
Boston Scientific MACH1 JR3.5 ST 6F Coronary Guiding Catheter | REF H749343566970
Boston Scientific MACH1 JR3.5 ST 6F coronary guiding catheter (REF H749343566970) engineered for stable, predictable coronary access during interventional procedures.

Boston Scientific MACH1 JR3.5 ST 6F coronary guiding catheter (REF H749343566970) engineered for stable, predictable coronary access during interventional procedures.

Boston Scientific MACH1 JR4 ST 6F coronary guiding catheter (REF H749343566980) engineered for predictable support and torque response during diagnostic and interventional coronary procedures.

Boston Scientific MACH1 JR3.5 ST 7F coronary guiding catheter (REF H749343576970) engineered for predictable coronary access, strong backup support and reliable torque response during interventional procedures.

Boston Scientific MACH1 JR4 ST 7F coronary guiding catheter (REF H749343576980), engineered for stable engagement of the right coronary artery during interventional procedures.

Boston Scientific MACH1 JR4 ST SH 7F single-lumen coronary guiding catheter (REF H749343577040), engineered to deliver predictable backup support, torque response and lumen integrity for percutaneous coronary interventions.

Boston Scientific MACH1 JR4 ST 8F coronary guiding catheter (REF H749343586980) engineered for predictable support and torque response during interventional coronary procedures.

Boston Scientific MACH1 JR4 ST SH 8F coronary guiding catheter (REF H749343587040) engineered for predictable backup support, torque response, and lumen integrity during interventional coronary procedures.

Boston Scientific MACH1 KL3 6F coronary guiding catheter (REF H749343566110) engineered for stable left coronary support and predictable torque response during percutaneous coronary interventions.

Boston Scientific MACH1 6F coronary guiding catheter, KL4 left coronary curve, REF H749343566120, designed for diagnostic and interventional coronary procedures.

Boston Scientific MACH1 7F coronary guiding catheter, KL3 curve (Left Kimny 3), REF H749343576110, designed to provide stable engagement and high backup support during percutaneous coronary interventions.

Boston Scientific MACH1 KL4 7F coronary guiding catheter (REF H749343576120) engineered for stable left coronary support and predictable torque response during interventional procedures.

Boston Scientific MACH1 KL4 8F coronary guiding catheter (REF H749343586120) engineered for predictable backup support and torque response during interventional coronary procedures.

Boston Scientific MACH1 KR3H 6F coronary guiding catheter (REF H749343566480), engineered for stable coronary cannulation and reliable device delivery during diagnostic and interventional procedures.

Boston Scientific MACH1 KR4H 6F coronary guiding catheter (REF H749343566490) engineered for reliable coaxial support, precise torque response, and consistent backup during coronary interventional procedures.

Boston Scientific MACH1 KR3H SH 6F coronary guiding catheter (REF H749343566510) engineered for predictable backup support, precise tip control, and efficient device delivery during percutaneous coronary interventions.

Boston Scientific MACH1 KR4H SH 6F coronary guiding catheter (REF H749343566520) designed for diagnostic and interventional coronary procedures with stable backup support and consistent torque response.

Boston Scientific MACH1 KR3S 6F coronary guiding catheter (REF H749343566540) engineered for stable coronary access and predictable torque response during interventional procedures.

Boston Scientific MACH1 KR4S 6F coronary guiding catheter (REF H749343566550) designed to provide stable support and consistent torque response during coronary interventional procedures.

Boston Scientific MACH1 KR3S SH 6F coronary guiding catheter (REF H749343566570) engineered for predictable backup support and precise coronary access during interventional procedures.

Boston Scientific MACH1 KR4S SH 6F single-lumen coronary guiding catheter (REF H749343566580) designed to support diagnostic and interventional access to the coronary ostia with predictable shape retention and smooth device delivery.