Abbott Vascular
Santa Clara, California, 95054, United States
NCT Number: NCT01396525
To determine the safety and efficacy of the Omnilink Elite™ Peripheral Balloon-Expandable Stent System in subjects with atherosclerotic de novo or restenotic lesions in the native common iliac artery and/or native external iliac artery.
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Notify Me18 year–89 year
All sexes
Interventional
Phase 3
Santa Clara, California, 95054, United States
The MOBILITY study was a prospective, non-randomized, two-arm, multi-center study. The 2 arms (Omnilink Elite arm and Absolute Pro arm) were designed to independently assess the safety and effectiveness of the 2 devices used in this study.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Clinical Inclusion Criteria:
Angiographic Inclusion Criteria
Clinical Exclusion Criteria
Angiographic Exclusion Criteria
Patients with treatment of a maximum of two bilateral de novo or restenotic atherosclerotic lesions in the native common iliac artery and/or native external iliac artery (one lesion per side).
Time frame: 9 months
Defined as death, myocardial infarction (MI), clinically-driven target lesion revascularization, and limb loss (major amputation only) on the treated side(s).
Time frame: Acute: from beginning of index procedure to end of procedure
On a per device basis, the achievement of successful delivery and deployment of the trial device(s) at the intended location(s) and successful withdrawal of the delivery catheter(s).
Time frame: Acute: from beginning of index procedure to end of procedure
Technical success is defined as device success (the achievement of successful delivery and deployment of the trial device(s) at the intended target lesion(s), successful withdrawal of the delivery catheter(s)), and attainment of a final residual stenosis of < 30% by QA or as reported by the investigator.
Time frame: Beginning of index procedure to 2 days post-index procedure or discharge, whichever is sooner
Procedure success is defined as technical success (device success and attainment of a final residual stenosis of < 30% by QA) without complications within two (2) days after the index procedure or at hospital discharge, whichever is sooner.
Time frame: Pre-procedure
The thigh brachial index is the ratio of the resting ipsilateral thigh systolic blood pressure as compared to the highest resting brachial systolic blood pressure. A normal range is 0.9 to 1.3.
Time frame: Post-Procedure
The thigh brachial index is the ratio of the resting ipsilateral thigh systolic blood pressure as compared to the highest resting brachial systolic blood pressure. A normal range is 0.9 to 1.3.
Time frame: 1 month
The thigh brachial index is the ratio of the resting ipsilateral thigh systolic blood pressure as compared to the highest resting brachial systolic blood pressure. A normal range is 0.9 to 1.3.
Time frame: 9 months
The thigh brachial index is the ratio of the resting ipsilateral thigh systolic blood pressure as compared to the highest resting brachial systolic blood pressure. A normal range is 0.9 to 1.3.
Time frame: 2 years
The thigh brachial index is the ratio of the resting ipsilateral thigh systolic blood pressure as compared to the highest resting brachial systolic blood pressure. A normal range is 0.9 to 1.3.
Time frame: 3 years
The thigh brachial index is the ratio of the resting ipsilateral thigh systolic blood pressure as compared to the highest resting brachial systolic blood pressure. A normal range is 0.9 to 1.3.
Time frame: Between baseline and Post-procedure
The changes in thigh brachial index is the absolute change between the pre-procedure measure and the stated timepoint measure.
Time frame: Between Baseline and 1 month
The changes in thigh brachial index is the absolute change between the pre-procedure measure and the stated timepoint measure.
Time frame: Between baseline and 9 months
The changes in thigh brachial index is the absolute change between the pre-procedure measure and the stated timepoint measure.
Time frame: Between baseline and 2 years
The changes in thigh brachial index is the ratio of change between the pre-procedure measure and the stated timepoint measure.
Time frame: Between baseline and 3 years
The changes in thigh brachial index is the ratio of change between the pre-procedure measure and the stated timepoint measure.
Time frame: Pre-procedure
Measured by the Walking Impairment Questionnaire (WIQ), a disease-specific instrument utilized to characterize walking ability through a questionnaire as an alternative to treadmill testing. It is a measure of subject-perceived walking performance for subjects with Peripheral Artery Disease (PAD) and/or intermittent claudication. The WIQ quantifies patient-reported walking speed, walking distance, and stair-climbing ability, respectively, on a scale of 0 (= worst) to 100 (= best). The highest possible score for each domain is 100%, which indicates no difficulty. Lowest possible score for each domain is 0%, which indicates inability to perform the activity.
