Sperm selection in assisted reproduction: A review of established methods and cutting-edge possibilities.
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Alessandra Ferramosca | Giuseppe Maruccio | Elisabetta Primiceri | Maria Serena Chiriacò | Giuseppina Marzano | Maria Elena Dell'Aquila | João Ramalho-Santos | Vincenzo Zara | M. Chiriacò | E. Primiceri | G. Maruccio | A. Ferramosca | V. Zara | G. Marzano | J. Ramalho‐Santos | M. Dell’Aquila | M. E. Dell’Aquila
[1] F. Tseng,et al. High-throughput flowing upstream sperm sorting in a retarding flow field for human semen analysis. , 2017, The Analyst.
[2] F. Pisanello,et al. Single-cell-based evaluation of sperm progressive motility via fluorescent assessment of mitochondria membrane potential , 2017, Scientific Reports.
[3] R. Henkel. Leukocytes and oxidative stress: dilemma for sperm function and male fertility. , 2011, Asian journal of andrology.
[4] K. Jarvi,et al. The hypo-osmotic swelling test for selection of viable sperm for intracytoplasmic sperm injection in men with complete asthenozoospermia. , 1996, Fertility and sterility.
[5] R. Bronson,et al. The source and significance of DNA damage in human spermatozoa; a commentary on diagnostic strategies and straw man fallacies. , 2013, Molecular human reproduction.
[6] A. Arango,et al. Recovery of motile sperm using the migration-sedimentation technique in an in-vitro fertilization-embryo transfer programme. , 1989, Human reproduction.
[7] Ashok Agarwal,et al. A unique view on male infertility around the globe , 2015, Reproductive Biology and Endocrinology.
[8] Alessandro Romano,et al. Lab-on-Chip for Exosomes and Microvesicles Detection and Characterization , 2018, Sensors.
[9] A. Agarwal,et al. Magnetic-activated Cell Sorting before Cryopreservation Preserves Mitochondrial Integrity in Human Spermatozoa , 2005, Cell and Tissue Banking.
[10] G. Martin,et al. Phosphatidylserine externalization in human sperm induced by calcium ionophore A23187: relationship with apoptosis, membrane scrambling and the acrosome reaction. , 2005, Human reproduction.
[11] A. Agarwal,et al. Suitability of the hypo-osmotic swelling test for assessing the viability of cryopreserved sperm. , 1996, Fertility and sterility.
[12] O. Cinar,et al. Does combining magnetic-activated cell sorting with density gradient or swim-up improve sperm selection? , 2016, Journal of Assisted Reproduction and Genetics.
[13] Gary D. Smith,et al. Microfluidics for Sperm Selection , 2015 .
[14] Tailang Yin,et al. A novel microfluidic device for selecting human sperm to increase the proportion of morphologically normal, motile sperm with uncompromised DNA integrity , 2015 .
[15] R. Henkel,et al. Differentiation of ejaculates showing reactive oxygen species production by spermatozoa or leukocytes , 2009, Andrologia.
[16] T. Almeida-Santos,et al. Dual use of Diff-Quik-like stains for the simultaneous evaluation of human sperm morphology and chromatin status. , 2008, Human reproduction.
[17] R. Henkel. Sperm preparation: state-of-the-art--physiological aspects and application of advanced sperm preparation methods. , 2012, Asian journal of andrology.
[18] E. Baldi,et al. Variation of DNA Fragmentation Levels During Density Gradient Sperm Selection for Assisted Reproduction Techniques , 2016, Medicine.
[19] A. Sheikhi,et al. Elimination of apoptotic spermatozoa by magnetic‐activated cell sorting improves the fertilization rate of couples treated with ICSI procedure , 2013, Andrology.
[20] F. Vialard,et al. High-magnification sperm selection does not decrease the aneuploidy rate in patients who are heterozygous for reciprocal translocations , 2013, Journal of Assisted Reproduction and Genetics.
[21] Hong-Yuan Huang,et al. Laminar stream-based microfluidic chip with high efficiency for human sperm motility sorting , 2010, 2010 IEEE International Conference on Nano/Molecular Medicine and Engineering.
[22] David Miller,et al. Sedimentation properties in density gradients correspond with levels of sperm DNA fragmentation, chromatin compaction and binding affinity to hyaluronic acid. , 2017, Reproductive biomedicine online.
[23] R. Porcher,et al. Predicting the clinical outcome of ICSI by sperm head vacuole examination , 2017, Systems biology in reproductive medicine.
[24] Shuichi Takayama,et al. Isolation of motile spermatozoa from semen samples using microfluidics. , 2003, Reproductive biomedicine online.
[25] R. Demir,et al. Cellular maturity and apoptosis in human sperm: creatine kinase, caspase-3 and Bcl-XL levels in mature and diminished maturity sperm. , 2004, Molecular human reproduction.
[26] M. Nasr-Esfahani,et al. Evaluation of sperm selection procedure based on hyaluronic acid binding ability on ICSI outcome , 2008, Journal of Assisted Reproduction and Genetics.
[27] L. Zaneveld,et al. Human sperm selection by glass wool filtration and two-layer, discontinuous Percoll gradient centrifugation. , 1989, Fertility and sterility.
[28] V. Núñez,et al. Impact of the Z potential technique on reducing the sperm DNA fragmentation index, fertilization rate and embryo development , 2017, JBRA assisted reproduction.
[29] R. Aitken,et al. Analysis of the relationships between oxidative stress, DNA damage and sperm vitality in a patient population: development of diagnostic criteria. , 2010, Human reproduction.
[30] T. Almeida-Santos,et al. Evaluation of human sperm chromatin status after selection using a modified Diff‐Quik stain indicates embryo quality and pregnancy outcomes following in vitro fertilization , 2013, Andrology.
[31] R. Lafuente,et al. Use of high-magnification microscopy for the assessment of sperm recovered after two different sperm processing methods. , 2011, Fertility and sterility.
[32] P. Kolm,et al. Clinical significance of human sperm-zona pellucida binding. , 1997, Fertility and sterility.
[33] A. Aflatoonian,et al. Large nuclear vacuoles in spermatozoa negatively affect pregnancy rate in IVF cycles , 2015, Iranian journal of reproductive medicine.
[34] R. Chattopadhyay,et al. Selection of birefringent spermatozoa under Polscope: effect on intracytoplasmic sperm injection outcome , 2012, Andrologia.
[35] Ji-Young Park,et al. Efficient isolation of sperm with high DNA integrity and stable chromatin packaging by a combination of density-gradient centrifugation and magnetic-activated cell sorting , 2016, Clinical and experimental reproductive medicine.
[36] Nasresfahani Mohammad Hossein,et al. Selection of Sperm Based on Hypo-Osmotic Swelling May Improve ICSI Outcome: A Preliminary Prospective Clinical Trial. , 2014 .
