ICD-10-CM/PCS MS-DRG v42.0 Definitions Manual

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MDC 21 Injuries, poisonings and toxic effects of drugs
Other O.R. procedures for injuries
Page 75 of 75

OPERATING ROOM PROCEDURES (continued)

0YUV07ZSupplement Right 4th Toe with Autologous Tissue Substitute, Open Approach
0YUV0JZSupplement Right 4th Toe with Synthetic Substitute, Open Approach
0YUV0KZSupplement Right 4th Toe with Nonautologous Tissue Substitute, Open Approach
0YUV47ZSupplement Right 4th Toe with Autologous Tissue Substitute, Percutaneous Endoscopic Approach
0YUV4JZSupplement Right 4th Toe with Synthetic Substitute, Percutaneous Endoscopic Approach
0YUV4KZSupplement Right 4th Toe with Nonautologous Tissue Substitute, Percutaneous Endoscopic Approach
0YUW07ZSupplement Left 4th Toe with Autologous Tissue Substitute, Open Approach
0YUW0JZSupplement Left 4th Toe with Synthetic Substitute, Open Approach
0YUW0KZSupplement Left 4th Toe with Nonautologous Tissue Substitute, Open Approach
0YUW47ZSupplement Left 4th Toe with Autologous Tissue Substitute, Percutaneous Endoscopic Approach
0YUW4JZSupplement Left 4th Toe with Synthetic Substitute, Percutaneous Endoscopic Approach
0YUW4KZSupplement Left 4th Toe with Nonautologous Tissue Substitute, Percutaneous Endoscopic Approach
0YUX07ZSupplement Right 5th Toe with Autologous Tissue Substitute, Open Approach
0YUX0JZSupplement Right 5th Toe with Synthetic Substitute, Open Approach
0YUX0KZSupplement Right 5th Toe with Nonautologous Tissue Substitute, Open Approach
0YUX47ZSupplement Right 5th Toe with Autologous Tissue Substitute, Percutaneous Endoscopic Approach
0YUX4JZSupplement Right 5th Toe with Synthetic Substitute, Percutaneous Endoscopic Approach
0YUX4KZSupplement Right 5th Toe with Nonautologous Tissue Substitute, Percutaneous Endoscopic Approach
0YUY07ZSupplement Left 5th Toe with Autologous Tissue Substitute, Open Approach
0YUY0JZSupplement Left 5th Toe with Synthetic Substitute, Open Approach
0YUY0KZSupplement Left 5th Toe with Nonautologous Tissue Substitute, Open Approach
0YUY47ZSupplement Left 5th Toe with Autologous Tissue Substitute, Percutaneous Endoscopic Approach
0YUY4JZSupplement Left 5th Toe with Synthetic Substitute, Percutaneous Endoscopic Approach
0YUY4KZSupplement Left 5th Toe with Nonautologous Tissue Substitute, Percutaneous Endoscopic Approach
X0HK3Q8Insertion of Neurostimulator Lead into Sphenopalatine Ganglion, Percutaneous Approach, New Technology Group 8
X0HQ3R8Insertion of Neurostimulator Lead with Paired Stimulation System into Vagus Nerve, Percutaneous Approach, New Technology Group 8
X27H385Dilation of Right Femoral Artery with Sustained Release Drug-eluting Intraluminal Device, Percutaneous Approach, New Technology Group 5
X27H395Dilation of Right Femoral Artery with Two Sustained Release Drug-eluting Intraluminal Devices, Percutaneous Approach, New Technology Group 5
X27H3B5Dilation of Right Femoral Artery with Three Sustained Release Drug-eluting Intraluminal Devices, Percutaneous Approach, New Technology Group 5
X27H3C5Dilation of Right Femoral Artery with Four or More Sustained Release Drug-eluting Intraluminal Devices, Percutaneous Approach, New Technology Group 5
X27J385Dilation of Left Femoral Artery with Sustained Release Drug-eluting Intraluminal Device, Percutaneous Approach, New Technology Group 5
X27J395Dilation of Left Femoral Artery with Two Sustained Release Drug-eluting Intraluminal Devices, Percutaneous Approach, New Technology Group 5
X27J3B5Dilation of Left Femoral Artery with Three Sustained Release Drug-eluting Intraluminal Devices, Percutaneous Approach, New Technology Group 5
X27J3C5Dilation of Left Femoral Artery with Four or More Sustained Release Drug-eluting Intraluminal Devices, Percutaneous Approach, New Technology Group 5
X2CP3T7Extirpation of Matter from Abdominal Aorta using Computer-aided Mechanical Aspiration, Percutaneous Approach, New Technology Group 7
X2CS3T7Extirpation of Matter from Right Lower Extremity Artery using Computer-aided Mechanical Aspiration, Percutaneous Approach, New Technology Group 7