Time frame: 1 month
Measured by the Walking Impairment Questionnaire (WIQ), a disease-specific instrument utilized to characterize walking ability through a questionnaire as an alternative to treadmill testing. It is a measure of subject-perceived walking performance for subjects with Peripheral Artery Disease (PAD) and/or intermittent claudication. The WIQ quantifies patient-reported walking speed, walking distance, and stair-climbing ability, respectively, on a scale of 0 (= worst) to 100 (= best). The highest possible score for each domain is 100%, which indicates no difficulty. Lowest possible score for each domain is 0%, which indicates inability to perform the activity.
Time frame: 9 months
Measured by the Walking Impairment Questionnaire (WIQ), a disease-specific instrument utilized to characterize walking ability through a questionnaire as an alternative to treadmill testing. It is a measure of subject-perceived walking performance for subjects with Peripheral Artery Disease (PAD) and/or intermittent claudication. The WIQ quantifies patient-reported walking speed, walking distance, and stair-climbing ability, respectively, on a scale of 0 (= worst) to 100 (= best). The highest possible score for each domain is 100%, which indicates no difficulty. Lowest possible score for each domain is 0%, which indicates inability to perform the activity.
Time frame: 2 years
Measured by the Walking Impairment Questionnaire (WIQ), a disease-specific instrument utilized to characterize walking ability through a questionnaire as an alternative to treadmill testing. It is a measure of subject-perceived walking performance for subjects with Peripheral Artery Disease (PAD) and/or intermittent claudication. The WIQ quantifies patient-reported walking speed, walking distance, and stair-climbing ability, respectively, on a scale of 0 (= worst) to 100 (= best). The highest possible score for each domain is 100%, which indicates no difficulty. Lowest possible score for each domain is 0%, which indicates inability to perform the activity.
Time frame: 3 years
Measured by the Walking Impairment Questionnaire (WIQ), a disease-specific instrument utilized to characterize walking ability through a questionnaire as an alternative to treadmill testing. It is a measure of subject-perceived walking performance for subjects with Peripheral Artery Disease (PAD) and/or intermittent claudication. The WIQ quantifies patient-reported walking speed, walking distance, and stair-climbing ability, respectively, on a scale of 0 (= worst) to 100 (= best). The highest possible score for each domain is 100%, which indicates no difficulty. Lowest possible score for each domain is 0%, which indicates inability to perform the activity.
Time frame: Pre-Procedure
The Rutherford Becker clinical category is a scale to measure chronic limb ischemia.
Category and Clinical Description:
0 = Asymptomatic, no hemodynamically significant occlusive disease, 1 = Mild claudication, 2 = Moderate claudication, 3 = Severe claudication, 4 = Ischemic rest pain, 5 = tissue loss, non-healing ulcer, or focal gangrene with diffuse pedal ischemia, 6 = Major tissue loss, extending above transmetatarsal level, functional foot no longer salvageable
Time frame: 1 month
The Rutherford Becker clinical category is a scale to measure chronic limb ischemia.
Category and Clinical Description:
0 = Asymptomatic, no hemodynamically significant occlusive disease, 1 = Mild claudication, 2 = Moderate claudication, 3 = Severe claudication, 4 = Ischemic rest pain, 5 = tissue loss, non-healing ulcer, or focal gangrene with diffuse pedal ischemia, 6 = Major tissue loss, extending above transmetatarsal level, functional foot no longer salvageable
Time frame: 9 months
The Rutherford Becker clinical category is a scale to measure chronic limb ischemia.
Category and Clinical Description:
0 = Asymptomatic, no hemodynamically significant occlusive disease, 1 = Mild claudication, 2 = Moderate claudication, 3 = Severe claudication, 4 = Ischemic rest pain, 5 = tissue loss, non-healing ulcer, or focal gangrene with diffuse pedal ischemia, 6 = Major tissue loss, extending above transmetatarsal level, functional foot no longer salvageable
Time frame: 2 years
The Rutherford Becker clinical category is a scale to measure chronic limb ischemia.
