From Scope to Screen: The Evolution of Histology Education.
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[1] Esther M. Bergman,et al. How much anatomy is enough? , 2008, Anatomical sciences education.
[2] T Harris,et al. Comparison of a virtual microscope laboratory to a regular microscope laboratory for teaching histology , 2001, The Anatomical record.
[3] R. Bonan,et al. Dental Students' Perceptions and Performance in Use of Conventional and Virtual Microscopy in Oral Pathology. , 2018, Journal of dental education.
[4] M. Cornelissen,et al. Remote histology learning from static versus dynamic microscopic images , 2016, Anatomical sciences education.
[5] A. Turing. On Computable Numbers, with an Application to the Entscheidungsproblem. , 1937 .
[6] B. Means,et al. The Effectiveness of Online and Blended Learning: A Meta-Analysis of the Empirical Literature , 2013, Teachers College Record: The Voice of Scholarship in Education.
[7] B. Turney,et al. Anatomy in a modern medical curriculum. , 2007, Annals of the Royal College of Surgeons of England.
[8] A. Jalali,et al. Go Where the Students Are: A Comparison of the Use of Social Networking Sites Between Medical Students and Medical Educators , 2015, JMIR medical education.
[9] Joseph de Acosta,et al. The natural history , 2009 .
[10] Esther M. Bergman,et al. Why don’t they know enough about anatomy? A narrative review , 2011, Medical teacher.
[11] J. Pickering,et al. A Practitioner’s Guide to Performing a Holistic Evaluation of Technology-Enhanced Learning in Medical Education , 2019, Medical Science Educator.
[12] R. Ogilvie,et al. Trends in histology laboratory teaching in United States medical schools. , 2006, Anatomical record. Part B, New anatomist.
[13] E. Deci,et al. Self-determination theory and the facilitation of intrinsic motivation, social development, and well-being. , 2000, The American psychologist.
[14] J. Subramony,et al. The Progress of Logwood Extract , 1998 .
[15] Rebecca L Pratt. Are we throwing histology out with the microscope? A look at histology from the physician's perspective , 2009, Anatomical sciences education.
[16] Anitta Mahonen,et al. Student-focused virtual histology education: Do new scenarios and digital technology matter? , 2017 .
[17] nd cent Ptolemy,et al. Ptolemy's theory of visual perception : an English translation of the Optics : with introduction and commentary , 1996 .
[18] Andrew H. Beck,et al. Computational pathology definitions, best practices, and recommendations for regulatory guidance: a white paper from the Digital Pathology Association , 2019, The Journal of pathology.
[19] J. Pickering. Taking human anatomy drawings for teaching outside the classroom , 2014, Surgical and Radiologic Anatomy.
[20] Polly R. Husmann,et al. Quantitative and qualitative changes in teaching histology by means of virtual microscopy in an introductory course in human anatomy , 2009, Anatomical sciences education.
[21] L. Parker. Anatomical dissection: Why are we cutting it out? Dissection in undergraduate teaching , 2002, ANZ journal of surgery.
[22] Michele L. Barbeau,et al. The development and assessment of an online microscopic anatomy laboratory course , 2013, Anatomical sciences education.
[23] L. Gartner,et al. Anatomical sciences in the allopathic medical school curriculum in the United States between 1967–2001 , 2003, Clinical anatomy.
[24] W. Ovalle,et al. A new paradigm for teaching Histology laboratories in Canada's first distributed medical school , 2008, Anatomical sciences education.
[25] J. Matthan,et al. Social media: Insights for medical education from instructor perceptions and usage , 2018 .
[26] P. Brown,et al. Teaching Veterinary Histopathology: A Comparison of Microscopy and Digital Slides. , 2016, Journal of veterinary medical education.
[27] C. Hennessy. Lifting the negative cloud of social media use within medical education , 2017, Anatomical sciences education.
[28] T. L. Lewis. Social media and student engagement in anatomy education , 2017, Anatomical sciences education.
[29] Caroline Erolin,et al. Histology in 3D: development of an online interactive student resource on epithelium , 2017, Journal of visual communication in medicine.
