MRI-based breast volumetry-evaluation of three different software solutions.

lipofilling of the female breast is becoming more popular in plastic surgery, the use of MRI to assess breast volume has been employed to control postoperative results. Therefore, we sought to evaluate the accuracy of magnetic resonance imaging (MRI)-based breast volumetry software tools by comparin...

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Publicado en:Journal of Digital Imaging Vol. 23; no. 5; pp. 603 - 611
Autores principales: Herold C, Reichelt A, Stieglitz LH, Dettmer S, Knobloch K, Lotz J, Vogt PM
Formato: diagnostic images pictorial research tables/charts Journal Article
Publicado: Springer Nature Oct2010
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Oct2010
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      pub: Springer Nature
      place: New York, New York
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        atl: MRI-based breast volumetry-evaluation of three different software solutions.
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          Herold C
          Reichelt A
          Stieglitz LH
          Dettmer S
          Knobloch K
          Lotz J
          Vogt PM
        affil: Department of Plastic, Hand, and Reconstructive Surgery, Medizinische Hochschule Hannover, Carl-Neuberg-Str. 130625 Hannover, Germany; christianherold@gmx.de
      sug:
        subj:
          Breast Anatomy and Histology
          Breast Implants
          Breast Surgery
          Magnetic Resonance Imaging
          Surgery, Plastic Equipment and Supplies
          Human
          Breast Radiography
          Comparative Studies
          Software
          Body Weights and Measures Methods
          Image Interpretation, Computer Assisted
          Retrospective Design
          Female
          Adult
          Middle Age
          Data Analysis Software
          Pearson's Correlation Coefficient
          Repeated Measures
          Preoperative Care
          Adult: 19-44 years
          Middle Aged: 45-64 years
          Female
      ab: lipofilling of the female breast is becoming more popular in plastic surgery, the use of MRI to assess breast volume has been employed to control postoperative results. Therefore, we sought to evaluate the accuracy of magnetic resonance imaging (MRI)-based breast volumetry software tools by comparing the measurements of silicone implant augmented breasts with the actual implant volume specified by the manufacturer. MRI-based volume analysis was performed in eight bilaterally augmented patients (46 ± 9 years) with three different software programs (Brainlab© I plan 2.6 neuronavigation software; mass analysis, version 5.3, Medis©; and OsiriX© v.3.0.2. 32-bit). The implant volumes analysed by the BrainLab© software had a mean deviation of 2.2 ± 1.7% ( r = 0.99) relative to the implanted prosthesis. OsiriX© software analysis resulted in a mean deviation of 2.8 ± 3.0% ( r = 0.99) and the Medis© software had a mean deviation of 3.1 ± 3.0% ( r = 0.99). Overall, the volumes of all analysed breast implants correlated very well with the real implant volumes. Processing time was 10 min per breast with each system and 30 s (OsiriX©) to 5 min (BrainLab© and Medis©) per silicone implant. MRI-based volumetry is a powerful tool to calculate both native breast and silicone implant volume in situ. All software solutions performed well and the measurements were close to the actual implant sizes. The use of MRI breast volumetry may be helpful in: (1) planning reconstructive and aesthetic surgery of asymmetric breasts, (2) calculating implant size in patients with missing documentation of a previously implanted device and (3) assessing post-operative results objectively.
      pubtype: Academic Journal
      doctype:
        diagnostic images
        pictorial
        research
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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