X2CT3T7Extirpation of Matter from Left Lower Extremity Artery using Computer-aided Mechanical Aspiration, Percutaneous Approach, New Technology Group 7
X2CY3T7Extirpation of Matter from Great Vessel using Computer-aided Mechanical Aspiration, Percutaneous Approach, New Technology Group 7
X2H13R9Insertion of Intraluminal Device, Bioprosthetic Valve into Superior Vena Cava, Percutaneous Approach, New Technology Group 9
X2H20R9Insertion of Intraluminal Device, Bioprosthetic Valve into Right Femoral Vein, Open Approach, New Technology Group 9
X2H30R9Insertion of Intraluminal Device, Bioprosthetic Valve into Left Femoral Vein, Open Approach, New Technology Group 9
X2KB317Bypass Right Radial Artery using Thermal Resistance Energy, Percutaneous Approach, New Technology Group 7
X2KC317Bypass Left Radial Artery using Thermal Resistance Energy, Percutaneous Approach, New Technology Group 7
X2RX0N7Replacement of Thoracic Aorta, Arch using Branched Synthetic Substitute with Intraluminal Device, Open Approach, New Technology Group 7
X2U4079Supplement Coronary Artery/Arteries with Vein Graft Extraluminal Support Device(s), Open Approach, New Technology Group 9
X2UQ0P9Supplement Right Upper Extremity Vein with Synthetic Substitute, Extraluminal Support Device, Open Approach, New Technology Group 9
X2UR0P9Supplement Left Upper Extremity Vein with Synthetic Substitute, Extraluminal Support Device, Open Approach, New Technology Group 9
X2VW0N7Restriction of Thoracic Aorta, Descending using Branched Synthetic Substitute with Intraluminal Device, Open Approach, New Technology Group 7
XNH6058Insertion of Internal Fixation Device with Tulip Connector into Right Pelvic Bone, Open Approach, New Technology Group 8
XNH6358Insertion of Internal Fixation Device with Tulip Connector into Right Pelvic Bone, Percutaneous Approach, New Technology Group 8
XNH7058Insertion of Internal Fixation Device with Tulip Connector into Left Pelvic Bone, Open Approach, New Technology Group 8
XNH7358Insertion of Internal Fixation Device with Tulip Connector into Left Pelvic Bone, Percutaneous Approach, New Technology Group 8
XNR80D9Replacement of Skull with Ultrasound Penetrable Synthetic Substitute, Open Approach, New Technology Group 9
XNRL099Replacement of Right Tarsal with Talar Prosthesis Synthetic Substitute, Open Approach, New Technology Group 9
XNRM099Replacement of Left Tarsal with Talar Prosthesis Synthetic Substitute, Open Approach, New Technology Group 9
XNS0032Reposition of Lumbar Vertebra using Magnetically Controlled Growth Rod(s), Open Approach, New Technology Group 2
XNS00C7Reposition of Lumbar Vertebra using Posterior (Dynamic) Distraction Device, Open Approach, New Technology Group 7
XNS0332Reposition of Lumbar Vertebra using Magnetically Controlled Growth Rod(s), Percutaneous Approach, New Technology Group 2
XNS03C7Reposition of Lumbar Vertebra using Posterior (Dynamic) Distraction Device, Percutaneous Approach, New Technology Group 7
XNS3032Reposition of Cervical Vertebra using Magnetically Controlled Growth Rod(s), Open Approach, New Technology Group 2
XNS3332Reposition of Cervical Vertebra using Magnetically Controlled Growth Rod(s), Percutaneous Approach, New Technology Group 2
XNS4032Reposition of Thoracic Vertebra using Magnetically Controlled Growth Rod(s), Open Approach, New Technology Group 2
XNS40C7Reposition of Thoracic Vertebra using Posterior (Dynamic) Distraction Device, Open Approach, New Technology Group 7
XNS4332Reposition of Thoracic Vertebra using Magnetically Controlled Growth Rod(s), Percutaneous Approach, New Technology Group 2
XNS43C7Reposition of Thoracic Vertebra using Posterior (Dynamic) Distraction Device, Percutaneous Approach, New Technology Group 7
XNU0356Supplement Lumbar Vertebra with Mechanically Expandable (Paired) Synthetic Substitute, Percutaneous Approach, New Technology Group 6
XNU4356Supplement Thoracic Vertebra with Mechanically Expandable (Paired) Synthetic Substitute, Percutaneous Approach, New Technology Group 6
