Help neonates breathe, sleep and grow with SERVO-n
Newborns should not have to start their lives battling for it. But some will, and the best we can do is help create an ideal environment for them to relax, sleep and grow
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Newborns should not have to start their lives battling for it. But some will, and the best we can do is help create an ideal environment for them to relax, sleep and grow
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The latest version of the WS80A ultrasound system with Elite is designed to provide superior image and exceptional productivity in workflow through highly useful features for women’s health. Its key enhancements include the S-Vue Transducer which delivers broader bandwidth and higher sensitivity in order to obtain more in-depth, higher image quality. Even patients with technically challenging cases can easily get scans with superb resolution. The system provides enhanced colour sensitivity in 3D and Doppler images and thanks to a 23′ Wide LED Screen it offers better colour representation and enhanced vision of ultrasound images for users. Extended 5D features enable higher efficiency and diagnostic confidence. 5D Heart semi-automatically obtains nine essential cardiac diagnostic planes to enable more intuitive, in-depth and accurate fetal screening based on STIC (Spatio-Temporal Image Correlation) data. 5D CNS (Central Nervous System) simplifies workflow and reduces scan time by extracting six biometric measurements from three transverse planes of a fetal brain as key indicators for quick fetal brain diagnosis. The system allows shared service for cardiovascular medicine and radiology (including pediatric, vascular, etc.).
The Hamilton-T1 with neonatal option is a high-end transport ventilator that provides the best possible ventilation therapy for the smallest and most vulnerable patients. During transport, the Hamilton -T1 delivers the same performance as a fully featured NICU ventilator at the bedside. Supporting tidal volumes of just 2 ml, the Hamilton -T1 uses a robust neonatal flow sensor that accurately measures pressure, volume, and flow proximal to the patient. This guarantees the required sensitivity and response time, and prevents dead space ventilation. Therefore, the patient is better synchronized and the work of breathing (WOB) is reduced. The new neonatal expiratory valve can balance even the smallest differences in pressure and offers the neonate the possibility to breathe spontaneously in each phase of a controlled breathing cycle. In addition to all modern neonatal ventilation modes, the Hamilton -T1 offers a new generation of nCPAP. In the new nCPAP-PC (pressure control) mode, only the desired CPAP target value for the patient is defined and the ventilator automatically and continuously adapts the required flow to the patient’s condition and possible leaks. Thanks to the demand flow technology, the patient will receive only as much flow as is necessary to obtain the set CPAP target. This reduces WOB, reduces the need for user interventions and ensures optimal leak compensation.
The AsCARD MrCoral is a digital ECG appliance supported by CardioTEKA software which serves for data processing and archiving of ECG waveforms in the full range of 12 leads. The appliance is connected via USB to a user’s PC or notebook. With its compact size and light weight it is convenient to use, especially during home visits. At the same time the on-line preview function allows for ongoing monitoring of the patient’s heart. The examination result is generated in pdf or KTeka format. The selected ECG records are printed on an external printer.
Now it has become easy to convert a notebook or a tablet PC into a powerful full-function ultrasound workstation
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MyDiagnostick is a new diagnostic device (MDD IIa) for the detection and diagnosis of AF. It generates a Lead I ECG which is automatically analysed for the presence of AF. MyDiagnostick is very easy to use, with no buttons to control or parameters to be set. When holding the handles (electrodes) it will automatically switch on and start the ECG recording. After only one minute, the AF outcome is displayed by MyDiagnostick turning either red: AF detected, or green: no AF detected. After use, the device will switch off automatically. It is able to record and store over 140 ECGs and thousands of measuring results. ECGs and results can be displayed and printed whenever MyDiagnostick is connected to a PC or a laptop by the USB cable provided. The current Holter- and event recorders use ECG skin electrodes and need careful setting, thus requiring medical personnel. Furthermore these systems do not have embedded AF detection algorithms, which means that AF episodes can only be determined afterwards. The device does not depend on any infrastructure to diagnose AF and therefore can be used anywhere, anytime, also at the patient’s home or at work. MyDiagnostick has a clinically proven sensitivity of 100% and specificity of 95.7%, which allows also the early detection of paroxysmal AF.
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The new SensPoint handheld lactate analyser is designed for professional use with built-in connectivity functions to hospital or lab information systems. The measuring time is only 10 seconds using 0.2 μl sample volume. The handheld analyser has a lightweight, ergonomic design and is highly accurate, offering excellent correlation to lab analysers. Its intuitive user interface utilizes a large high resolution colour display. The device also features an integrated barcode scanner. Results can be linked to operator ID, patient ID, time, date and LOT number of sensors, allowing traceability of users and eliminating use by untrained staff. Results are printable using a small external Bluetooth-enabled printer.
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The Pocket Pad is a handheld mobile computing platform designed especially for use in mobile healthcare and medical equipment applications such as EMR, BCMA/CLMA, CPOE, PACS and Mobile Workstation on Cart. It is a perfect extension of an existing hospital information system (HIS), and is ideal as a PDA as well. The Pocket Pad can be used as a handheld device, but can also be mounted to medical equipment and nursing carts. Durable and flexible, with an IP54-rating, it runs the latest Intel Ato Bay Trail-T processor and is certified for Microsoft Windows 8.1. The lightweight (400g) unit has an embedded 1D/2D barcode scanner, front and rear cameras, and a host of connectivity options. The device is easy to clean with anti-bacterial agents. It has been drop tested at 90 cm, ensuring reliability and continuous operation. The battery is quickly charged and provides 4-6 hours of uninterrupted use. Pocket Pad, small enough to fit in the hand, runs the latest Intel Atom Bay Trail-T processor and has a HD 7′ multi-touch, P-cap touchscreen. The Pocket Pad is equipped with a 1D/2D barcode scanner allowing easy identification, tracking and tracing of patients and medications throughout hospital stay. This safeguards against mistakes in medication dispensing and identification. The device incorporates a two megapixel front camera, and an 8 megapixel rear camera with auto-focus and flash, ideal for video conferencing. It has GPS for location-based applications, NFC, a microSD card slot, and HDMI and USB3.0 for practical use. The Pocket Pad is able to easily exchange data with a variety of HIS platforms in medical care facilities. Its ergonomic design includes a secure handstrap and stylus.
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With help from the SERVO-n ventilator, neonates can be supported noninvasively and the need for intubation reduced. Every breath the baby takes is determined by its own physiology. The ventilator provides synchronization with the baby’s irregular breathing pattern. It reduces the work of breathing, lowers peak pressures and FiO2, and potentially reduces the need for sedatives. More comfortable breathing means better opportunities for sleep. Improved comfort and reduced work of breathing may allow the baby to focus energy on growth and maturation of lungs and brain.
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The new Prime edition of the Acuson SC2000 cardiovascular imaging system is the first to offer live full-volume colour Doppler imaging of heart valve anatomy and blood-flow using a new true volume transesophageal echo (TEE) probe. With this technology, physicians can obtain a more anatomically authentic view of the heart and dynamic blood flow in one view during interventional valve procedures, even in patients with ECG abnormalities. This helps them to take faster and more accurate critical decisions. During 3D TEE imaging, the physician guides a flexible probe into the esophagus to acquire close-range, detailed pictures of the heart to assess valve function. When a dysfunctional valve leaks blood back into the heart chambers (known as regurgitation) or does not open properly to let through sufficient blood, a valve procedure may be necessary to repair or replace the valve with an artificial one. TEE is used to guide placement of devices such as mitraclips and artificial valves during cardiac interventions to correct valve dysfunction. Current methods of imaging with 3D TEE require stitching
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April 2024
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