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Devices in Category: Cardiac Surgery Devices

HANCOCK MODIFIED ORIFICE (MO) VALVED CONDUIT MODEL 150

Description:

HANCOCK MODIFIED ORIFICE (MO) VALVED CONDUIT MODEL 150 by MEDTRONIC HEART VALVES

The Hancock Modified Orifice (MO) Valved Conduit Model 150 by Medtronic Heart Valves is a state-of-the-art medical device specifically designed for cardiac surgery applications, specifically during heart valve replacements.
Engineered for superior hemodynamic performance and exceptional durability, the Hancock MO Valved Conduit is constructed from specially treated and high strength porcine tissue. This makes it remarkably resistant to calcification while safeguarding its elasticity and natural performance.
Perhaps one of the most noteworthy features of Model 150 is its 'modified orifice' design. This effectively maximizes the orifice area, leading to a reduction in transvalvular pressure gradients. Consequently, it promotes enhanced flow characteristics and improved patient outcomes.
Moreover, the Hancock MO Valved Conduit is also equipped with a flexible Dacron conduit, which facilitates ease of implantation, offering surgeons and clinicians unmatched control during surgical procedures.
Key benefits include:

In essence, the Hancock MO Valved Conduit Model 150 embodies high-quality materials, progressive design, and groundbreaking technology. This conduit not only improves surgical outcomes but also significantly enhances the quality of life for patients post-surgery.

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HANCOCK II PORCINE BIOPROSTHESIS MODELS T505 ANF T510

Description:

Hancock II Porcine Bioprosthesis Models T505 and T510 by Medtronic Inc.

The Hancock II Porcine Bioprosthesis Models T505 and T510 are state-of-the-art products, brought to you by the reputable Medtronic Inc. These devices are primarily designed for use in cardiac surgery, specifically for heart valve replacement procedures.

The Hancock II Bioprosthesis is specially crafted from porcine heart tissue, making it an excellent and reliable choice for patients needing valve replacement surgery. The biocompatible construction encourages the recipient's body to accept the new valve, reducing the chance of adverse reactions and enhancing patient outcomes.

One of the critical benefits of these devices is their long-lasting durability. They are engineered to withstand the cardiovascular system's high-pressure environment, ensuring consistent and effective performance over time. The use of the Hancock II Bioprosthesis contributes significantly to improved patient mortality rates and an enhanced quality of life following surgery.

Lastly, the Models T505 and T510 specifically underscore the adaptability and versatility of the Hancock II range. They cover a variety of valve sizes, meeting the unique physiological needs of a diverse patient population and broadening the scope of suitable candidates for this life-changing procedure.

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