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Published in: Journal of Neuro-Oncology 1/2016

01-10-2016 | Clinical Study

Predictive model for recovery of visual field after surgery of pituitary adenoma

Authors: Junwon Lee, Seung Woo Kim, Dong Wook Kim, Joo Youn Shin, Moonjung Choi, Min Chul Oh, Seung Min Kim, Eui Hyun Kim, Sun Ho Kim, Suk Ho Byeon

Published in: Journal of Neuro-Oncology | Issue 1/2016

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Abstract

Visual field defect is a major indication for surgery of pituitary adenoma, but visual outcome after surgery is difficult to predict. We developed a nomogram that predicts postoperative restoration of visual field defects in patients with pituitary adenoma. This study was a retrospective cohort investigation of patients who were treated for pituitary adenoma between January 2009 and December 2013. We enrolled 111 eyes of 57 patients who completed one ophthalmological evaluation preoperatively and at least two evaluations within 6 months after surgery. Serial changes in visual fields and retinal nerve fiber layer (RNFL) thickness were evaluated. Multiple logistic regression analysis was performed to select prognostic variables, and a nomogram to predict restoration of visual field defects was constructed. Visual field defects continuously improved until 3 months after surgery. However, average, superior, and inferior RNFL thickness continuously decreased until 6 months after surgery. Multiple logistic regression analysis revealed that worse preoperative visual field defect (p = 0.018), high MRI compression grade (p = 0.009), and inferior RNFL thinning (p = 0.011) were significantly associated with worse visual outcome. The nomogram that predicts the visual restoration showed an area under the receiver operating characteristic curve of 0.84. In conclusion, we developed a nomogram that predicted the restoration of visual field defects after removal of pituitary adenoma. This would allow tailored counseling of individual patients by precisely predicting visual recovery after surgery.
Literature
1.
go back to reference Kerrison JB, Lynn MJ, Baer CA, Newman SA, Biousse V, Newman NJ (2000) Stages of improvement in visual fields after pituitary tumor resection. Am J Ophthalmol 130:813–820CrossRefPubMed Kerrison JB, Lynn MJ, Baer CA, Newman SA, Biousse V, Newman NJ (2000) Stages of improvement in visual fields after pituitary tumor resection. Am J Ophthalmol 130:813–820CrossRefPubMed
2.
go back to reference Powell M (1995) Recovery of vision following transsphenoidal surgery for pituitary adenomas. Br J Neurosurg 9:367–373CrossRefPubMed Powell M (1995) Recovery of vision following transsphenoidal surgery for pituitary adenomas. Br J Neurosurg 9:367–373CrossRefPubMed
3.
go back to reference Gnanalingham KK, Bhattacharjee S, Pennington R, Ng J, Mendoza N (2005) The time course of visual field recovery following transphenoidal surgery for pituitary adenomas: predictive factors for a good outcome. J Neurol Neurosurg Psychiatr 76:415–419CrossRefPubMedPubMedCentral Gnanalingham KK, Bhattacharjee S, Pennington R, Ng J, Mendoza N (2005) The time course of visual field recovery following transphenoidal surgery for pituitary adenomas: predictive factors for a good outcome. J Neurol Neurosurg Psychiatr 76:415–419CrossRefPubMedPubMedCentral
6.