[37] J. Siffroi,et al. Different Levels of DNA Methylation Detected in Human Sperms after Morphological Selection Using High Magnification Microscopy , 2016, BioMed research international.
[38] G. Lin,et al. A noninvasive, motility independent, sperm sorting method and technology to identify and retrieve individual viable nonmotile sperm for intracytoplasmic sperm injection. , 2010, The Journal of urology.
[39] Jie Qiao,et al. In vitro fertilization on a single-oocyte positioning system integrated with motile sperm selection and early embryo development. , 2011, Analytical chemistry.
[40] T. Vutyavanich,et al. No difference in high-magnification morphology and hyaluronic acid binding in the selection of euploid spermatozoa with intact DNA. , 2013, Asian journal of andrology.
[41] Shuichi Takayama,et al. Passively driven integrated microfluidic system for separation of motile sperm. , 2003, Analytical chemistry.
[42] Hong-Yuan Huang,et al. Enhanced efficiency of sorting sperm motility utilizing a microfluidic chip , 2017 .
[43] L. Lipshultz,et al. Male Infertility Diagnosis and Treatment in the Era of In Vitro Fertilization and Intracytoplasmic Sperm Injection. , 2017, The Medical clinics of North America.
[44] A. Erdem,et al. The gradient technique improves success rates in intrauterine insemination cycles of unexplained subfertile couples when compared to swim up technique; a prospective randomized study. , 2014, Journal of Assisted Reproduction and Genetics.
[45] S. Ozkavukcu,et al. A comparative evaluation of migration sedimentation method for sperm preparation , 2018, Systems biology in reproductive medicine.
[46] J. Gosálvez,et al. Types, Causes, Detection and Repair of DNA Fragmentation in Animal and Human Sperm Cells , 2012, International journal of molecular sciences.
[47] M. Nasr-Esfahani,et al. Density gradient centrifugation before or after magnetic-activated cell sorting: which technique is more useful for clinical sperm selection? , 2011, Journal of Assisted Reproduction and Genetics.
[48] E. Unsal,et al. Effects of pentoxifylline and platelet activating factor on sperm DNA damage. , 2016, European journal of obstetrics, gynecology, and reproductive biology.
[49] J. Morrell,et al. Flow Cytometric Chromosomal Sex Sorting of Stallion Spermatozoa Induces Oxidative Stress on Mitochondria and Genomic DNA. , 2016, Reproduction in domestic animals = Zuchthygiene.
[50] Giuseppe Maruccio,et al. Cell chips as new tools for cell biology--results, perspectives and opportunities. , 2013, Lab on a chip.
[51] Chang-Yu Chen,et al. Sperm quality assessment via separation and sedimentation in a microfluidic device. , 2013, The Analyst.
[52] S. Abbas,et al. Magnetic activated cell sorting: an effective method for reduction of sperm DNA fragmentation in varicocele men prior to assisted reproductive techniques , 2014, Andrologia.
[53] R. Aitken,et al. Prospective controlled trial of an electrophoretic method of sperm preparation for assisted reproduction: comparison with density gradient centrifugation. , 2008, Human reproduction.
[54] Yona Barak,et al. Real-time fine morphology of motile human sperm cells is associated with IVF-ICSI outcome. , 2002, Journal of andrology.
[55] A. D. de Andrade,et al. Transmission electron microscopy for characterization of acrosomal damage after Percoll gradient centrifugation of cryopreserved bovine spermatozoa , 2011, Journal of veterinary science.
[56] Ciler Celik Ozenci,et al. Hyaluronic acid binding by human sperm indicates cellular maturity, viability, and unreacted acrosomal status. , 2003, Fertility and sterility.
[57] H. Mohri,et al. Human X- and Y-bearing sperm differ in cell surface sialic acid content. , 1984, Biochemical and biophysical research communications.
[58] H. Bostedt,et al. Effect of sperm motility on separation of bovine X‐ and Y‐bearing spermatozoa by means of free‐flow electrophoresis , 2009, Andrologia.
[59] G. Ricci,et al. Semen preparation methods and sperm apoptosis: swim-up versus gradient-density centrifugation technique. , 2009, Fertility and sterility.
[60] R. Henkel. Novel Sperm Tests and Their Importance , 2015 .
[61] D. Franken,et al. Relationship between human spermatozoa–hyaluronan‐binding assay, conventional semen parameters and fertilisation rates in intracytoplasmic spermatozoa injection , 2015, Andrologia.
[62] M. Tavalaee,et al. Clinical outcomes of magnetic activated sperm sorting in infertile men candidate for ICSI , 2019, Human fertility.
[63] J. Sperl,et al. An improved method of sperm selection by glass wool filtration , 2001, Andrologia.
[64] K. P. Katayama,et al. In vitro fertilization outcome: glass wool-filtered sperm versus swim-up sperm. , 1989, Fertility and sterility.
[65] T. Nagai,et al. Sex-sorting of spermatozoa affects developmental competence of in vitro fertilized oocytes in a bull-dependent manner , 2016, The Journal of reproduction and development.
[66] Hyun Jung Kim,et al. Application of Sperm Selection Using Hyaluronic Acid Binding in Intracytoplasmic Sperm Injection Cycles: A Sibling Oocyte Study , 2012, Journal of Korean medical science.
[67] Simon McDowell,et al. Advanced sperm selection techniques for assisted reproduction. , 2014, The Cochrane database of systematic reviews.
[68] A. Agarwal,et al. Effects of magnetic-activated cell sorting on sperm motility and cryosurvival rates. , 2005, Fertility and sterility.
[69] J. Fedder,et al. DNA fragmentation in spermatozoa: a historical review , 2017, Andrology.
[70] L. Henry,et al. Impact of high magnification sperm selection on neonatal outcomes: a retrospective study , 2018, Journal of Assisted Reproduction and Genetics.
[71] S. Grunewald,et al. Molecular glass wool filtration as a new tool for sperm preparation. , 2007, Human reproduction.
[72] M. Antinori,et al. Intracytoplasmic morphologically selected sperm injection: a prospective randomized trial. , 2008, Reproductive biomedicine online.
[73] S. Grunewald,et al. Enrichment of non–apoptotic human spermatozoa after cryopreservation by immunomagnetic cell sorting , 2004, Cell and Tissue Banking.
[74] David J Collins,et al. Fluorescence activated cell sorting via a focused traveling surface acoustic beam. , 2017, Lab on a chip.
[75] G. Collodel,et al. Natural Sperm Birefringence Can be Used to Estimate Sperm Viability and Morphology , 2010, Systems biology in reproductive medicine.
[76] Hadi Shafiee,et al. Selection of Functional Human Sperm with Higher DNA Integrity and Fewer Reactive Oxygen Species , 2014, Advanced healthcare materials.
[77] D. Braga,et al. Intracytoplasmic morphologically selected sperm injection results in improved clinical outcomes in couples with previous ICSI failures or male factor infertility: a meta-analysis. , 2014, European journal of obstetrics, gynecology, and reproductive biology.