Category and Clinical Description:
0 = Asymptomatic, no hemodynamically significant occlusive disease, 1 = Mild claudication, 2 = Moderate claudication, 3 = Severe claudication, 4 = Ischemic rest pain, 5 = tissue loss, non-healing ulcer, or focal gangrene with diffuse pedal ischemia, 6 = Major tissue loss, extending above transmetatarsal level, functional foot no longer salvageable
Time frame: 3 years
The Rutherford Becker clinical category is a scale to measure chronic limb ischemia.
Category and Clinical Description:
0 = Asymptomatic, no hemodynamically significant occlusive disease, 1 = Mild claudication, 2 = Moderate claudication, 3 = Severe claudication, 4 = Ischemic rest pain, 5 = tissue loss, non-healing ulcer, or focal gangrene with diffuse pedal ischemia, 6 = Major tissue loss, extending above transmetatarsal level, functional foot no longer salvageable
Time frame: Between baseline and 1 month
Change in Rutherford Becker Clinical Category:
Worsening Rutherford Becker Clinical Category:
Deterioration (an increase) in the Rutherford Becker Clinical Category by at least two categories from baseline and subsequently from the earliest post-procedural measurement or to a category 5 or 6.
Improved Rutherford Becker Clinical Category:
An improvement (a decrease) in the Rutherford Becker Clinical Category of at least one category from baseline and subsequently from the earliest post-procedural measurement.
Time frame: Between baseline and 9 months
Change in Rutherford Becker Clinical Category:
Worsening Rutherford Becker Clinical Category:
Deterioration (an increase) in the Rutherford Becker Clinical Category by at least two categories from baseline and subsequently from the earliest post-procedural measurement or to a category 5 or 6.
Improved Rutherford Becker Clinical Category:
An improvement (a decrease) in the Rutherford Becker Clinical Category of at least one category from baseline and subsequently from the earliest post-procedural measurement.
Time frame: Baseline and 2 years
Change in Rutherford Becker Clinical Category:
Worsening Rutherford Becker Clinical Category:
Deterioration (an increase) in the Rutherford Becker Clinical Category by at least two categories from baseline and subsequently from the earliest post-procedural measurement or to a category 5 or 6.
Improved Rutherford Becker Clinical Category:
An improvement (a decrease) in the Rutherford Becker Clinical Category of at least one category from baseline and subsequently from the earliest post-procedural measurement.
Time frame: Baseline and 3 years
Change in Rutherford Becker Clinical Category:
Worsening Rutherford Becker Clinical Category:
Deterioration (an increase) in the Rutherford Becker Clinical Category by at least two categories from baseline and subsequently from the earliest post-procedural measurement or to a category 5 or 6.
Improved Rutherford Becker Clinical Category:
An improvement (a decrease) in the Rutherford Becker Clinical Category of at least one category from baseline and subsequently from the earliest post-procedural measurement.
Time frame: 1 month and 9 months
Outcome measure analysed at 1, 9 and 18 months, 2 and 3 years.Target lesion revascularization (TLR) is defined as any revascularization at the target lesion with or without evidence of target lesion diameter stenosis ≥ 50% determined by Duplex ultrasonography (DUS) or arteriography, with or without new distal ischemic sign (worsening Rutherford Becker Clinical Category that is clearly referable to the target lesion).
Time frame: 18 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Target lesion revascularization (TLR) is defined as any revascularization at the target lesion with or without evidence of target lesion diameter stenosis ≥ 50% determined by DUS or arteriography, with or without new distal ischemic sign (worsening Rutherford Becker Clinical Category that is clearly referable to the target lesion).
Time frame: 2 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Target lesion revascularization (TLR) is defined as any revascularization at the target lesion with or without evidence of target lesion diameter stenosis ≥ 50% determined by DUS or arteriography, with or without new distal ischemic sign (worsening Rutherford Becker Clinical Category that is clearly referable to the target lesion).
Time frame: 3 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Target lesion revascularization (TLR) is defined as any revascularization at the target lesion with or without evidence of target lesion diameter stenosis ≥ 50% determined by DUS or arteriography, with or without new distal ischemic sign (worsening Rutherford Becker Clinical Category that is clearly referable to the target lesion).
