MRI scans are non-invasive tests that use high magnetic fields and radio waves to show the inside of the body in detail into images. MRI scans do not emit radiation, so they are suitable for physical examination, diagnosis and follow-up of most parts of the human body, including the musculoskeletal and nervous systems.
An MRI machine or scanner uses a powerful magnet and radio waves linked to a computer to create remarkably clear and detailed cross sectional images of the body. To visualize an MRI, think of your body as a loaf of bread with its many slices.
The MRI allows the physician to see many different “slices” of a body part by taking pictures from outside the body. The “slices” can be displayed on a video monitor and saved on film or disk for analysis. MRI can be used to view, monitor, or diagnose spine, joint or muscle problems, abdominal tumors and disorders, brain tumors and abnormalities, breast cancer, heart or blood vessel problems.
Magnetic resonance is based on the use of high magnetic fields and radio waves to cause the hydrogen nuclei (protons) in the body to generate a signal. Protons can be found in water molecules, and the human body is made of large amounts of water molecules. MRI images are generated by computer operations from these signals.
The image quality, speed and examination accuracy are superior to those in the past. At the same time, it can improve the accuracy and repeatability of inspection, and optimize the inspection process (Dot engine). The head is outside the fuselage to reduce claustrophobia. The new technology can also reduce the noise of some inspections by 70 percent, further optimizing the inspection environment.
Product Details:
| Minimum Order Quantity | 1 Piece |
| Category | Diagnostic |
The Siemens Magnetom Amira 1.5T MRI Scanner is a state-of-the-art magnetic resonance imaging (MRI) system designed for high-quality imaging and patient comfort. Here's an overview of its features and functionalities:
1. 1.5 Tesla Magnet: The Magnetom Amira features a powerful 1.5 Tesla superconducting magnet, which generates a strong magnetic field to produce high-resolution images of the human body. The magnet's strength ensures excellent image quality and diagnostic accuracy across a wide range of clinical applications.
2. Tim 4G Gradients: The system is equipped with Tim 4G (Total Imaging Matrix) gradients, which provide fast and efficient gradient performance for accelerated imaging sequences. These gradients enable rapid image acquisition and reduced scan times, enhancing patient throughput and workflow efficiency.
3. Quiet Suite Technology: Siemens' Quiet Suite technology is designed to reduce scanner noise levels during MRI examinations, providing a more comfortable and less stressful experience for patients. This technology minimizes acoustic noise generated by gradient switching and RF coil operation, improving patient satisfaction and compliance.
4. High-density Coil Technology: The Magnetom Amira incorporates high-density RF coil technology, including Siemens' FlexCoil and Flex Large coils, which optimize signal reception and image quality for a wide range of anatomical regions and imaging applications. These coils provide excellent coverage and sensitivity, allowing for detailed visualization of anatomical structures.
5. Tim 4G Dockable Table: The system features a Tim 4G Dockable Table with a patient-friendly design that enhances comfort and accessibility during MRI examinations. The table is compatible with various patient positioning aids and accessories, facilitating optimal patient positioning and image quality.
6. eMode Technology: Siemens' eMode technology is designed to optimize system performance and energy efficiency during MRI examinations. By automatically adjusting system parameters and power consumption based on scan requirements, eMode helps reduce energy costs and environmental impact while maintaining high-quality imaging results.
7. Syngo MR XA Integrated Workflow: The Magnetom Amira is equipped with Siemens' Syngo MR XA software platform, which provides an integrated workflow solution for image acquisition, processing, and analysis. Syngo MR XA offers advanced imaging protocols, post-processing tools, and visualization techniques to support efficient and accurate diagnosis.
8. Advanced Imaging Applications: The system supports a wide range of advanced imaging applications, including neuroimaging, musculoskeletal imaging, cardiac imaging, breast imaging, abdominal imaging, and angiography. It offers versatile imaging protocols and sequences tailored to specific clinical needs, allowing for comprehensive diagnostic evaluations.
Overall, the Siemens Magnetom Amira 1.5T MRI Scanner is a versatile and advanced imaging system that offers high-quality imaging capabilities, patient comfort features, and workflow enhancements. Its innovative technologies and user-friendly design make it well-suited for a wide range of clinical applications in diagnostic imaging centers, hospitals, and healthcare facilities.
The Siemens MAGNETOM Verio 3T MRI system is a high-field magnetic resonance imaging (MRI) scanner designed for advanced imaging capabilities and clinical versatility. Here are the specifications and key features of the MAGNETOM Verio 3T MRI system:
1. Magnet Strength: The MAGNETOM Verio features a 3 Tesla (3T) superconducting magnet, which generates a high magnetic field for superior signal-to-noise ratio and image quality.
2. Gradient System: The system is equipped with advanced gradient coils for rapid and efficient image acquisition. Gradient strength and slew rate specifications contribute to fast imaging protocols and reduced scan times.