[78] B. Kovačič,et al. Are sperm DNA fragmentation, hyperactivation, and hyaluronan-binding ability predictive for fertilization and embryo development in in vitro fertilization and intracytoplasmic sperm injection? , 2013, Fertility and sterility.
[79] A. Agarwal,et al. Selection of Nonapoptotic Spermatozoa As a New Tool for Enhancing Assisted Reproduction Outcomes: An In Vitro Model1 , 2006, Biology of reproduction.
[80] K. Aston,et al. Optimization of microelectrophoresis to select highly negatively charged sperm , 2016, Journal of Assisted Reproduction and Genetics.
[81] E. Araújo Filho,et al. Comparison of two sperm processing techniques for low complexity assisted fertilization: sperm washing followed by swim-up and discontinuous density gradient centrifugation , 2016, JBRA assisted reproduction.
[82] A. Lobascio,et al. Traditional intracytoplasmic sperm injection provides equivalent outcomes compared with human zona pellucida-bound selected sperm injection , 2013, Zygote.
[83] L. Yogev,et al. Separation of sperm cells by sedimentation technique is not suitable for in vitro fertilization purposes , 2009, Andrologia.
[84] N. Raine-Fenning,et al. Regular (ICSI) versus ultra-high magnification (IMSI) sperm selection for assisted reproduction. , 2013, The Cochrane database of systematic reviews.
[85] J. Qiao,et al. Integration of sperm motility and chemotaxis screening with a microchannel-based device. , 2010, Clinical chemistry.
[86] R. Jeyendran,et al. Chromatin intact human sperm recovery is higher following glass wool column filtration as compared with density gradient centrifugation , 2012, Andrologia.
[87] R. Bertolla,et al. Semen processing by density gradient centrifugation does not improve sperm apoptotic deoxyribonucleic acid fragmentation rates. , 2008, Fertility and sterility.
[88] A. Setti,et al. The prevalence of sperm with large nuclear vacuoles is a prognostic tool in the prediction of ICSI success , 2014, Journal of Assisted Reproduction and Genetics.
[89] A. Agarwal,et al. The relationship between human sperm apoptosis, morphology and the sperm deformity index. , 2007, Human reproduction.
[90] G. Mutter,et al. Sperm processing for advanced reproductive technologies: Where are we today? , 2016, Biotechnology advances.
[91] A. Lenzi,et al. Nuclear chromatin variations in human spermatozoa undergoing swim-up and cryopreservation evaluated by the flow cytometric sperm chromatin structure assay. , 1999, Molecular human reproduction.
[92] S. Gullo,et al. The pellet swim-up is the best technique for sperm preparation during in vitro fertilization procedures , 2016, Journal of Assisted Reproduction and Genetics.
[93] G. Viot,et al. Low birth defects by deselecting abnormal spermatozoa before ICSI. , 2014, Reproductive biomedicine online.
[94] G. Almahbobi,et al. Hypo-osmotic swelling test identifies individual spermatozoa with minimal DNA fragmentation. , 2010, Reproductive biomedicine online.
[95] D. Pereira,et al. Hyaluronan-binding system for sperm selection enhances pregnancy rates in ICSI cycles associated with male factor infertility , 2017, JBRA assisted reproduction.
[96] J. Risopatrón,et al. Evaluation of nuclear maturity in human spermatozoa obtained by sperm‐preparation methods , 2009, Andrologia.
[97] Chun-Chia Huang,et al. Magnetic-activated cell sorting for sperm preparation reduces spermatozoa with apoptotic markers and improves the acrosome reaction in couples with unexplained infertility. , 2010, Human reproduction.
[98] D. Garner. Flow cytometric sexing of mammalian sperm. , 2006, Theriogenology.
[99] M. Nasr-Esfahani,et al. Selection of sperm based on combined density gradient and Zeta method may improve ICSI outcome. , 2009, Human reproduction.
[100] G. Wood,et al. Positive rheotaxis extended drop: a one-step procedure to select and recover sperm with mature chromatin for intracytoplasmic sperm injection , 2017, Journal of Assisted Reproduction and Genetics.
[101] Adnan Kaya,et al. Clinical outcome of magnetic activated cell sorting of non-apoptotic spermatozoa before density gradient centrifugation for assisted reproduction , 2008, Journal of Assisted Reproduction and Genetics.
[102] R. Aitken,et al. The electrophoretic separation of spermatozoa: an analysis of genotype, surface carbohydrate composition and potential for capacitation. , 2011, International Journal of Andrology.
[103] S. Coskun,et al. Effects of the hypo-osmotic swelling test on the outcome of intracytoplasmic sperm injection for patients with only nonmotile spermatozoa available for injection: a prospective randomized trial. , 2001, Fertility and sterility.
[104] Diego Ardissino,et al. Key Enabling Technologies for Point-of-Care Diagnostics , 2018, Sensors.
[105] M. Chiriacò,et al. Fabrication of interconnected multilevel channels in a monolithic SU-8 structure using a LOR sacrificial layer , 2016 .
[106] R. Cingolani,et al. Development of EIS cell chips and their application for cell analysis , 2009 .
[107] C. Uğuz,et al. Various physical stress factors on rat sperm motility, integrity of acrosome, and plasma membrane. , 2008, Journal of andrology.
[108] Tae Yoon Lee,et al. An integrated microfluidic chip for one-step isolation of circulating tumor cells , 2017 .
[109] T. Said,et al. Effects of advanced selection methods on sperm quality and ART outcome: a systematic review. , 2011, Human reproduction update.
[110] M. Nasr-Esfahani,et al. Sperm Selection Based on Surface Electrical Charge , 2015 .
[111] J. K. Sherman,et al. Effect of glass wool filtration on ultrastructure of human spermatozoa. , 1981, Fertility and Sterility.
[112] A. Chiaravalle,et al. Altered morphokinetics in equine embryos from oocytes exposed to DEHP during IVM , 2019, Molecular reproduction and development.
[113] Bruce K Gale,et al. Separation of sperm cells from samples containing high concentrations of white blood cells using a spiral channel. , 2017, Biomicrofluidics.
[114] Brian D. Plouffe,et al. Perspective on Microfluidic Cell Separation: A Solved Problem? , 2014, Analytical chemistry.
[115] N. Gatimel,et al. Intracytoplasmic morphologically selected sperm injection (IMSI) does not improve outcome in patients with two successive IVF-ICSI failures , 2016, Journal of Assisted Reproduction and Genetics.
[116] L. Parmegiani,et al. Efficiency of hyaluronic acid (HA) sperm selection , 2009, Journal of Assisted Reproduction and Genetics.
[117] L. Gianaroli,et al. Sperm head's birefringence: a new criterion for sperm selection. , 2008, Fertility and sterility.