go back to reference Parmar DN, Sofat A, Bowman R, Bartlett JR, Holder GE (2000) Visual prognostic value of the pattern electroretinogram in chiasmal compression. Br J Ophthalmol 84:1024–1026CrossRefPubMedPubMedCentral Parmar DN, Sofat A, Bowman R, Bartlett JR, Holder GE (2000) Visual prognostic value of the pattern electroretinogram in chiasmal compression. Br J Ophthalmol 84:1024–1026CrossRefPubMedPubMedCentral
8.
go back to reference Peter M, De Tribolet N (1995) Visual outcome after transsphenoidal surgery for pituitary adenomas. Br J Neurosurg 9:151–157CrossRefPubMed Peter M, De Tribolet N (1995) Visual outcome after transsphenoidal surgery for pituitary adenomas. Br J Neurosurg 9:151–157CrossRefPubMed
9.
go back to reference Sullivan LJ, O’Day J, McNeill P (1991) Visual outcomes of pituitary adenoma surgery. St. Vincent’s Hospital 1968–1987. J Clin Neuroophthalmol 11:262–267PubMed Sullivan LJ, O’Day J, McNeill P (1991) Visual outcomes of pituitary adenoma surgery. St. Vincent’s Hospital 1968–1987. J Clin Neuroophthalmol 11:262–267PubMed
12.
go back to reference Danesh Meyer HV, Papchenko T, Savino PJ, Law A, Evans J, Gamble GD (2008) In vivo retinal nerve fiber layer thickness measured by optical coherence tomography predicts visual recovery after surgery for parachiasmal tumors. Invest Ophthalmol Vis Sci 49:1879–1885CrossRefPubMed Danesh Meyer HV, Papchenko T, Savino PJ, Law A, Evans J, Gamble GD (2008) In vivo retinal nerve fiber layer thickness measured by optical coherence tomography predicts visual recovery after surgery for parachiasmal tumors. Invest Ophthalmol Vis Sci 49:1879–1885CrossRefPubMed
13.
go back to reference Jacob M, Raverot G, Jouanneau E, Borson Chazot F, Perrin G, Rabilloud M, Tilikete C, Bernard M, Vighetto A (2009) Predicting visual outcome after treatment of pituitary adenomas with optical coherence tomography. Am J Ophthalmol 147(64–70):e62 Jacob M, Raverot G, Jouanneau E, Borson Chazot F, Perrin G, Rabilloud M, Tilikete C, Bernard M, Vighetto A (2009) Predicting visual outcome after treatment of pituitary adenomas with optical coherence tomography. Am J Ophthalmol 147(64–70):e62
14.
go back to reference Danesh Meyer HV, Carroll SC, Foroozan R, Savino PJ, Fan J, Jiang Y, Vander Hoorn S (2006) Relationship between retinal nerve fiber layer and visual field sensitivity as measured by optical coherence tomography in chiasmal compression. Invest Ophthalmol Vis Sci 47:4827–4835CrossRefPubMed Danesh Meyer HV, Carroll SC, Foroozan R, Savino PJ, Fan J, Jiang Y, Vander Hoorn S (2006) Relationship between retinal nerve fiber layer and visual field sensitivity as measured by optical coherence tomography in chiasmal compression. Invest Ophthalmol Vis Sci 47:4827–4835CrossRefPubMed
16.
go back to reference Shults W (1998) Compressive optic neuropathies. In: Miller NR, Newman NJ (eds) Walsh and Hoyt’s clinical neuro-ophthalmology, 5th edn. Williams and Wilkins, Baltimore, pp 657–658 Shults W (1998) Compressive optic neuropathies. In: Miller NR, Newman NJ (eds) Walsh and Hoyt’s clinical neuro-ophthalmology, 5th edn. Williams and Wilkins, Baltimore, pp 657–658
17.
go back to reference Marcus M, Vitale S, Calvert PC, Miller NR (1991) Visual parameters in patients with pituitary adenoma before and after transsphenoidal surgery. Aust N Z J Ophthalmol 19:111–118CrossRefPubMed Marcus M, Vitale S, Calvert PC, Miller NR (1991) Visual parameters in patients with pituitary adenoma before and after transsphenoidal surgery. Aust N Z J Ophthalmol 19:111–118CrossRefPubMed
18.