XRGA0R7Fusion of Thoracolumbar Vertebral Joint using Custom-Made Anatomically Designed Interbody Fusion Device, Open Approach, New Technology Group 7
XRGA3R7Fusion of Thoracolumbar Vertebral Joint using Custom-Made Anatomically Designed Interbody Fusion Device, Percutaneous Approach, New Technology Group 7
XRGA4R7Fusion of Thoracolumbar Vertebral Joint using Custom-Made Anatomically Designed Interbody Fusion Device, Percutaneous Endoscopic Approach, New Technology Group 7
XRGB0R7Fusion of Lumbar Vertebral Joint using Custom-Made Anatomically Designed Interbody Fusion Device, Open Approach, New Technology Group 7
XRGB3R7Fusion of Lumbar Vertebral Joint using Custom-Made Anatomically Designed Interbody Fusion Device, Percutaneous Approach, New Technology Group 7
XRGB4R7Fusion of Lumbar Vertebral Joint using Custom-Made Anatomically Designed Interbody Fusion Device, Percutaneous Endoscopic Approach, New Technology Group 7
XRGC0R7Fusion of 2 or more Lumbar Vertebral Joints using Custom-Made Anatomically Designed Interbody Fusion Device, Open Approach, New Technology Group 7
XRGC3R7Fusion of 2 or more Lumbar Vertebral Joints using Custom-Made Anatomically Designed Interbody Fusion Device, Percutaneous Approach, New Technology Group 7
XRGC4R7Fusion of 2 or more Lumbar Vertebral Joints using Custom-Made Anatomically Designed Interbody Fusion Device, Percutaneous Endoscopic Approach, New Technology Group 7
XRGD0R7Fusion of Lumbosacral Joint using Custom-Made Anatomically Designed Interbody Fusion Device, Open Approach, New Technology Group 7
XRGD3R7Fusion of Lumbosacral Joint using Custom-Made Anatomically Designed Interbody Fusion Device, Percutaneous Approach, New Technology Group 7
XRGD4R7Fusion of Lumbosacral Joint using Custom-Made Anatomically Designed Interbody Fusion Device, Percutaneous Endoscopic Approach, New Technology Group 7
XRGE058Fusion of Right Sacroiliac Joint using Internal Fixation Device with Tulip Connector, Open Approach, New Technology Group 8
XRGE358Fusion of Right Sacroiliac Joint using Internal Fixation Device with Tulip Connector, Percutaneous Approach, New Technology Group 8
XRGF058Fusion of Left Sacroiliac Joint using Internal Fixation Device with Tulip Connector, Open Approach, New Technology Group 8
XRGF358Fusion of Left Sacroiliac Joint using Internal Fixation Device with Tulip Connector, Percutaneous Approach, New Technology Group 8
XRGJ0B9Fusion of Right Ankle Joint using Open-truss Design Internal Fixation Device, Open Approach, New Technology Group 9
XRGK0B9Fusion of Left Ankle Joint using Open-truss Design Internal Fixation Device, Open Approach, New Technology Group 9
XRGL0B9Fusion of Right Tarsal Joint using Open-truss Design Internal Fixation Device, Open Approach, New Technology Group 9
XRGM0B9Fusion of Left Tarsal Joint using Open-truss Design Internal Fixation Device, Open Approach, New Technology Group 9
XRHB018Insertion of Posterior Spinal Motion Preservation Device into Lumbar Vertebral Joint, Open Approach, New Technology Group 8
XRHD018Insertion of Posterior Spinal Motion Preservation Device into Lumbosacral Joint, Open Approach, New Technology Group 8
XRRG0L8Replacement of Right Knee Joint with Synthetic Substitute, Lateral Meniscus, Open Approach, New Technology Group 8
XRRG0M8Replacement of Right Knee Joint with Synthetic Substitute, Medial Meniscus, Open Approach, New Technology Group 8
XRRH0L8Replacement of Left Knee Joint with Synthetic Substitute, Lateral Meniscus, Open Approach, New Technology Group 8
XRRH0M8Replacement of Left Knee Joint with Synthetic Substitute, Medial Meniscus, Open Approach, New Technology Group 8

NON-OPERATING ROOM PROCEDURES

02H63JZ*Insertion of Pacemaker Lead into Right Atrium, Percutaneous Approach
02H73JZ*Insertion of Pacemaker Lead into Left Atrium, Percutaneous Approach
02HK3JZ*Insertion of Pacemaker Lead into Right Ventricle, Percutaneous Approach
02HL3JZ*Insertion of Pacemaker Lead into Left Ventricle, Percutaneous Approach



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