[118] Blanca H. Lapizco-Encinas,et al. Sperm cells manipulation employing dielectrophoresis , 2013, Bioprocess and Biosystems Engineering.
[119] S. Banihani,et al. The activity of seminal creatine kinase is increased in the presence of pentoxifylline , 2016, Andrologia.
[120] M. Tomlinson,et al. Reduced Senescence and Retained Nuclear DNA Integrity in Human Spermatozoa Prepared by Density Gradient Centrifugation , 2004, Journal of Assisted Reproduction and Genetics.
[121] M. Nasr-Esfahani,et al. Zeta potential vs apoptotic marker: which is more suitable for ICSI sperm selection? , 2013, Journal of Assisted Reproduction and Genetics.
[122] L. Yogev,et al. Migration sedimentation technique as a predictive test for the fertilizing capacity of spermatozoa in an in-vitro fertilization programme. , 1992, International journal of andrology.
[123] M. Koutsilieris,et al. Improving ICSI: A review from the spermatozoon perspective , 2016, Systems biology in reproductive medicine.
[124] Y. Zhou,et al. Effects of semen processing on the generation of reactive oxygen species and mitochondrial membrane potential of human spermatozoa , 2012, Andrologia.
[125] G. Quan,et al. Effects of Hoechst33342 staining on the viability and flow cytometric sex-sorting of frozen-thawed ram sperm. , 2015, Cryobiology.
[126] Katie Feenan,et al. Intracytoplasmic sperm injection using hyaluronic acid or polyvinylpyrrolidone: a time-lapse sibling oocyte study , 2019, Human fertility.
[127] R. Cortvrindt,et al. Papaverine as a replacement for pentoxifylline to select thawed testicular or epididymal spermatozoa before ICSI. , 2015, Gynécologie Obstétrique & Fertilité.
[128] M. Meseguer,et al. Removal of annexin V-positive sperm cells for intracytoplasmic sperm injection in ovum donation cycles does not improve reproductive outcome: a controlled and randomized trial in unselected males. , 2014, Fertility and sterility.
[129] D. Sinton,et al. Rapid selection of sperm with high DNA integrity. , 2014, Lab on a chip.
[130] H. Gourabi,et al. Zeta Sperm Selection Improves Pregnancy Rate and Alters Sex Ratio in Male Factor Infertility Patients: A Double-Blind, Randomized Clinical Trial , 2016, International journal of fertility & sterility.
[131] V. Nordhoff. How to select immotile but viable spermatozoa on the day of intracytoplasmic sperm injection? An embryologist's view , 2015, Andrology.
[132] D. Pizzol,et al. Sperm selected by both birefringence and motile sperm organelle morphology examination have reduced deoxyribonucleic acid fragmentation. , 2014, Fertility and sterility.
[133] T. Takeuchi,et al. Preparation and incubation conditions affect the DNA integrity of ejaculated human spermatozoa. , 2010, Asian journal of andrology.
[134] R. Mahfouz,et al. Non-apoptotic Sperm Selection , 2015 .
[135] Steven L Neale,et al. Motile and non-motile sperm diagnostic manipulation using optoelectronic tweezers. , 2010, Lab on a chip.
[136] E. Katz,et al. High fertilization rate obtained after intracytoplasmic sperm injection with 100% nonmotile spermatozoa selected by using a simple modified hypo-osmotic swelling test. , 1997, Fertility and sterility.
[137] F. Vialard,et al. High-magnification selection of spermatozoa prior to oocyte injection: confirmed and potential indications. , 2014, Reproductive biomedicine online.
[138] Bolan Yu,et al. Epigenetic Alterations in Density Selected Human Spermatozoa for Assisted Reproduction , 2015, PloS one.
[139] D. Braga,et al. Sperm morphological normality under high magnification is correlated to male infertility and predicts embryo development , 2018, Andrology.
[140] D. Le Lannou,et al. Interest of pentoxifylline in ICSI with frozen-thawed testicular spermatozoa from patients with non-obstructive azoospermia. , 2006, Reproductive biomedicine online.
[141] S. Ishijima,et al. Separation of X- and Y-chromosome-bearing murine sperm by free-flow electrophoresis: evaluation of separation using PCR. , 1992, Zoological science.
[142] A. Agarwal,et al. Comparative study on density gradients and swim-up preparation techniques utilizing neat and cryopreserved spermatozoa. , 2005, Asian journal of andrology.
[143] B. Balaban,et al. Clinical outcome of intracytoplasmic injection of spermatozoa morphologically selected under high magnification: a prospective randomized study. , 2011, Reproductive biomedicine online.
[144] J. Yovich,et al. Preliminary results using pentoxifylline in a pronuclear stage tubal transfer (PROST) program for severe male factor infertility. , 1988, Fertility and sterility.
[145] K. Jarvi,et al. Influence of initial semen quality on the integrity of human sperm DNA following semen processing. , 2000, Fertility and sterility.
[146] R. Scholler,et al. A ‘migration-gravity sedimentation’ method for collecting motile spermatozoa from human semen , 1984 .
[147] R. Henkel,et al. Selective capacity of glass-wool filtration for the separation of human spermatozoa with condensed chromatin: A possible therapeutic modality for male-factor cases? , 1994, Journal of Assisted Reproduction and Genetics.
[148] Simcha K. Mirsky,et al. Individual sperm selection by microfluidics integrated with interferometric phase microscopy. , 2017, Methods.
[149] J. Zhao,et al. Outcomes of intracytoplasmic sperm injection using the zona pellucida-bound sperm or manually selected sperm , 2016, Journal of Assisted Reproduction and Genetics.
[150] M. Okuno,et al. Zeta potential of human X- and Y-bearing sperm. , 1991, International journal of andrology.
[151] M. A. Checa,et al. Sperm selection using magnetic activated cell sorting (MACS) in assisted reproduction: a systematic review and meta-analysis , 2013, Journal of Assisted Reproduction and Genetics.
[152] A. Zini,et al. Are tests of sperm DNA damage clinically useful? Pros and cons. , 2009, Journal of andrology.
[153] R. Henkel,et al. A novel approach for the selection of human sperm using annexin V-binding and flow cytometry. , 2009, Fertility and sterility.
[154] M. Vazquez-Levin,et al. A comparative analysis of sperm selection procedures prior to cryopreservation for Nili-Ravi buffalo bull (Bubalus bubalis) semen-: Assessment of its impact on post-thaw sperm functional quality. , 2016, Animal reproduction science.
[155] M. B. Herrero,et al. The use of complimentary assays to evaluate the enrichment of human sperm quality in asthenoteratozoospermic and teratozoospermic samples processed with Annexin‐V magnetic activated cell sorting , 2013, Andrology.
[156] M. Štimpfel,et al. Magnetic-activated cell sorting of non-apoptotic spermatozoa improves the quality of embryos according to female age: a prospective sibling oocyte study , 2018, Journal of Assisted Reproduction and Genetics.