3. Tim (Total Imaging Matrix) Technology: Siemens' Tim technology provides a comprehensive imaging solution with integrated coil technology and parallel imaging techniques. Tim technology enables high-resolution imaging, increased patient throughput, and flexible coil configurations.
4. Tim 4G Gradients: The MAGNETOM Verio utilizes Tim 4G gradients for improved gradient performance and faster image acquisition. Tim 4G gradients offer high gradient strength and efficiency, enabling advanced imaging techniques such as diffusion-weighted imaging (DWI) and functional MRI (fMRI).
5. Quiet Suite Technology: Siemens' Quiet Suite technology minimizes acoustic noise levels during MRI examinations, enhancing patient comfort and compliance. Quiet Suite technology reduces scanner noise during gradient switching and RF coil operation, creating a more pleasant MRI experience for patients.
6. High-density Coil Technology: The MAGNETOM Verio is equipped with high-density RF coil technology, including Siemens' FlexCoil and Flex Large coils. These coils provide excellent signal reception and sensitivity, optimizing image quality for various anatomical regions and clinical applications.
7. Advanced Imaging Applications: The system supports a wide range of advanced imaging applications, including neuroimaging, musculoskeletal imaging, cardiac imaging, abdominal imaging, breast imaging, and angiography. It offers versatile imaging protocols and sequences for comprehensive diagnostic evaluations.
8. syngo MR E11 Software Platform: The MAGNETOM Verio utilizes Siemens' syngo MR E11 software platform, which provides an intuitive user interface and advanced image processing capabilities. Syngo MR E11 offers streamlined workflow solutions, post-processing tools, and visualization techniques for efficient and accurate diagnosis.
9. Patient Comfort Features: The MAGNETOM Verio incorporates patient comfort features such as a wide bore design, soft table padding, and in-bore entertainment options to enhance the patient experience during MRI examinations. These features help minimize patient anxiety and claustrophobia while maximizing comfort and compliance.
Overall, the Siemens MAGNETOM Verio 3T MRI system offers advanced imaging capabilities, patient comfort features, and workflow enhancements for a wide range of clinical applications. Its high-field magnet strength, gradient performance, coil technology, and software platform make it a versatile and powerful imaging solution for diagnostic imaging centers, hospitals, and healthcare facilities.
Additional Information:
The refurbished Siemens MAGNETOM Espree 1.5T MRI scanner includes an ultrashort 170cm and wide open 70cm bore. The Siemens MAGNETOM Espree 1.5T MRI machine can hold up to 550lbs on the table in horizontal and vertical movements. Combined with its 70cm bore, this is a system that works well for larger patients.
The Espree 1.5 Tesla MRI incorporates Siemens’ popular “Tim” technology (Total Imaging Matrix) It is an open bore MRI system that allows a new level of comfort for your patients. This system has an opening of almost 2.3 feet in diameter to provide a full foot of space over the patient’s head. Its short bore enables physicians to perform exams with their patient’s head completely outside the magnet which provides benefits for claustrophobic patients.
The Magnetom Espree 1.5T by Siemens comes equipped with the shortest 1.5 Tesla magnet that is available. It can perform advanced clinical applications and comes equipped with the Tim Technology (Total Imaging Matrix) that delivers high quality imaging and reduced exam times. With the Tim Technology, whole body scans can be performed in one single pass. It also enables flexible coil combinations to encompass local high resolution imaging to large anatomical coverage.
Product Details:
| Minimum Order Quantity | 1 Piece |
| Brand | Alltech |
| Model Name/Number | EchoStar 1.5T |
| Magnetic Strength | 1.5 Tesla (T) |
| Machine Condition | Refurbished |
| Machine Type | Closed |
| Bore Size | 70 cm |
| Max. Amplitude | 33 mT/m |
| Max. Slew Rate | 120 T/m/s |
| Patient Weights | Up to 550 lbs |
Alltech MRI, the most cost-effective wide bore MRI system in the world to the Indian market. The system is designed and manufactured with all core technologies in house. It delivers an excellent user experience by affordable cost of ownership (30 to 40% economical than others) clinical versatility, enhanced process efficiency and ease-of-use.
The AMSA Comfort features a zero-boil-off magnet, a 71 cm patient aperture and a 550 lb. patient transport system. With ten years of experience in the global MRI market and more than 250 high field systems installed, Alltech is poised to grow significant share in the Indian market with this product.
Whether you are looking for your first MRI system, or you want to enhance the comprehensive diagnostic capabilities of your facility by replacing aging MRI, EchoStar 1.5T MRI is your best choice.Product Details:
| Brand | GE |
| Model Name/Number | Discovery |
| Magnetic Strength | 3 Tesla (T) |
| Machine Condition | Refurbished |
| Machine Type | Closed |
| Bore Size | 60 cm |
| Max. Amplitude | 50 mT/m |
| Max. Slew Rate | 200 T/m/s |
This MRI system is equipped with a broad range of coils, for use in neurological, musculoskeletal and vascular research fields.
