Scientific Papers

Decrease in electrolyte after vitrectomy surgery may affect the results of forensic investigations using vitreous humor | BMC Ophthalmology


  • Mathur A, Agrawal Y. An overview of methods used for estimation of time since death. Australian J Forensic Sci. 2011;43(4):275–85.

    Article 

    Google Scholar
     

  • Madea B. Methods for determining time of death. Forensic Sci Med Pathol. 2016;12(4):451–85.

    Article 
    PubMed 

    Google Scholar
     

  • Henssge C, Madea B. Estimation of the time since death in the early post-mortem period. Forensic Sci Int. 2004;144(2–3):167–75.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Arroyo A, Rosel P, Marron T. Cerebrospinal fluid: postmortem biochemical study. J Clin Forensic Med. 2005;12(3):153–6.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Madea B. Is there recent progress in the estimation of the postmortem interval by means of thanatochemistry? Forensic Sci Int. 2005;151(2–3):139–49.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Harper D. A comparative study of the microbiological contamination of postmortem blood and vitreous humour samples taken for ethanol determination. Forensic Sci Int. 1989;43(1):37–44.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Farmer J, Benomran F, Watson A, Harland W. Magnesium, potassium, sodium and calcium in post-mortem vitreous humour from humans. Forensic Sci Int. 1985;27(1):1–13.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Bourne RR, Stevens GA, White RA, Smith JL, Flaxman SR, Price H, et al. Causes of vision loss worldwide, 1990–2010: a systematic analysis. Lancet Global Health. 2013;1(6):e339–49.

    Article 
    PubMed 

    Google Scholar
     

  • Lundström M, Goh P-P, Henry Y, Salowi MA, Barry P, Manning S, et al. The changing pattern of cataract surgery indications: a 5-year study of 2 cataract surgery databases. Ophthalmology. 2015;122(1):31–8.

    Article 
    PubMed 

    Google Scholar
     

  • Kessel L. Can we meet the future demands for cataract surgery? Acta Ophthalmol. 2011;89(3):e289–90.

    Article 
    PubMed 

    Google Scholar
     

  • Tuulonen A, Salminen H, Linna M, Perkola M. The need and total cost of Finnish eyecare services: a simulation model for 2005–2040. Acta Ophthalmol. 2009;87(8):820-9.

    Article 
    PubMed 

    Google Scholar
     

  • Kaneko H, Takayama K, Asami T, Ito Y, Tsunekawa T, Iwase T, et al. Cytokine profiling in the sub-silicone oil fluid after vitrectomy surgeries for refractory retinal diseases. Sci Rep. 2017;7(1):2640.

    Article 
    PubMed 
    PubMed Central 

    Google Scholar
     

  • Goto K, Iwase T, Yamamoto K, Ra E, Terasaki H. Correlations between intraretinal cystoid cavities and pre-and postoperative characteristics of eyes after closure of idiopathic macular hole. Sci Rep. 2020;10(1):23101–9.

    Article 
    CAS 
    PubMed 
    PubMed Central 

    Google Scholar
     

  • Kobayashi M, Iwase T, Yamamoto K, Ra E, Murotani K, Terasaki H. Perioperative factors that are significantly correlated with final visual acuity in eyes after successful rhegmatogenous retinal detachment surgery. PLoS ONE. 2017;12(9):e0184783.

    Article 
    PubMed 
    PubMed Central 

    Google Scholar
     

  • Kaneko H, Asami T, Sugita T, Tsunekawa T, Matsuura T, Takayama K, et al. Better visual outcome by intraocular lens ejection in geriatric patients with ruptured ocular injuries. PLoS ONE. 2017;12(1):e0170094.

    Article 
    PubMed 
    PubMed Central 

    Google Scholar
     

  • Takayama K, Kaneko H, Hwang S-J, Ye F, Higuchi A, Tsunekawa T, et al. Increased ocular levels of MicroRNA-148a in cases of retinal detachment promote epithelial–mesenchymal transition. Investig Ophthalmol Vis Sci. 2016;57(6):2699–705.

    Article 

    Google Scholar
     

  • Kaneko H, Hirata N, Shimizu H, Kataoka K, Nonobe N, Mokuno K, et al. Effect of internal limiting membrane peeling on visual field sensitivity in eyes with epiretinal membrane accompanied by glaucoma with hemifield defect and myopia. Jpn J Ophthalmol. 2021;65(3):380–7.

    Article 
    PubMed 

    Google Scholar
     

  • Yamada K, Kaneko H, Tsunekawa T, Shimizu H, Suzumura A, Namba R, et al. Silicone oil-associated retinal light exposure under a surgical microscope. Acta Ophthalmol. 2019;97(5):e742–6.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Namba R, Kaneko H, Suzumura A, Shimizu H, Kataoka K, Takayama K, et al. In Vitro Epiretinal membrane model and antibody permeability: Relationship with Anti-VEGF Resistance in Diabetic Macular Edema. Investig Ophthalmol Vis Sci. 2019;60(8):2942–9.

    Article 
    CAS 

    Google Scholar
     

  • Williams G. 25-, 23-, or 20-gauge instrumentation for vitreous surgery? Eye. 2008;22(10):1263–6.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Wubben TJ, Talwar N, Blachley TS, Gardner TW, Johnson MW, Lee PP, et al. Rates of vitrectomy among enrollees in a United States managed care network, 2001–2012. Ophthalmology. 2016;123(3):590–8.