[157] S. Miyamoto,et al. Separation efficiency of a microfluidic sperm sorter to minimize sperm DNA damage. , 2016, Fertility and sterility.
[158] R. Jeyendran,et al. SPERM PROCESSING: GLASS WOOL COLUMN FILTRATION , 2001, Archives of andrology.
[159] S. Mathur,et al. Comparison of two sperm preparation techniques using automated sperm motion analysis: migration sedimentation versus swim-up. , 1990, Archives of andrology.
[160] A. Coomarasamy,et al. Hyaluronic Acid Binding Sperm Selection for assisted reproduction treatment (HABSelect): study protocol for a multicentre randomised controlled trial , 2016, BMJ Open.
[161] R. Henkel,et al. Sperm preparation for ART , 2003, Reproductive biology and endocrinology : RB&E.
[162] R. Kumar,et al. Assisted Reproductive Techniques in Farm Animal - From Artificial Insemination to Nanobiotechnology , 2012 .
[163] S. Glina,et al. Sperm tail flexibility test: a simple test for selecting viable spermatozoa for intracytoplasmic sperm injection from semen samples without motile spermatozoa. , 2003, Revista do Hospital das Clinicas.
[164] K. Frey. Male reproductive health and infertility. , 2010, Primary care.
[165] R. Felmer,et al. Bovine sperm separation by Swim-up and density gradients (Percoll and BoviPure): Effect on sperm quality, function and gene expression. , 2017, Reproductive biology.
[166] W. Schill,et al. Sperm selection methods for intracytoplasmic sperm injection (ICSI) in andrological patients , 1996, Journal of Assisted Reproduction and Genetics.
[167] H. Baker,et al. Comparison of outcomes of conventional intracytoplasmic sperm injection and intracytoplasmic sperm injection using sperm bound to the zona pellucida of immature oocytes. , 2010, Fertility and sterility.
[168] T. Rebai,et al. Assessment of Chromatin Maturity in Human Spermatozoa: Useful Aniline Blue Assay for Routine Diagnosis of Male Infertility , 2013, Advances in urology.
[169] S. Kaali,et al. The role of hyaluronic acid binding assay in choosing the fertilization method for patients undergoing IVF for unexplained infertility , 2010, Journal of Assisted Reproduction and Genetics.
[170] R. Baruffi,et al. Pregnancy outcomes in women with repeated implantation failures after intracytoplasmic morphologically selected sperm injection (IMSI) , 2011, Reproductive biology and endocrinology : RB&E.
[171] Bruce K. Gale,et al. Non-motile sperm cell separation using a spiral channel , 2015 .
[172] D. Karabinus. Flow cytometric sorting of human sperm: MicroSort clinical trial update. , 2009, Theriogenology.
[173] P. Navarro,et al. Magnetic‐activated cell sorting before density gradient centrifugation improves recovery of high‐quality spermatozoa , 2017, Andrology.
[174] P. Piomboni,et al. Detrimental effects of polyvinylpyrrolidone on the ultrastructure of spermatozoa (Notulae seminologicae 13). , 1998, Human reproduction.
[175] V. Rawe,et al. Correlation between aneuploidy, apoptotic markers and DNA fragmentation in spermatozoa from normozoospermic patients. , 2014, Reproductive biomedicine online.
[176] D. Chardonnens,et al. Removal of spermatozoa with externalized phosphatidylserine from sperm preparation in human assisted medical procreation: effects on viability, motility and mitochondrial membrane potential , 2009, Reproductive biology and endocrinology : RB&E.
[177] M. Nasr-Esfahani,et al. Evaluation of ubiquitin and annexin V in sperm population selected based on density gradient centrifugation and zeta potential (DGC-Zeta) , 2012, Journal of Assisted Reproduction and Genetics.
[178] Gabriel P López,et al. Translating microfluidics: Cell separation technologies and their barriers to commercialization , 2017, Cytometry. Part B, Clinical cytometry.
[179] A. Borini,et al. Annexin V magnetic-activated cell sorting versus swim-up for the selection of human sperm in ART: is the new approach better then the traditional one? , 2011, Journal of Assisted Reproduction and Genetics.
[180] W. Patton,et al. A simple zeta method for sperm selection based on membrane charge. , 2006, Fertility and sterility.
[181] F. Nodar,et al. Relationship Between Sperm DNA Fragmentation and Nuclear Vacuoles. , 2015, JBRA assisted reproduction.
[182] A. van den Berg,et al. Towards microfluidic sperm refinement: impedance-based analysis and sorting of sperm cells. , 2016, Lab on a chip.
[183] A Berkovitz,et al. Selection of spermatozoa with normal nuclei to improve the pregnancy rate with intracytoplasmic sperm injection. , 2001, The New England journal of medicine.
[184] G. Hodgen,et al. Functional aspects of human sperm binding to the zona pellucida using the hemizona assay. , 1991, Journal of andrology.
[185] Suhee Kim,et al. Effects of various physical stress factors on mitochondrial function and reactive oxygen species in rat spermatozoa. , 2013, Reproduction, fertility, and development.
[186] Utkan Demirci,et al. Microfluidic sorting selects sperm for clinical use with reduced DNA damage compared to density gradient centrifugation with swim-up in split semen samples , 2018, Human reproduction.
[187] K. Alzoubi,et al. Pentoxifylline increases the level of nitric oxide produced by human spermatozoa , 2018, Andrologia.
[188] A. Freitas,et al. Not All Sperm Are Equal: Functional Mitochondria Characterize a Subpopulation of Human Sperm with Better Fertilization Potential , 2011, PloS one.
[189] G. Klarmann,et al. Continuous-flow sorting of stem cells and differentiation products based on dielectrophoresis. , 2015, Lab on a chip.
[190] S. Takayama,et al. Rethinking gamete/embryo isolation and culture with microfluidics. , 2003, Human reproduction update.
[191] K. Aston,et al. Micro-electrophoresis: a noninvasive method of sperm selection based on membrane charge. , 2015, Fertility and sterility.
[192] Claudia G Petersen,et al. Efficacy of hyaluronic acid binding assay in selecting motile spermatozoa with normal morphology at high magnification , 2010, Reproductive biology and endocrinology : RB&E.
[193] F. Liu,et al. Use of zona pellucida-bound sperm for intracytoplasmic sperm injection produces higher embryo quality and implantation than conventional intracytoplasmic sperm injection. , 2011, Fertility and sterility.
[194] R. Jansen,et al. First recorded pregnancy and normal birth after ICSI using electrophoretically isolated spermatozoa. , 2007, Human reproduction.
[195] H. Tournaye,et al. Does intracytoplasmic morphologically selected sperm injection improve embryo development? A randomized sibling-oocyte study. , 2013, Human reproduction.
[196] C.N. Fang,et al. The effects of magnetic separation on cryopreserved bovine spermatozoa motility, viability and cryo-capacitation status , 2012, Zygote.