go back to reference Kanamori A, Nakamura M, Matsui N, Nagai A, Nakanishi Y, Kusuhara S, Yamada Y, Negi A (2004) Optical coherence tomography detects characteristic retinal nerve fiber layer thickness corresponding to band atrophy of the optic discs. Ophthalmology 111:2278–2283CrossRefPubMed Kanamori A, Nakamura M, Matsui N, Nagai A, Nakanishi Y, Kusuhara S, Yamada Y, Negi A (2004) Optical coherence tomography detects characteristic retinal nerve fiber layer thickness corresponding to band atrophy of the optic discs. Ophthalmology 111:2278–2283CrossRefPubMed
19.
go back to reference Moura FC, Medeiros FA, Monteiro ML (2007) Evaluation of macular thickness measurements for detection of band atrophy of the optic nerve using optical coherence tomography. Ophthalmology 114:175–181CrossRefPubMed Moura FC, Medeiros FA, Monteiro ML (2007) Evaluation of macular thickness measurements for detection of band atrophy of the optic nerve using optical coherence tomography. Ophthalmology 114:175–181CrossRefPubMed
20.
go back to reference Moon CH, Hwang SC, Kim B, Ohn Y, Park TK (2011) Visual prognostic value of optical coherence tomography and photopic negative response in chiasmal compression. Invest Ophthalmol Vis Sci 52:8527–8533CrossRefPubMed Moon CH, Hwang SC, Kim B, Ohn Y, Park TK (2011) Visual prognostic value of optical coherence tomography and photopic negative response in chiasmal compression. Invest Ophthalmol Vis Sci 52:8527–8533CrossRefPubMed
21.
go back to reference Mikelberg FS, Yidegiligne HM (1993) Axonal loss in band atrophy of the optic nerve in craniopharyngioma: a quantitative analysis. Can J Ophthalmol 28:69–71PubMed Mikelberg FS, Yidegiligne HM (1993) Axonal loss in band atrophy of the optic nerve in craniopharyngioma: a quantitative analysis. Can J Ophthalmol 28:69–71PubMed
22.
go back to reference Monteiro ML, Moura FC, Medeiros FA (2007) Diagnostic ability of optical coherence tomography with a normative database to detect band atrophy of the optic nerve. Am J Ophthalmol 143:896–899CrossRefPubMed Monteiro ML, Moura FC, Medeiros FA (2007) Diagnostic ability of optical coherence tomography with a normative database to detect band atrophy of the optic nerve. Am J Ophthalmol 143:896–899CrossRefPubMed
23.
go back to reference Araie M (2013) Test–retest variability in structural parameters measured with glaucoma imaging devices. Jpn J Ophthalmol 57:1–24CrossRefPubMed Araie M (2013) Test–retest variability in structural parameters measured with glaucoma imaging devices. Jpn J Ophthalmol 57:1–24CrossRefPubMed
24.
go back to reference Moon CH, Hwang SC, Ohn Y, Park TK (2011) The time course of visual field recovery and changes of retinal ganglion cells after optic chiasmal decompression. Invest Ophthalmol Vis Sci 52:7966–7973CrossRefPubMed Moon CH, Hwang SC, Ohn Y, Park TK (2011) The time course of visual field recovery and changes of retinal ganglion cells after optic chiasmal decompression. Invest Ophthalmol Vis Sci 52:7966–7973CrossRefPubMed
26.
go back to reference Ikeda H, Yoshimoto T (1995) Visual disturbances in patients with pituitary adenoma. Acta Neurol Scand 92:157–160CrossRefPubMed Ikeda H, Yoshimoto T (1995) Visual disturbances in patients with pituitary adenoma. Acta Neurol Scand 92:157–160CrossRefPubMed
Metadata
Title
Predictive model for recovery of visual field after surgery of pituitary adenoma
Authors
Junwon Lee
Seung Woo Kim
Dong Wook Kim
Joo Youn Shin
Moonjung Choi
Min Chul Oh
Seung Min Kim
Eui Hyun Kim
Sun Ho Kim
Suk Ho Byeon
Publication date
01-10-2016
Publisher
Springer US
Published in
Journal of Neuro-Oncology / Issue 1/2016
Print ISSN: 0167-594X
Electronic ISSN: 1573-7373
DOI
https://doi.org/10.1007/s11060-016-2227-5

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