    Article 
    PubMed 

    Google Scholar
     

  • Gisladottir S, Loftsson T, Stefansson E. Diffusion characteristics of vitreous humour and saline solution follow the Stokes Einstein equation. Graefe’s Archive Clin Experimental Ophthalmol. 2009;247(12):1677–84.

    Article 

    Google Scholar
     

  • Chen Y-Y, Chen P-Y, Chen F-T, Chen Y-J, Wang J-K. Comparison of efficacy of intravitreal ranibizumab between non-vitrectomized and vitrectomized eyes with diabetic macular edema. Int Ophthalmol. 2018;38(1):293–9.

    Article 
    PubMed 

    Google Scholar
     

  • Liang Y, Yan B, Meng Z, Xie M, Liang Z, Zhu Z et al. Comparison of inflammatory and angiogenic factors in the aqueous humor of vitrectomized and non-vitrectomized eyes in diabetic macular edema patients. Front Med. 2021; 8: 699254.

    Article 

    Google Scholar
     

  • Shimizu H, Kaneko H, Suzumura A, Takayama K, Namba R, Funahashi Y et al. Biological characteristics of subsilicone oil fluid and differences with other ocular humors. Translational vision science & technology. 2019;8:28.


    Google Scholar
     

  • Cunha ECD, Ordóñez-Mayán L, Vázquez MLR, Vieira DN, Febrero-Bande M, Barús JIM. The biochemistry of the vitreous humour in estimating the post-mortem interval-a review of the literature, and use in forensic practice in Galicia (northwestern Spain). Forensic Sci Med Pathol. 2023;19(2):236–65.

    Article 
    PubMed 

    Google Scholar
     

  • Kokavec J, Min SH, Tan MH, Gilhotra JS, Newland HS, Durkin SR, et al. Biochemical analysis of the living human vitreous. Clin Exp Ophthalmol. 2016;44(7):597–609.

    Article 
    PubMed 

    Google Scholar
     

  • Pigaiani N, Bertaso A, De Palo EF, Bortolotti F, Tagliaro F. Vitreous humor endogenous compounds analysis for post-mortem forensic investigation. Forensic Sci Int. 2020;310:110235.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Sturner WQ, Gantner GE Jr. The postmortem interval. a study of potassium in the vitreous humor. Am J Clin Pathol. 1964;42(2):137–44.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Hughes WM. Levels of potassium in the vitreous humour after death. Med Sci Law. 1965;5(3):150–6.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Tumram NK, Bardale RV, Dongre AP. Postmortem analysis of synovial fluid and vitreous humour for determination of death interval: a comparative study. Forensic Sci Int. 2011;204(1–3):186–90.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Swain R, Kumar A, Sahoo J, Lakshmy R, Gupta S, Bhardwaj D, et al. Estimation of post-mortem interval: a comparison between cerebrospinal fluid and vitreous humour chemistry. J Forensic Leg Med. 2015;36:144–8.

    Article 
    PubMed 

    Google Scholar
     

  • Sjöstrand J, Karlsson JO, Andersson AK. Changes in the soluble protein of the human vitreous in vitreoretinal disease. Acta Ophthalmol. 1992;70(6):814–9.

    Article 

    Google Scholar
     

  • Balasooriya BA, Hill CA, St, Williams AR. The biochemistry of vitreous humour. A comparative study of the potassium, sodium and urate concentrations in the eyes at identifical time intervals after death. Forensic Sci Int. 1984;26(2):85–91.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Madea B, Henssge C, Hönig W, Gerbracht A. References for determining the time of death by potassium in vitreous humor. Forensic Sci Int. 1989;40(3):231–43.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Belsey SL, Flanagan RJ. Postmortem biochemistry: current applications. J Forensic Leg Med. 2016;41:49–57.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Madea B, Ortmann J, Doberentz E. Estimation of the time since death-even methods with a low precision may be helpful in forensic casework. Forensic Sci Int. 2019;302:109879

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Madea B, Rödig A. Time of death dependent criteria in vitreous humor: accuracy of estimating the time since death. Forensic Sci Int. 2006;20(1642–3):87–92.

    Article 

    Google Scholar
     

  • Tse R, Garland J, Kesha K, Morrow P, Lam L, Elstub H, et al. Combining Postmortem vitreous sodium and chloride and lung-body ratio in aiding the Diagnosing saltwater drowning. Am J Forensic Med Pathol. 2018;39(3):229–35.

    Article 
    PubMed 

    Google Scholar
     

  • Madea B, Henssge C, Staak M. Postmortem increase in potassium in the vitreous humor. Which parameters are suitable as indicators of antemortem agonal electrolyte imbalance? Z fur Rechtsmedizin. 1986;97(4):259–68.

    CAS 

    Google Scholar
     

  • Pounder DJ, Carson DO, Johnston K, Orihara Y. Electrolyte concentration differences betw een left and right vitreous humor samples. J Forensic Sci. 1998;43(3):604–7.

    Article 
    CAS 
    PubMed 

    Google Scholar
     

  • Zhu D, Yang D-Y, Guo Y-Y, Zheng Y-F, Li J-L, Wang B et al. Intracameral interleukin 1β. 6, 8, 10, 12p, tumor necrosis factor α and vascular endothelial growth factor and axial length in patients with cataract. PLoS One. 2015;10(2):e0117777

    Article 
    PubMed 
    PubMed Central 

    Google Scholar
     



  • Source link