[197] Y. Nagao,et al. Effect of polyvinylpyrrolidone on sperm function and early embryonic development following intracytoplasmic sperm injection in human assisted reproduction , 2012, Reproductive medicine and biology.
[198] X. Gao,et al. Selection of viable human spermatozoa with low levels of DNA fragmentation from an immotile population using density gradient centrifugation and magnetic‐activated cell sorting , 2018, Andrologia.
[199] J. Brannian,et al. Density gradient centrifugation and glass wool filtration of semen remove spermatozoa with damaged chromatin structure. , 1999, Human reproduction.
[200] A. Farrag,et al. The use of the modified hypo-osmotic swelling test for the selection of immotile testicular spermatozoa in patients treated with ICSI: a randomized controlled study. , 2005, Human reproduction.
[201] M. Nasr-Esfahani,et al. Is there an association between HOST grades and sperm quality? , 2012, Human reproduction.
[202] A. Córdova-Izquierdo,et al. Sexing sperm of domestic animals , 2012, Tropical Animal Health and Production.
[203] N. Pamme,et al. Continuous sorting of magnetic cells via on-chip free-flow magnetophoresis. , 2006, Lab on a chip.
[204] R. Porcher,et al. Is intracytoplasmic morphologically selected sperm injection effective in patients with infertility related to teratozoospermia or repeated implantation failure? , 2013, Fertility and sterility.
[205] S. Hwang,et al. Design, Fabrication, and Testing of a Microfluidic Device for Thermotaxis and Chemotaxis Assays of Sperm , 2018, SLAS technology.
[206] J. Tesarik,et al. High-magnification ICSI overcomes paternal effect resistant to conventional ICSI. , 2006, Reproductive biomedicine online.
[207] A. Setti,et al. Sperm morphological normality under high magnification predicts laboratory and clinical outcomes in couples undergoing ICSI , 2015, Human fertility.
[208] Bernard Lejeune,et al. Blastocyst development after sperm selection at high magnification is associated with size and number of nuclear vacuoles. , 2008, Reproductive biomedicine online.
[209] L. Parmegiani,et al. "Physiologic ICSI": hyaluronic acid (HA) favors selection of spermatozoa without DNA fragmentation and with normal nucleus, resulting in improvement of embryo quality. , 2010, Fertility and sterility.
[210] H. Lunardhi,et al. Better sperm selection for intracytoplasmic sperm injection with the side migration technique , 2001, Andrologia.
[211] I. Taşdemir,et al. Effect of pentoxifylline on immotile testicular spermatozoa , 2007, Journal of Assisted Reproduction and Genetics.
[212] Amjad Butt,et al. Comparative efficacy of density gradient and swim-up methods of semen preparation in intrauterine insemination cycles. , 2016, JPMA. The Journal of the Pakistan Medical Association.
[213] H. Bostedt,et al. Enrichment of bovine X and Y spermatozoa by free-flow electrophoresis. , 1994, Zentralblatt fur Veterinarmedizin. Reihe A.
[214] L. Kiesel,et al. Optimizing TESE‐ICSI by laser‐assisted selection of immotile spermatozoa and polarization microscopy for selection of oocytes , 2013, Andrology.
[215] H. Zeyneloglu,et al. Detection of chromosomal abnormalities by fluorescent in-situ hybridization in immotile viable spermatozoa determined by hypo-osmotic sperm swelling test. , 2000, Human reproduction.
[216] K. Keyvanfar,et al. Preimplantation diagnosis: Gender preselection in humans? Flow cytometric separation of X and Y spermatozoa for the prevention of X-linked diseases , 1993 .
[217] M. Sharma,et al. Can intracytoplasmic Morphologically Selected Spermatozoa Injection be Used as First Choice of Treatment for Severe Male Factor Infertility Patients? , 2018, Journal of human reproductive sciences.
[218] David Beebe,et al. Engineers are from PDMS-land, Biologists are from Polystyrenia. , 2012, Lab on a chip.
[219] A. Farrag,et al. The use of a modified hypo-osmotic swelling test for the selection of viable ejaculated and testicular immotile spermatozoa in ICSI. , 2001, Human reproduction.
[220] R. Bhouri,et al. Sperm fluorescence in situ hybridization study in nine men carrying a Robertsonian or a reciprocal translocation: relationship between segregation modes and high-magnification sperm morphology examination. , 2011, Fertility and sterility.
[221] Katja Knez,et al. The IMSI procedure improves poor embryo development in the same infertile couples with poor semen quality: A comparative prospective randomized study , 2011, Reproductive biology and endocrinology : RB&E.
[222] Wenhao Shi,et al. Efficacy of swim-up versus density gradient centrifugation in improving sperm deformity rate and DNA fragmentation index in semen samples from teratozoospermic patients , 2014, Journal of Assisted Reproduction and Genetics.
[223] A. Iaconelli,et al. Outcome of ICSI using zona pellucida-bound spermatozoa and conventionally selected spermatozoa. , 2009, Reproductive biomedicine online.
[224] O. Shebl,et al. Pharmacological stimulation of sperm motility in frozen and thawed testicular sperm using the dimethylxanthine theophylline. , 2011, Fertility and sterility.
[225] M. Chehrazi,et al. Hyaluronic Acid Binding Assay Is Highly Sensitive to Select Human Spermatozoa with Good Progressive Motility, Morphology, and Nuclear Maturity , 2015, Gynecologic and Obstetric Investigation.
[226] S. Oehninger,et al. Sperm Binding to the Zona Pellucida, Hyaluronic Acid Binding Assay, and PICSI , 2015 .
[227] B. Dale,et al. DNA damage and repair in human oocytes and embryos: a review , 2010, Zygote.
[228] R. Baruffi,et al. Relationship between DNA damage and sperm head birefringence. , 2010, Reproductive biomedicine online.
[229] D. Upadhya,et al. Combination of swim-up and density gradient separation methods effectively eliminate DNA damaged sperm. , 2011, Journal of the Turkish German Gynecological Association.
[230] L. Gianaroli,et al. Birefringence characteristics in sperm heads allow for the selection of reacted spermatozoa for intracytoplasmic sperm injection. , 2010, Fertility and sterility.
[231] P. Devroey,et al. Pregnancies after intracytoplasmic injection of single spermatozoon into an oocyte , 1992, The Lancet.
[232] S. Hwang,et al. Separation of Progressive Motile Sperm from Mouse Semen Using On-chip Chemotaxis , 2012, Analytical Sciences.
[233] M. Nasr-Esfahani,et al. New era in sperm selection for ICSI. , 2012, International journal of andrology.
[234] M. Nasr-Esfahani,et al. Can Zeta sperm selection method, recover sperm with higher DNA integrity compare to density gradient centrifugation? , 2009 .
[235] G. Palermo,et al. Intracytoplasmic Injection with Suboptimal Spermatozoa , 2015 .
