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Artificial Vertebral sentence examples within Printed Artificial Vertebral
Background The aim of this study was to compare the clinical and radiological outcomes of the 3D-printed artificial vertebral body vs the titanium mesh cage in repairing bone defects for single-level anterior cervical corpectomy and fusion (ACCF).
Background The aim of this study was to compare the clinical and radiological outcomes of the 3D-printed artificial vertebral body vs the titanium mesh cage in repairing bone defects for single-level anterior cervical corpectomy and fusion (ACCF).
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CONCLUSION
To our best knowledge, this is the first report of biomechanical reconstruction using an individualized 3D-Printed artificial vertebral body in a six-level recurrent chordoma.
CONCLUSION
To our best knowledge, this is the first report of biomechanical reconstruction using an individualized 3D-Printed artificial vertebral body in a six-level recurrent chordoma.
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Artificial Vertebral sentence examples within Anterior Artificial Vertebral
Interventions: The posterior pedicle was internally fixed and an anterior artificial vertebral body implant was placed to maintain stability and correct the kyphotic deformity in a 2-step surgical procedure.
Interventions: The posterior pedicle was internally fixed and an anterior artificial vertebral body implant was placed to maintain stability and correct the kyphotic deformity in a 2-step surgical procedure.
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Objective
To investigate the effect of anterior artificial vertebral body reconstruction and internal fixation after the failed posterior thoracolumbar fracture surgery.
Objective
To investigate the effect of anterior artificial vertebral body reconstruction and internal fixation after the failed posterior thoracolumbar fracture surgery.
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Artificial Vertebral sentence examples within artificial vertebral body
The aim of the study was to evaluate the biomechanical properties of a novel nonfused artificial vertebral body in treating lumbar diseases and to compare with those of the fusion artificial vertebral body.
The aim of the study was to evaluate the biomechanical properties of a novel nonfused artificial vertebral body in treating lumbar diseases and to compare with those of the fusion artificial vertebral body.
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Objective
To evaluate the effectiveness of three-dimensional (3D) printing artificial vertebral body and interbody fusion Cage in anterior cervical disectomy and fusion (ACCF) combined with anterior cervical corpectomy and fusion (ACDF).
Objective
To evaluate the effectiveness of three-dimensional (3D) printing artificial vertebral body and interbody fusion Cage in anterior cervical disectomy and fusion (ACCF) combined with anterior cervical corpectomy and fusion (ACDF).
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Artificial Vertebral sentence examples within artificial vertebral implant
This study aims to develop a novel multi-objective optimization methodology based on various normal spinal activities, to design the artificial vertebral implant (AVI) with lightweight, high-strength and high-stability.
This study aims to develop a novel multi-objective optimization methodology based on various normal spinal activities, to design the artificial vertebral implant (AVI) with lightweight, high-strength and high-stability.
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At present, artificial vertebral implants have proven to be effective in the treatment of spinal tumors, infections, fractures and other diseases.
At present, artificial vertebral implants have proven to be effective in the treatment of spinal tumors, infections, fractures and other diseases.
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Artificial Vertebral sentence examples within artificial vertebral lamina
Tissue engineering provides a promising way for the regeneration of artificial vertebral laminae.
Tissue engineering provides a promising way for the regeneration of artificial vertebral laminae.
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IMPACT STATEMENT
In this study, we designed a comparison study to investigate the effect of continuous cerebrospinal fluid pulsation (CSFP) stress on the remodeling of artificial vertebral laminae, and we found that the continuous CSFP stress played an important role in the physiological reconstruction of artificial vertebral laminae by promoting the remodeling abilities of tissue-engineered laminae (TEL).
IMPACT STATEMENT
In this study, we designed a comparison study to investigate the effect of continuous cerebrospinal fluid pulsation (CSFP) stress on the remodeling of artificial vertebral laminae, and we found that the continuous CSFP stress played an important role in the physiological reconstruction of artificial vertebral laminae by promoting the remodeling abilities of tissue-engineered laminae (TEL).
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10.1038/s41598-021-82086-7
The aim of the study was to evaluate the biomechanical properties of a novel nonfused artificial vertebral body in treating lumbar diseases and to compare with those of the fusion artificial vertebral body.
The aim of the study was to evaluate the biomechanical properties of a novel nonfused artificial vertebral body in treating lumbar diseases and to compare with those of the fusion artificial vertebral body.
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10.7507/1002-1892.202103003
Objective
To evaluate the effectiveness of three-dimensional (3D) printing artificial vertebral body and interbody fusion Cage in anterior cervical disectomy and fusion (ACCF) combined with anterior cervical corpectomy and fusion (ACDF).
Objective
To evaluate the effectiveness of three-dimensional (3D) printing artificial vertebral body and interbody fusion Cage in anterior cervical disectomy and fusion (ACCF) combined with anterior cervical corpectomy and fusion (ACDF).
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10.1155/2021/8359582
Tissue engineering provides a promising way for the regeneration of artificial vertebral laminae.
Tissue engineering provides a promising way for the regeneration of artificial vertebral laminae.
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10.12659/MSM.928022
Background The aim of this study was to compare the clinical and radiological outcomes of the 3D-printed artificial vertebral body vs the titanium mesh cage in repairing bone defects for single-level anterior cervical corpectomy and fusion (ACCF).
Background The aim of this study was to compare the clinical and radiological outcomes of the 3D-printed artificial vertebral body vs the titanium mesh cage in repairing bone defects for single-level anterior cervical corpectomy and fusion (ACCF).
