scholarly article | Q13442814 |
P50 | author | James A McEwen | Q99237612 |
P2093 | author name string | Bassam A Masri | |
Clive P Duncan | |||
Andrew Eisen | |||
P2860 | cites work | Practical use of emergency tourniquets to stop bleeding in major limb trauma | Q28274466 |
Anatomical changes in peripheral nerves compressed by a pneumatic tourniquet | Q34106804 | ||
The pathophysiology of skeletal muscle ischemia and the reperfusion syndrome: a review | Q34161053 | ||
Pathophysiology of peripheral nerve injury: a brief review | Q34324206 | ||
Tourniquet use in upper limb surgery | Q34975793 | ||
Tourniquet use in the civilian prehospital setting | Q36891645 | ||
The pathogenesis of pneumatic tourniquet paralysis in man | Q37014265 | ||
Technique for Measuring Limb Occlusion Pressure that Facilitates Personalized Tourniquet Systems: A Randomized Trial | Q37373181 | ||
Surgical tourniquets in orthopaedics | Q37642351 | ||
Safe tourniquet use: a review of the evidence | Q38007142 | ||
Peripheral nerve axonal excitability studies: expanding the neurophysiologist's armamentarium | Q38968269 | ||
Tourniquet-induced common peroneal nerve injury in a pediatric patient after knee arthroscopy - raising the red flag. | Q41599895 | ||
Wide contoured thigh cuffs and automated limb occlusion measurement allow lower tourniquet pressures | Q51584019 | ||
Pulmonary Embolism After Application of a Sterile Elastic Exsanguination Tourniquet. | Q51612520 | ||
Use of Tourniquets in Limb Trauma Surgery | Q52676667 | ||
The pressure distribution under tourniquets. | Q55061190 | ||
Complications of and improvements in pneumatic tourniquets used in surgery | Q55063085 | ||
Occlusion of arterial flow in the extremities at subsystolic pressures through the use of wide tourniquet cuffs. | Q55066225 | ||
An Evaluation of Two Tourniquet Systems for the Control of Prehospital Lower Limb Hemorrhage | Q56212689 | ||
A comparative study of the tolerance of skeletal muscle to ischemia. Tourniquet application compared with acute compartment syndrome | Q57190488 | ||
Low-Load Resistance Training With Blood Flow Restriction Improves Clinical Outcomes in Musculoskeletal Rehabilitation: A Single-Blind Randomized Controlled Trial | Q57838299 | ||
Interface pressure, perceptual, and mean arterial pressure responses to different blood flow restriction systems | Q57838305 | ||
TOURNIQUET PARALYSIS SYNDROME | Q59409535 | ||
The relationship between tourniquet pressure and underlying soft-tissue pressure in the thigh | Q70483111 | ||
The use of lower tourniquet inflation pressures in extremity surgery facilitated by curved and wide tourniquets and an integrated cuff inflation system | Q70598892 | ||
Tourniquet-induced nerve ischemia complicating knee ligament surgery | Q71152486 | ||
Pneumatic tourniquet paralysis. Case report | Q71796617 | ||
Tourniquet-induced changes of energy metabolism in human skeletal muscle monitored by microdialysis | Q73374585 | ||
Multiple measures of axonal excitability: a new approach in clinical testing | Q73459448 | ||
The Role of Blood Flow Restriction Therapy Following Knee Surgery: Expert Opinion | Q90753235 | ||
Personalized Blood Flow Restriction Therapy: How, When and Where Can It Accelerate Rehabilitation After Surgery? | Q90753242 | ||
Comparing the Effectiveness of Blood Flow Restriction and Traditional Heavy Load Resistance Training in the Post-Surgery Rehabilitation of Anterior Cruciate Ligament Reconstruction Patients: A UK National Health Service Randomised Controlled Trial | Q91844208 | ||
P304 | page(s) | 7 | |
P577 | publication date | 2020-05-28 | |
P1433 | published in | BMC Biomedical Engineering | Q68092131 |
P1476 | title | Tourniquet-induced nerve compression injuries are caused by high pressure levels and gradients - a review of the evidence to guide safe surgical, pre-hospital and blood flow restriction usage | |
P478 | volume | 2 |
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