2011Chinese Journal of General PracticeRequires access

Cranioplasty of Computer-Assisted Design for Frontal-Temporal-Parietal Skull Defect

Liu Ha

Open publisher page 0 citations

Abstract

Objective To explore the clinical effect of individualized cranioplasty of computer-assisted design in repairing skull defects.Methods Form Apr.2008 to Apr.2011,76 patients with skull defect were analyzed retrospectively,ultrathin cranial CT scan was performed before operation,the templates of skull defect were made under computer assistance.After patient's consent,the skull defect patches were manufactured with titanium-networks and were implanted by the operation.Results 76 patients were treated with skull repairing,the average operation duration was 65 minutes,among them,6 patients underwent ventriculo-peritoneal shunt before skull repairing.Postoperative complications were as follows: collection of fluid under the scalp was found in 6 cases,secondary bleeding in 3 cases,incision infection in 2 cases.Conclusion Individualized cranioplasty of computer-assisted design in repairing skull defects can restore patient's configuration,shorten the operation time,make operation easily,and had clinical spread value.

About this research paper

What this paper is about

Objective To explore the clinical effect of individualized cranioplasty of computer-assisted design in repairing skull defects.Methods Form Apr.2008 to Apr.2011,76 patients with skull defect were analyzed retrospectively,ultrathin cranial CT scan was performed before operation,the templates of skull defect were made under computer assistance.After patient's consent,the skull defect patches were manufactured with titanium-networks and were implanted by the operation.Results 76 patients were treated with skull repairing,the average operation duration was 65 minutes,among them,6 patients underwent ventriculo-peritoneal shunt before skull repairing.Postoperative complications were as follows: collection of fluid under the scalp was found in 6 cases,secondary bleeding in 3 cases,incision infection in 2 cases.Conclusion Individualized cranioplasty of computer-assisted design in repairing skull defects can restore patient's configuration,shorten the operation time,make operation easily,and had clinical spread value.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Objective To explore the clinical effect of individualized cranioplasty of computer-assisted design in repairing skull defects.Methods Form Apr.2008 to Apr.2011,76 patients with skull defect were analyzed retrospectively,ultrathin cranial CT scan was performed before operation,the templates of skull defect were made under computer assistance.After patient's consent,the skull defect patches were manufactured with titanium-networks and were implanted by the operation.Results 76 patients were treated with skull repairing,the average operation duration was 65 minutes,among them,6 patients underwent ventriculo-peritoneal shunt before skull repairing.Postoperative complications were as follows: collection of fluid under the scalp was found in 6 cases,secondary bleeding in 3 cases,incision infection in 2 cases.Conclusion Individualized cranioplasty of computer-assisted design in repairing skull defects can restore patient's configuration,shorten the operation time,make operation easily,and had clinical spread value.

Key concepts: Cranioplasty, Medicine, Skull, Scalp, Surgery, Shunt (medical), Parietal bone, Brain tissue

Related papers

Back to paper searchBrowse research topicsOriginal source
Cranioplasty of Computer-Assisted Design for Frontal-Temporal-Parietal Skull Defect — Research Paper | ScholarLens