source →
PubMed • 2025

Application value of Philips Ingenuity TF PET/CT scanner imaging agent FAP in evaluating renal fibrosis.

Hellenic journal of nuclear medicine

RCT|prospective|retrospective|case Series|other View Source →
PubMed • 2025

Message from Dr. Philippe T. Georgel, Guest Editor for the Marshall University Collection, Brad D. Smith, President of Marshall University, and Dr. Anivandan Mukherjee, Provost of Marshall University.

Biochemistry and cell biology = Biochimie et biologie cellulaire

View Source →
PubMed • 2025

Editorial - Philippe Ascher (1936-2022).

Neuroscience

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PubMed • 2025

Improved patient comfort and procedural efficiency using chlorhexidine-coated hydrophilic urethral catheters: a randomized controlled trial.

Journal of Yeungnam medical science

RCT View Source →
PubMed • 2025

pTx-Pulseq in hybrid sequences: Accessible and advanced hybrid open-source MRI sequences on Philips scanners.

Magnetic resonance in medicine

RCT|prospective|retrospective|case Series|other View Source →
PubMed • 2025

Comparative connectomics of Drosophila descending and ascending neurons.

Nature

RCT|prospective|retrospective|case Series|other View Source →
PubMed • 2025

Hydrophilic-coated sheaths for reducing radial artery spasm during transradial procedures: A systematic review and meta-analysis.

Interventional neuroradiology : journal of peritherapeutic neuroradiology, surgical procedures and related neurosciences

View Source →
PubMed • 2025

History of antineutrophil cytoplasmic autoantibodies : Milestones in rheumatology.

Zeitschrift fur Rheumatologie

View Source →
PubMed • 2025

A Hydrophilic Polyurethane Foam Containing Nigella sativa Oil as a Wound Dressing.

BioMed research international

RCT|prospective|retrospective|case Series|other View Source →

Frequently Asked Questions

What is Philips Bucky Vision used for?

The Philips Bucky Vision is used for capturing high-quality X-ray images for diagnostic purposes in medical settings.

What specialties typically use this device?

Radiologists and radiologic technologists typically use this device in hospital radiology departments and outpatient imaging centers.

What are the FDA-cleared indications?

The device is indicated for use in diagnostic imaging to assist in visualizing internal structures for medical diagnosis.

Disclaimer: This page compiles publicly available regulatory and published clinical evidence for educational reference. It does not constitute medical advice, product endorsement, or a recommendation for clinical use. Always consult manufacturer documentation and clinical judgment for patient care decisions.

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