Time frame: 1 month and 9 months
Outcome measure analysed at 1, 9 and 18 months, 2 and 3 years. Clinically-driven is defined as: Revascularization of the stent with evidence of new distal ischemic signs (worsening Rutherford Becker Clinical Category that is clearly referable to the target lesion, and target lesion diameter stenosis ≥ 50% determined by duplex ultrasound or arteriography.) (Note: This does not include coincidental overlap of a percutaneous transluminal angioplasty (PTA) balloon or stent into a study stent, that has <50% stenosis, while treating a non-target lesion in the target vessel).
Time frame: 18 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Clinically-driven TLR is defined as: Revascularization of the stent with evidence of new distal ischemic signs (worsening Rutherford Becker Clinical Category that is clearly referable to the target lesion, and target lesion diameter stenosis ≥ 50% determined by duplex ultrasound or arteriography.) (Note: This does not include coincidental overlap of a PTA balloon or stent into a study stent, that has <50% stenosis, while treating a non-target lesion in the target vessel).
Time frame: 2 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Clinically-driven TLR is defined as: Revascularization of the stent with evidence of new distal ischemic signs (worsening Rutherford Becker Clinical Category that is clearly referable to the target lesion, and target lesion diameter stenosis ≥ 50% determined by duplex ultrasound or arteriography.) (Note: This does not include coincidental overlap of a PTA balloon or stent into a study stent, that has <50% stenosis, while treating a non-target lesion in the target vessel).
Time frame: 3 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Clinically-driven TLR is defined as: Revascularization of the stent with evidence of new distal ischemic signs (worsening Rutherford Becker Clinical Category that is clearly referable to the target lesion, and target lesion diameter stenosis ≥ 50% determined by duplex ultrasound or arteriography.) (Note: This does not include coincidental overlap of a PTA balloon or stent into a study stent, that has <50% stenosis, while treating a non-target lesion in the target vessel).
Time frame: 1 month and 9 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Target Vessel Revascularization (TVR) is defined as any revascularization of the target vessel, outside of the target lesion, with or without evidence of diameter stenosis ≥ 50% determined by DUS or arteriography, with or without new distal ischemic sign (worsening Rutherford Becker Clinical Category that is clearly referable to the target vessel).
Time frame: 18 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Target Vessel Revascularization (TVR) is defined as any revascularization of the target vessel, outside of the target lesion, with or without evidence of diameter stenosis ≥ 50% determined by DUS or arteriography, with or without new distal ischemic sign (worsening Rutherford Becker Clinical Category that is clearly referable to the target vessel).
Time frame: 2 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Target Vessel Revascularization (TVR) is defined as any revascularization of the target vessel, outside of the target lesion, with or without evidence of diameter stenosis ≥ 50% determined by DUS or arteriography, with or without new distal ischemic sign (worsening Rutherford Becker Clinical Category that is clearly referable to the target vessel).
Time frame: 3 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Target Vessel Revascularization (TVR) is defined as any revascularization of the target vessel, outside of the target lesion, with or without evidence of diameter stenosis ≥ 50% determined by DUS or arteriography, with or without new distal ischemic sign (worsening Rutherford Becker Clinical Category that is clearly referable to the target vessel).
Time frame: 1 month and 9 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Clinically-driven Target Vessel Revascularization is defined as revascularization of the target vessel (outside the target lesion) with evidence of new distal ischemic signs (worsening Rutherford Becker clinical category that is clearly referable to the target vessel, and diameter stenosis ≥ 50% determined by DUS or arteriography).
Time frame: 18 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Clinically-driven Target Vessel Revascularization is defined as revascularization of the target vessel (outside the target lesion) with evidence of new distal ischemic signs (worsening Rutherford Becker clinical category that is clearly referable to the target vessel, and diameter stenosis ≥ 50% determined by DUS or arteriography)
Time frame: 2 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Clinically-driven Target Vessel Revascularization is defined as revascularization of the target vessel (outside the target lesion) with evidence of new distal ischemic signs (worsening Rutherford Becker clinical category that is clearly referable to the target vessel, and diameter stenosis ≥ 50% determined by DUS or arteriography).
Time frame: 3 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Clinically-driven Target Vessel Revascularization is defined as revascularization of the target vessel (outside the target lesion) with evidence of new distal ischemic signs (worsening Rutherford Becker clinical category that is clearly referable to the target vessel, and diameter stenosis ≥ 50% determined by DUS or arteriography).