Product Details:
| Minimum Order Quantity | 1 Piece |
| Brand | Teleflex |
| Category | Diagnostic |
| Is It LCD Display | LCD Display |
The Philips Ingenia 1.5T MRI Scanner is an advanced magnetic resonance imaging (MRI) system designed for high-quality imaging, patient comfort, and operational efficiency. Here are the specifications and key features of the Philips Ingenia 1.5T MRI Scanner:
1. Magnet Strength: The Ingenia 1.5T MRI system features a 1.5 Tesla (1.5T) superconducting magnet, which generates a strong and uniform magnetic field for high-resolution imaging.
2. dStream Digital Broadband Technology: Philips' dStream technology is designed to enhance signal-to-noise ratio (SNR) and image quality by digitizing the MR signal directly at the patient. This technology enables fast and efficient imaging with excellent image clarity and detail.
3. dS Gradient System: The system is equipped with the dS gradient system, which provides high-performance gradient performance for accelerated imaging sequences and reduced scan times. The dS gradient system enables advanced imaging techniques such as diffusion-weighted imaging (DWI), functional MRI (fMRI), and diffusion tensor imaging (DTI).
4. dS Sense Parallel Imaging: Philips' dS Sense parallel imaging technology allows for faster image acquisition and improved spatial resolution by reducing the number of phase-encoding steps. This enables shorter scan times and increased patient throughput while maintaining image quality.
5. Ambient Experience: The Ingenia 1.5T MRI Scanner features Philips' Ambient Experience technology, which is designed to enhance the patient experience during MRI examinations. Ambient Experience incorporates lighting, projection, and sound to create a relaxing and immersive environment, reducing patient anxiety and improving comfort.
6. MultiTransmit RF Technology: Philips' MultiTransmit RF technology optimizes RF transmission and reception to improve image uniformity and signal homogeneity across different anatomical regions. This technology helps ensure consistent image quality and diagnostic accuracy for a wide range of clinical applications.
7. FlexCoverage Posterior Coil: The system includes Philips' FlexCoverage posterior coil, which provides wide anatomical coverage and high signal-to-noise ratio for imaging of the spine and posterior regions. The FlexCoverage coil design enhances image quality and diagnostic confidence for spine imaging studies.
8. mDIXON XD: The Ingenia 1.5T MRI Scanner features mDIXON XD technology, which enables robust fat suppression and water-fat separation for improved tissue contrast and visualization. mDIXON XD helps enhance diagnostic accuracy in musculoskeletal, abdominal, and breast imaging studies.
9. In-Bore Connectivity: The system offers in-bore connectivity options for audio and visual entertainment, allowing patients to listen to music or watch videos during MRI examinations. In-bore entertainment helps distract patients and reduce anxiety, improving overall patient comfort and compliance.
Overall, the Philips Ingenia 1.5T MRI Scanner offers advanced imaging capabilities, patient comfort features, and workflow enhancements for a wide range of clinical applications. Its high-field magnet strength, digital broadband technology, parallel imaging capabilities, and patient-friendly design make it a versatile and powerful imaging solution for diagnostic imaging centers, hospitals, and healthcare facilities.
Product Details:
| Minimum Order Quantity | 1 Piece |
| Brand | GE |
| Magnetic Strength | 1.5 Tesla (T) |
| Machine Condition | Refurbished |
| Machine Type | Closed |
Additional Information:
Diagnostic Monitor provides accurate picture quality for professional diagnosis and decisions Hospitals require medical monitors for various specialized uses. Diagnostic monitors in particular offer high resolution image quality for precise diagnosis. Also they need to guarantee the utmost brightness to help doctors discern even the finest detail on patients’ medical images. Furthermore an internal calibration sensor automatically provides the medical images with stable image quality. Remote & Self calibration delivers consistent medical images without the need for adjustments. All of these elements support more professional decision making, enhancing diagnostic confidence and workflow.
Clinical Monitor: Most general monitors are used as hospital monitors for clinical review. However, high-end monitors are preferred by professors of radiology for precise diagnoses. Because it is costly for hospitals to install high-end monitors throughout the entire hospital, monitors for general purposes have been also used for clinical purposes.
But there is a trend toward medical monitors compliant to DICOM Part 14 that can offer consistent grayscale among monitors so that doctors can double-check data based on accurate medical images. Clinical review monitors are typically used for checking medical images, referral or other activities supporting diagnosis.
Surgical Monitor used in the surgical operating room, there is a move toward minimally invasive surgery, atleast in certainr outine procedures. Surgeons want to know that procedures can be completed accurately. And that’s wheret technology can help.4K/FHD displays, while becoming more commonplace in the home and cinema, are now coming to the operating room.