[236] P. Ryan,et al. Nanotechnology-based approach for safer enrichment of semen with best spermatozoa , 2019, Journal of Animal Science and Biotechnology.
[237] I. Katkov,et al. Influence of centrifugation regimes on motility, yield, and cell associations of mouse spermatozoa. , 1998, Journal of andrology.
[238] L. Gianaroli,et al. Head birefringence properties are associated with acrosome reaction, sperm motility and morphology. , 2012, Reproductive biomedicine online.
[239] D. Sakkas. Novel technologies for selecting the best sperm for in vitro fertilization and intracytoplasmic sperm injection. , 2013, Fertility and sterility.
[240] D. Bercovich,et al. The significance of human spermatozoa vacuoles can be elucidated by a novel procedure of array comparative genomic hybridization , 2018, Human reproduction.
[241] G. B. Mourão,et al. Quality assessment of bovine cryopreserved sperm after sexing by flow cytometry and their use in in vitro embryo production. , 2010, Theriogenology.
[242] J. Gosálvez,et al. The ability of sperm selection techniques to remove single- or double-strand DNA damage. , 2011, Asian journal of andrology.
[243] H. Ye,et al. Relationship between human sperm-hyaluronan binding assay and fertilization rate in conventional in vitro fertilization. , 2006, Human reproduction.
[244] S. Desai,et al. Selection of viable spermatozoa from testicular biopsies: a comparative study between pentoxifylline and hypoosmotic swelling test. , 2011, Fertility and sterility.
[245] P. Piomboni,et al. The role of mitochondria in energy production for human sperm motility. , 2012, International journal of andrology.
[246] W-J Zhu. Preparation and observation methods can produce misleading artefacts in human sperm ultrastructural morphology , 2018, Andrologia.
[247] W. Feichtinger,et al. Comparison of in vitro fertilization outcomes in ICSI cycles after human sperm preparation by density gradient centrifugation and direct micro swim-up without centrifugation , 2017, JBRA assisted reproduction.
[248] P. Sims,et al. Caspase-Independent Exposure of Aminophospholipids and Tyrosine Phosphorylation in Bicarbonate Responsive Human Sperm Cells1 , 2003, Biology of reproduction.
[249] J. Mullen,et al. Sperm Dna Integrity: Correlation With Sperm Plasma Membrane Integrity In Semen Evaluated For Male Infertility , 2005, Archives of andrology.
[250] Lodovico Parmegiani,et al. Comparison of two ready-to-use systems designed for sperm-hyaluronic acid binding selection before intracytoplasmic sperm injection: PICSI vs. Sperm Slow: a prospective, randomized trial. , 2012, Fertility and sterility.
[251] Umut A. Gurkan,et al. Lensless imaging for simultaneous microfluidic sperm monitoring and sorting. , 2011, Lab on a chip.
[252] Utkan Demirci,et al. Guidance and Self‐Sorting of Active Swimmers: 3D Periodic Arrays Increase Persistence Length of Human Sperm Selecting for the Fittest , 2017, Advanced science.
[253] Marcos,et al. Dielectrophoresis of spermatozoa in viscoelastic medium , 2015, Electrophoresis.
[254] A. Agarwal,et al. Advantage of combining magnetic cell separation with sperm preparation techniques. , 2005, Reproductive biomedicine online.
[255] G E Seidel,et al. High pressure flow cytometric sorting damages sperm. , 2005, Theriogenology.
[256] M. Rubin,et al. Response to cooling of pony stallion semen selected by glass wool filtration , 2017, Andrologia.
[257] P. Itsykson,et al. Is fine morphology of the human sperm nuclei affected by in vitro incubation at 37°C? , 2007 .
[258] Z. Molnár,et al. Is sperm hyaluronic acid binding ability predictive for clinical success of intracytoplasmic sperm injection: PICSI vs. ICSI? , 2014, Systems biology in reproductive medicine.
[259] M. Mandrioli,et al. The use of two density gradient centrifugation techniques and the swim-up method to separate spermatozoa with chromatin and nuclear DNA anomalies. , 2000, Human reproduction.
[260] S. Grunewald,et al. Immunomagnetic removal of cryo-damaged human spermatozoa. , 2005, Asian journal of andrology.
[261] M. Sakatani,et al. Live births from artificial insemination of microfluidic-sorted bovine spermatozoa characterized by trajectories correlated with fertility , 2018, Proceedings of the National Academy of Sciences.
[262] L. Zaneveld,et al. Development of an assay to assess the functional integrity of the human sperm membrane and its relationship to other semen characteristics. , 1984, Journal of reproduction and fertility.
[263] J. Paulson,et al. A glass wool column procedure for removing extraneous material from the human ejaculate. , 1977, Fertility and sterility.
[264] Haim Breitbart,et al. Thermotaxis of mammalian sperm cells: A potential navigation mechanism in the female genital tract , 2003, Nature Medicine.
[265] C. De Geyter,et al. Isolation of spermatozoa with low levels of fragmented DNA with the use of flow cytometry and sorting. , 2013, Fertility and sterility.
[266] Z. Nagy,et al. Comparison of different hypo-osmotic swelling solutions to select viable immotile spermatozoa for potential use in intracytoplasmic sperm injection. , 1997, Human reproduction update.
[267] Erhan Şimşek,et al. Effects of the microfluidic chip technique in sperm selection for intracytoplasmic sperm injection for unexplained infertility: a prospective, randomized controlled trial , 2018, Journal of Assisted Reproduction and Genetics.
[268] Daniel Luna,et al. The IMSI Procedure Improves Laboratory and Clinical Outcomes Without Compromising the Aneuploidy Rate When Compared to the Classical ICSI Procedure , 2015, Clinical medicine insights. Reproductive health.
[269] I. Schiff,et al. Preparation by differential gradient centrifugation is better than swim-up in selecting sperm with normal morphology (strict criteria). , 1998, Fertility and sterility.
[270] M. Martinelli,et al. Comparative proteomic analysis of spermatozoa isolated by swim-up or density gradient centrifugation , 2015, Reproductive Biology and Endocrinology.
[271] Da-Jeng Yao,et al. Motile Human Sperm Sorting by an Integrated Microfluidic System , 2014 .
[272] Savas Tasoglu,et al. Exhaustion of racing sperm in nature-mimicking microfluidic channels during sorting. , 2013, Small.
[273] Yong-wei Wang,et al. Assessment of density gradient centrifugation (DGC) and sperm chromatin dispersion (SCD) measurements in couples with male factor infertility undergoing ICSI , 2014, Journal of Assisted Reproduction and Genetics.
[274] A. Ballesteros,et al. Spermatozoa with numerical chromosomal abnormalities are more prone to be retained by Annexin V‐MACS columns , 2017, Andrology.
[275] A Zini,et al. Influence of semen processing technique on human sperm DNA integrity. , 2000, Urology.