Time frame: 1 month and 9 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Target extremity revascularization (TER) is defined as any revascularization of a target extremity vessel (distal to the superior border of the inguinal ligament on the ipsilateral side) with or without evidence of vessel diameter stenosis ≥ 50% determined by DUS or arteriography, and with or without new distal ischemic sign (worsening Rutherford Becker Clinical Category).
Time frame: 18 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Target extremity revascularization (TER) is defined as any revascularization of a target extremity vessel (distal to the superior border of the inguinal ligament on the ipsilateral side) with or without evidence of vessel diameter stenosis ≥ 50% determined by DUS or arteriography, and with or without new distal ischemic sign (worsening Rutherford Becker Clinical Category).
Time frame: 2 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Target extremity revascularization (TER) is defined as any revascularization of a target extremity vessel (distal to the superior border of the inguinal ligament on the ipsilateral side) with or without evidence of vessel diameter stenosis ≥ 50% determined by DUS or arteriography, and with or without new distal ischemic sign (worsening Rutherford Becker Clinical Category).
Time frame: 3 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Target extremity revascularization (TER) is defined as any revascularization of a target extremity vessel (distal to the superior border of the inguinal ligament on the ipsilateral side) with or without evidence of vessel diameter stenosis ≥ 50% determined by DUS or arteriography, and with or without new distal ischemic sign (worsening Rutherford Becker Clinical Category).
Time frame: 1 month
Absence of in-stent restenosis of the target lesion (≥50%) as determined by duplex ultrasound or angiogram and without interval reintervention since the initial study procedure.
Time frame: 9 months
Absence of in-stent restenosis of the target lesion (≥50%) as determined by duplex ultrasound or angiogram and without interval reintervention since the initial study procedure.
Time frame: 2 years
Absence of in-stent restenosis of the target lesion (≥50%) as determined by duplex ultrasound or angiogram and without interval reintervention since the initial study procedure
Time frame: 3 years
Absence of in-stent restenosis of the target lesion (≥50%) as determined by duplex ultrasound or angiogram and without interval reintervention since the initial study procedure
Time frame: 9 months
Defined as ≥ 50% stenosis at follow-up.
Time frame: 2 years
Defined as ≥ 50% stenosis at follow-up.
Time frame: 3 years
Defined as ≥ 50% stenosis at follow-up.
Time frame: 1 month and 9 months
Outcome measure analysed at 1, 9 and 18 months, 2 and 3 years
Time frame: 18 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years.
Time frame: 2 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years.
Time frame: 3 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years.
Time frame: 1 month and 9 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. The term myocardial infarction should be used when there is evidence of myocardial necrosis in a clinical setting consistent with myocardial ischemia.
Time frame: 18 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. The term myocardial infarction should be used when there is evidence of myocardial necrosis in a clinical setting consistent with myocardial ischemia.
Time frame: 2 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. The term myocardial infarction should be used when there is evidence of myocardial necrosis in a clinical setting consistent with myocardial ischemia.
Time frame: 3 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. The term myocardial infarction should be used when there is evidence of myocardial necrosis in a clinical setting consistent with myocardial ischemia.
Time frame: 1 month and 9 months
Outcome measure analysed at 1, 9 and 18 months, 2 and 3 years. The removal of a body extremity by surgery. For this study, the definition of amputation will only include amputations of the limb(s) that was/were treated. A major amputation will be defined as at or above the ankle.
Time frame: 18 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. The removal of a body extremity by surgery. For this study, the definition of amputation will only include amputations of the limb(s) that was/were treated. A major amputation will be defined as at or above the ankle.
Time frame: 2 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. The removal of a body extremity by surgery. For this study, the definition of amputation will only include amputations of the limb(s) that was/were treated. A major amputation will be defined as at or above the ankle.
Time frame: 3 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. The removal of a body extremity by surgery. For this study, the definition of amputation will only include amputations of the limb(s) that was/were treated. A major amputation will be defined as at or above the ankle.
Time frame: 1 month and 9 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Embolism is the formation of a thrombus within the target lesion or stent with migration or atherosclerotic emboli migration to a distal artery.
Time frame: 18 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. Embolism is the formation of a thrombus within the target lesion or stent with migration or atherosclerotic emboli migration to a distal artery.
Time frame: 2 years
Outcome measure analyzed at 1 and 9 months and at 2 and 3 years. Embolism is the formation of a thrombus within the target lesion or stent with migration or atherosclerotic emboli migration to a distal artery.
