Terumo SS8FMB74, NAGAREᵀᴹ Bi-Directional Steerable Sheath 8.8F, Compatible with Transseptal Needle 98cm

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SKU:
SS8FMB74
MPN:
SS8FMB74
  • Terumo SS8FMB74, NAGAREᵀᴹ Bi-Directional Steerable Sheath 8.8F, Compatible with Transseptal Needle 98cm
  • Terumo SS8FMB74, NAGAREᵀᴹ Bi-Directional Steerable Sheath 8.8F, Compatible with Transseptal Needle 98cm
  • Terumo SS8FMB74, NAGAREᵀᴹ Bi-Directional Steerable Sheath 8.8F, Compatible with Transseptal Needle 98cm
  • Terumo SS8FMB74, NAGAREᵀᴹ Bi-Directional Steerable Sheath 8.8F, Compatible with Transseptal Needle 98cm
$2,880.00
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Description

Terumo SS8FMB74,  NAGAREᵀᴹ Bi-Directional Steerable Sheath 8.8F, Compatible with Transseptal Needle 98cm

NAGAREᵀᴹ Steerable Sheath

PRODUCT CODE SIZE ID MAXIMUM GUIDE WIRE DIAMETER  USABLE LENGTH (cm) TOTAL LENGTH (cm)
SS8FMB74 8.8FR 0.032” 73.7 91.4

BETTER CONTROL IS AT YOUR COMMAND

Predictable control is imperative for the safety and efficacy of complex cardiac interventions. Using the Nagare™ steerable sheath will help accurately navigate all chambers of the heart with confidence.

  • Control

TruVector™ technology provides a full range of shaft rotation without the torque buildup, reducing whipping during sheath manipulation.

  • Precision

The sheath shaft does not bow during tip deflection, minimizing unintended movement and loss of distal tip position for more accurate transseptal puncture and catheter delivery.

  • Stability

Provides consistent and dependable contact force, so therapy can be delivered in areas that are difficult to reach.

TRUST IN TRUVECTOR™

Nagare™ is the first steerable sheath that does not depend on pull wires for tip deflection. This first-in-kind technology eliminates bowing of the sheath shaft during tip deflection and provides a stable platform with 1:1 torque response.

  • TruVector™ technology: The proprietary design with TruVector™ technology uses coaxial, free-moving shafts that are bonded at the distal tip and reinforced with Kevlar®.
  • Pull-wire technology: Other steerable sheaths on the market rely on traditional pull-wire systems for tip deflection, which may cause torque buildup, leading to abrupt sheath movement and loss of control. 

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