Philips C9-2: Versatile ultrasound probe with Broadband and PureWave technology
The Philips C9-2 ultrasound probe truly embodies excellence in the field of medical imaging. Its development is based on cutting-edge technology, combining Broadband and PureWave, to offer remarkable performance meeting the requirements of healthcare professionals in a multitude of clinical applications. Featuring 192 ultrasonic elements and a frequency range of 9 to 2 MHz, this probe ensures exceptional image quality that transcends expectations.
Thanks to this unrivaled precision, practitioners can carry out precise diagnoses and effective interventions, thus enabling optimal patient care. Whether for obstetrical or gynecological examinations, or pediatric and adult abdominal examinations, the Philips C9-2 probe stands out for its ability to visualize anatomical structures with unparalleled sharpness and clarity.
The advanced technology embedded in this probe also ensures optimal versatility, with a range of imaging modes such as 2D mode, Color Doppler and SonoCT mode, providing flexibility to suit a variety of clinical situations.
Thanks to its curved array and its 53.76 mm aperture, the Philips C9-2 probe offers a remarkably wide field of view of 102°, thus opening a detailed window on anatomical structures. This innovative design allows practitioners to precisely explore target areas, providing unprecedented visualization of internal tissues and organs.
The multiple modes available further enrich the imaging experience. Whether in 2D mode for standard visualization, in color Doppler mode to assess blood flow, or in SonoCT mode for more detailed, real-time imaging, the C9-2 probe offers unparalleled versatility to meet the specific needs of each patient.
The flexibility offered by these different modes allows practitioners to adapt their approach according to clinical indications, thus ensuring precise diagnoses and personalized care. By combining advanced ergonomic design with cutting-edge technology, the C9-2 probe redefines the standards of ultrasound imaging, providing healthcare professionals with a powerful tool to explore and understand the human body with exceptional clarity and precision.
The Philips C9-2 probe is particularly suitable for obstetric and gynecological applications, providing essential precision and reliability for pregnancy monitoring and gynecological ultrasounds. Additionally, it is ideal for pediatric and adult abdominal examinations, thanks to its ability to produce high-quality images even in areas that are difficult to visualize.
The Philips C9-2 probe represents a significant advancement in the field of ultrasound-guided medical interventions. Thanks to its integrated biopsy capability, it offers practitioners the ability to perform invasive procedures with exceptional precision, directly under ultrasound guidance. This feature significantly reduces the risks associated with procedures by allowing doctors to precisely target areas of interest, minimizing damage to surrounding tissues and improving patient outcomes.
Additionally, the C9-2 probe is equipped with advanced features such as image fusion technology. This innovation enables precise navigation during procedures by merging ultrasound imaging data with other imaging modalities such as MRI or CT. By combining this information, practitioners can visualize in real time the exact position of the medical tool in relation to surrounding anatomical structures, facilitating safer and more effective interventions.
The ergonomic design of the probe ensures optimal comfort for practitioners during prolonged examinations, helping to improve procedural efficiency and patient satisfaction. Additionally, its compatibility with Philips ultrasound systems ensures seamless integration into existing clinical environments.
The Philips C9-2 ultrasound probe represents an exceptional choice for healthcare professionals looking for a versatile, precise and reliable solution for their medical imaging needs. With its cutting-edge performance and innovative design, it meets the highest diagnostic and intervention requirements.