[276] J. Phelps,et al. Spontaneously developed tail swellings (SDTS) influence the accuracy of the hypo-osmotic swelling test (HOS-test) in determining membrane integrity and viability of human spermatozoa , 2010, Journal of Assisted Reproduction and Genetics.
[277] F. Gagsteiger,et al. Glass wool filtration leads to a higher percentage of spermatozoa with intact acrosomes: an ultrastructural analysis. , 1998, Human reproduction.
[278] Kyung-Ah Lee,et al. Comparison of the effect of different media on the clinical outcomes of the density-gradient centrifugation/swim-up and swim-up methods , 2015, Clinical and experimental reproductive medicine.
[279] D. Braga,et al. Intracytoplasmic morphologically selected sperm injection outcomes: the role of sperm preparation techniques , 2013, Journal of Assisted Reproduction and Genetics.
[280] M. Chehrazi,et al. Evaluation of conventional semen parameters, intracellular reactive oxygen species, DNA fragmentation and dysfunction of mitochondrial membrane potential after semen preparation techniques: a flow cytometric study , 2013, Archives of Gynecology and Obstetrics.
[281] Yona Barak,et al. Pregnancy rates are higher with intracytoplasmic morphologically selected sperm injection than with conventional intracytoplasmic injection. , 2003, Fertility and sterility.
[282] D. Upadhya,et al. Sperm processing by swim-up and density gradient is effective in elimination of sperm with DNA damage , 2012, Journal of Assisted Reproduction and Genetics.
[283] W. Patton,et al. Retention of membrane charge attributes by cryopreserved-thawed sperm and zeta selection , 2007, Journal of Assisted Reproduction and Genetics.
[284] K. Ivani,et al. Use of hyaluronan in the selection of sperm for intracytoplasmic sperm injection (ICSI): significant improvement in clinical outcomes—multicenter, double-blinded and randomized controlled trial , 2012, Human reproduction.
[285] M. Nasr-Esfahani,et al. Evaluation of zeta and HA‐binding methods for selection of spermatozoa with normal morphology, protamine content and DNA integrity , 2010, Andrologia.
[286] J. Van der Elst,et al. Relationship between hyaluronic acid binding assay and outcome in ART: a pilot study , 2010, Andrologia.
[287] E. Shalev,et al. Clinical benefit using sperm hyaluronic acid binding technique in ICSI cycles: a systematic review and meta-analysis. , 2016, Reproductive biomedicine online.
[288] A. Abbaspourrad,et al. Rheotaxis-based separation of sperm with progressive motility using a microfluidic corral system , 2018, Proceedings of the National Academy of Sciences.
[289] I. Zorrilla,et al. Annexin V-MACS in infertile couples as method for separation of sperm without DNA fragmentation. , 2015, JBRA assisted reproduction.
[290] Alberto Revelli,et al. Intracytoplasmic sperm injection: a novel selection method for sperm with normal frequency of chromosomal aneuploidies. , 2005, Fertility and sterility.
[291] M. Eisenbach,et al. Sperm guidance in mammals — an unpaved road to the egg , 2006, Nature Reviews Molecular Cell Biology.
[292] A. Agarwal,et al. Increased sperm chromatin decondensation in selected nonapoptotic spermatozoa of patients with male infertility. , 2009, Fertility and sterility.
[293] C. Giorgetti,et al. Pentoxifylline Initiates Motility in Spontaneously Immotile Epididymal and Testicular Spermatozoa and Allows Normal Fertilization, Pregnancy, and Birth After Intracytoplasmic Sperm Injection , 2000, Journal of Assisted Reproduction and Genetics.
[294] Sheng-Hsiang Li,et al. The efficiency of conventional microscopic selection is comparable to the hyaluronic acid binding method in selecting spermatozoa for male infertility patients. , 2015, Taiwanese journal of obstetrics & gynecology.
[295] M. Sousa,et al. DNA fragmentation in human sperm after magnetic-activated cell sorting , 2014, Journal of Assisted Reproduction and Genetics.
[296] D. Braga,et al. Sperm morphological abnormalities visualised at high magnification predict embryonic development, from fertilisation to the blastocyst stage, in couples undergoing ICSI , 2014, Journal of Assisted Reproduction and Genetics.
[297] C. Roberts,et al. Consistent presence of two normally distributed sperm subpopulations within normozoospermic human semen: a kinematic study. , 2004, International journal of andrology.
[298] Y. Englert,et al. Glass wool column filtration, an advantageous way of preparing semen samples for intracytoplasmic sperm injection: an auto-controlled randomized study. , 1997, Human reproduction.
[299] E. Carnevale,et al. Use of microfluidics to sort stallion sperm for intracytoplasmic sperm injection. , 2019, Animal reproduction science.
[300] F. Iacoponi,et al. Light, polarizing, and transmission electron microscopy: Three methods for the evaluation of sperm quality , 2013, Systems biology in reproductive medicine.
[301] R. Gaillyová,et al. The effect of the swim-up and hyaluronan-binding methods on the frequency of abnormal spermatozoa detected by FISH and SCSA in carriers of balanced chromosomal translocations. , 2012, Human reproduction.
[302] D. Beebe,et al. Microfluidic technology for assisted reproduction. , 2002, Theriogenology.
[303] Z. C. Feng,et al. Development of sorting, aligning, and orienting motile sperm using microfluidic device operated by hydrostatic pressure , 2007 .
[304] Ying-pu Sun,et al. Processing of semen by density gradient centrifugation selects spermatozoa with longer telomeres for assisted reproduction techniques. , 2015, Reproductive biomedicine online.
[305] J. Castilla,et al. Obstetric and neo-natal outcomes of ICSI cycles using pentoxifylline to identify viable spermatozoa in patients with immotile spermatozoa. , 2017, Reproductive biomedicine online.
[306] B. Baccetti. Microscopical advances in assisted reproduction. , 2004, Journal of submicroscopic cytology and pathology.
[307] Chankyu Park,et al. Increase of ICSI efficiency with hyaluronic acid binding sperm for low aneuploidy frequency in pig. , 2005, Theriogenology.
[308] C. Lombard,et al. Glass wool filter preparation of cryopreserved spermatozoa , 2009, Andrologia.
[309] M. Montag,et al. Use of a laser to detect viable but immotile spermatozoa , 2004, Andrologia.
[310] B. Kovačič,et al. Clinical use of pentoxifylline for activation of immotile testicular sperm before ICSI in patients with azoospermia. , 2006, Journal of andrology.
[311] Yi Zhang,et al. Generation of Gradients on a Microfluidic Device: Toward a High-Throughput Investigation of Spermatozoa Chemotaxis , 2015, PloS one.
[312] I. Amiri,et al. Comparison of the DNA Fragmentation and the Sperm Parameters after Processing by the Density Gradient and the Swim up Methods. , 2012, Journal of clinical and diagnostic research : JCDR.