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10.1016/j.msec.2021.112250
This study aims to develop a novel multi-objective optimization methodology based on various normal spinal activities, to design the artificial vertebral implant (AVI) with lightweight, high-strength and high-stability.
This study aims to develop a novel multi-objective optimization methodology based on various normal spinal activities, to design the artificial vertebral implant (AVI) with lightweight, high-strength and high-stability.
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10.5137/1019-5149.JTN.25296-18.2
CONCLUSION
To our best knowledge, this is the first report of biomechanical reconstruction using an individualized 3D-Printed artificial vertebral body in a six-level recurrent chordoma.
CONCLUSION
To our best knowledge, this is the first report of biomechanical reconstruction using an individualized 3D-Printed artificial vertebral body in a six-level recurrent chordoma.
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10.1097/MD.0000000000016831
Interventions: The posterior pedicle was internally fixed and an anterior artificial vertebral body implant was placed to maintain stability and correct the kyphotic deformity in a 2-step surgical procedure.
Interventions: The posterior pedicle was internally fixed and an anterior artificial vertebral body implant was placed to maintain stability and correct the kyphotic deformity in a 2-step surgical procedure.
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10.1089/ten.TEA.2018.0100
IMPACT STATEMENT
In this study, we designed a comparison study to investigate the effect of continuous cerebrospinal fluid pulsation (CSFP) stress on the remodeling of artificial vertebral laminae, and we found that the continuous CSFP stress played an important role in the physiological reconstruction of artificial vertebral laminae by promoting the remodeling abilities of tissue-engineered laminae (TEL).
IMPACT STATEMENT
In this study, we designed a comparison study to investigate the effect of continuous cerebrospinal fluid pulsation (CSFP) stress on the remodeling of artificial vertebral laminae, and we found that the continuous CSFP stress played an important role in the physiological reconstruction of artificial vertebral laminae by promoting the remodeling abilities of tissue-engineered laminae (TEL).
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10.3969/j.issn.1003-0034.2019.07.017
At present, artificial vertebral implants have proven to be effective in the treatment of spinal tumors, infections, fractures and other diseases.
At present, artificial vertebral implants have proven to be effective in the treatment of spinal tumors, infections, fractures and other diseases.
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10.1039/c9bm01655d
The aim of this study was to investigate the combined use of recombinant human BMP-2 (rhBMP-2) with a 3D-printed artificial vertebral implant (3D-AVI) to improve the osteoinduction.
The aim of this study was to investigate the combined use of recombinant human BMP-2 (rhBMP-2) with a 3D-printed artificial vertebral implant (3D-AVI) to improve the osteoinduction.
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10.3760/CMA.J.ISSN.1001-8050.2019.09.006
No serious surgical complications such as quadriceps femoris and weakness, pleural tear, vascular injury, nerve root injury, sympathetic nerve injury, retroperitoneal hematoma and artificial vertebral body displacement occurred in these patients.
No serious surgical complications such as quadriceps femoris and weakness, pleural tear, vascular injury, nerve root injury, sympathetic nerve injury, retroperitoneal hematoma and artificial vertebral body displacement occurred in these patients.
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10.3760/CMA.J.ISSN.1001-8050.2019.04.003
Objective
To investigate the effect of anterior artificial vertebral body reconstruction and internal fixation after the failed posterior thoracolumbar fracture surgery.
Objective
To investigate the effect of anterior artificial vertebral body reconstruction and internal fixation after the failed posterior thoracolumbar fracture surgery.
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10.1016/j.wneu.2019.03.238
After the operation of 3D printing assisted anterior debridement and artificial vertebral body replacement, his preoperative symptoms of neck pain and stiffness were apparently alleviated, and the symptoms of both upper limb numbness disappeared completely.
After the operation of 3D printing assisted anterior debridement and artificial vertebral body replacement, his preoperative symptoms of neck pain and stiffness were apparently alleviated, and the symptoms of both upper limb numbness disappeared completely.
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10.3760/CMA.J.ISSN.1001-8050.2019.06.003
Artificial vertebral body and screw loosening were observed on lateral X-ray or CT sagittal reconstruction images.
Artificial vertebral body and screw loosening were observed on lateral X-ray or CT sagittal reconstruction images.
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10.1007/s00330-019-06263-z
MethodsA spine phantom containing three artificial vertebral bodies with known HA densities was measured to obtain spectral data using DLCT and quantitative CT (QCT), simulating different patient positions and grades of obesity.
MethodsA spine phantom containing three artificial vertebral bodies with known HA densities was measured to obtain spectral data using DLCT and quantitative CT (QCT), simulating different patient positions and grades of obesity.
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10.1186/s13018-019-1432-2
BackgroundTo compare the biomechanical properties of a novel height-adjustable nano-hydroxyapatite/polyamide-66 vertebral body (HAVB) with the titanium mesh cage (TMC) and artificial vertebral body (AVB), and evaluate its biomechanical efficacy in spinal stability reconstruction.
BackgroundTo compare the biomechanical properties of a novel height-adjustable nano-hydroxyapatite/polyamide-66 vertebral body (HAVB) with the titanium mesh cage (TMC) and artificial vertebral body (AVB), and evaluate its biomechanical efficacy in spinal stability reconstruction.
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Versus Vertebral
Osteoporotic Vertebral
Posterior Vertebral
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Radiographic Vertebral
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Human Vertebral
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Complex Vertebral
Native Vertebral
Rotational Vertebral
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Percutaneous Vertebral
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Blunt Vertebral
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