Time frame: 3 years
Outcome measure analyzed at 1 and 9 months and at 2 and 3 years. Embolism is the formation of a thrombus within the target lesion or stent with migration or atherosclerotic emboli migration to a distal artery.
Time frame: 1 month and 9 months
Outcome measure analysed at 1, 9 and 18 months, 2 and 3 years. The removal of a body extremity by surgery. For this study, the definition of amputation will only include amputations of the limb(s) that was/were treated. A minor amputation will be defined as below the ankle.
Time frame: 18 months
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. The removal of a body extremity by surgery. For this study, the definition of amputation will only include amputations of the limb(s) that was/were treated. A minor amputation will be defined as below the ankle.
Time frame: 2 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. The removal of a body extremity by surgery. For this study, the definition of amputation will only include amputations of the limb(s) that was/were treated. A minor amputation will be defined as below the ankle.
Time frame: 3 years
Outcome measure analyzed at 1, 9 and 18 months, 2 and 3 years. The removal of a body extremity by surgery. For this study, the definition of amputation will only include amputations of the limb(s) that was/were treated. A minor amputation will be defined as below the ankle.
Time frame: 1 month
Defined as a total occlusion documented by duplex ultrasound and/or arteriography at the stent site with or without symptoms that occurs ≤ 30 days post index procedure.
Time frame: Baseline and 1 month
This measure indicates the absolute change between two timepoints represented by the mean.
SF-12® Health Survey is validated measure using 12 questions to measure functional health and well-being from the patient's point of view. Scores on the scale are 0% (indicating poor perceived health status) to 100% (indicating excellent perceived health status) possible.
Time frame: Baseline and 9 months
This measure indicates the absolute change between two timepoints represented by the mean.
SF-12® Health Survey is validated measure using 12 questions to measure functional health and well-being from the patient's point of view. Scores on the scale are 0% (indicating poor perceived health status) to 100% (indicating excellent perceived health status) possible.
Time frame: Baseline and 2 years
This measure indicates the absolute change between two timepoints represented by the mean.
SF-12® Health Survey is validated measure using 12 questions to measure functional health and well-being from the patient's point of view. Scores on the scale are 0% (indicating poor perceived health status) to 100% (indicating excellent perceived health status) possible.
Time frame: Baseline and 3 years
This measure indicates the absolute change between two timepoints represented by the mean.
SF-12® Health Survey is validated measure using 12 questions to measure functional health and well-being from the patient's point of view. Scores on the scale are 0% (indicating poor perceived health status) to 100% (indicating excellent perceived health status) possible.
Time frame: Baseline and 1 month
This measure indicates the absolute change between two timepoints represented by the mean.
SF-12® Health Survey is validated measure using 12 questions to measure functional health and well-being from the patient's point of view. Scores on the scale are 0% (indicating poor perceived health status) to 100% (indicating excellent perceived health status) possible.
Time frame: Baseline and 9 months
This measure indicates the absolute change between two timepoints represented by the mean.
SF-12® Health Survey is validated measure using 12 questions to measure functional health and well-being from the patient's point of view. Scores on the scale are 0% (indicating poor perceived health status) to 100% (indicating excellent perceived health status) possible.
Time frame: Baseline and 2 years
This measure indicates the absolute change between two timepoints represented by the mean.
SF-12® Health Survey is validated measure using 12 questions to measure functional health and well-being from the patient's point of view. Scores on the scale are 0% (indicating poor perceived health status) to 100% (indicating excellent perceived health status) possible.
Time frame: Baseline and 3 years
This measure indicates the absolute change between two timepoints represented by the mean.
SF-12® Health Survey is validated measure using 12 questions to measure functional health and well-being from the patient's point of view. Scores on the scale are 0% (indicating poor perceived health status) to 100% (indicating excellent perceived health status) possible.
Abbott Medical Devices
Industry
A Prospective, Non-randomized, Two Arm, Multi-center Clinical Trial to Evaluate the Safety and Efficacy of the Absolute Pro™ Peripheral Self-Expanding Stent System and the Omnilink Elite™ Peripheral Balloon-Expandable Stent System in Subjects With Atherosclerotic de Novo or Restenotic Lesions in the Native Common Iliac Artery and/or Native External Iliac Artery.
Acronym: MOBILITY OE
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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