[30] Maheswari S. Mukherjee,et al. Optimal z-axis scanning parameters for gynecologic cytology specimens , 2013, Journal of pathology informatics.
[31] C. Farah,et al. The e-evolution of microscopy in dental education. , 2009, Journal of dental education.
[32] Jason Y. Park,et al. Trends in the US and Canadian Pathologist Workforces From 2007 to 2017 , 2019, JAMA network open.
[33] M. Hortsch,et al. The interrupted learner: How distractions during live and video lectures influence learning outcomes , 2018, Anatomical sciences education.
[34] Clark R. Mollenhoff,et al. Atanasoff: Forgotten Father of the Computer , 1988 .
[35] Danya M Stone,et al. Improving Virtual Learning Interactions: Reducing the Transactional Distance of Online Anatomy Modules , 2019, Anatomical sciences education.
[36] S. Daniel,et al. Can virtual reality improve anatomy education? A randomised controlled study of a computer‐generated three‐dimensional anatomical ear model , 2006, Medical education.
[37] Carly J. Leonard,et al. An Expert Derived Feedforward Histology Module Improves Pattern Recognition Efficiency in Novice Students , 2019, Anatomical sciences education.
[38] J. M. Crawford,et al. Pathologist workforce in the United States: I. Development of a predictive model to examine factors influencing supply. , 2013, Archives of pathology & laboratory medicine.
[39] P. Abrahams,et al. Anatomy, radiology, and practical procedure education for foundation doctors in England: A National Observational Study , 2016, Clinical anatomy.
[40] Development and evaluation of an interactive electronic laboratory manual for cooperative learning of medical histology , 2013, Anatomical sciences education.
[41] Yukako Yagi,et al. Evaluation of an Automated Tissue Sectioning Machine for Digital Pathology , 2018 .
[42] Charles A Blake,et al. Teaching medical histology at the University of South Carolina School of Medicine: Transition to virtual slides and virtual microscopes. , 2003, Anatomical record. Part B, New anatomist.
[43] Bruce Collier. Little Engines That Could've: The Calculating Machines of Charles Babbage , 1991 .
[44] Thomas Andrew Knight. XI. Account of some experiments on the descent of the sap in trees. In a letter from Thomas Andrew Knight, Esq. to the Right Hon. Sir Joseph Banks, Bart. K. B. P. R. S , 1803, Philosophical Transactions of the Royal Society of London.
[45] Angela Carbone,et al. Blended Learning in Higher Education: Three Different Design Approaches. , 2014 .
[46] R. Feddersen,et al. Digital Whole Slide Imaging Compared With Light Microscopy for Primary Diagnosis in Surgical Pathology: A Multicenter, Double-Blinded, Randomized Study of 2045 Cases. , 2020, Archives of pathology & laboratory medicine.
[47] D. J. Lowrie,et al. Survey of gross anatomy, microscopic anatomy, neuroscience, and embryology courses in medical school curricula in the United States , 2002, The Anatomical record.
[48] David K. Harrison,et al. Virtual reality medical training system for anatomy education , 2014 .
[49] R. Mayer. Applying the science of learning to medical education , 2010, Medical education.
[50] Yukako Yagi,et al. Evaluation of a completely automated tissue-sectioning machine for paraffin blocks , 2011, Journal of Clinical Pathology.
[51] Tien-Shang Huang,et al. Anatomy Instruction in Medical Schools: Connecting the Past and the Future , 2006, Advances in health sciences education : theory and practice.
[52] Adam B. Wilson,et al. Meta‐analysis and review of learner performance and preference: virtual versus optical microscopy , 2016, Medical education.
[53] Danielle F Royer,et al. Social Media Guidelines for Anatomists , 2020, Anatomical sciences education.
[54] A. Kölliker. Erinnerungen aus meinem Leben , 1899 .
[55] H. Ellis,et al. Junior doctors' knowledge of applied clinical anatomy , 2008, Clinical anatomy.
[56] Bruno C Jham,et al. Dental students' perceptions of the use of digital microscopy as part of an oral pathology curriculum. , 2013, Journal of dental education.
[57] A. Chvátal. Jan Evangelista Purkyně (1787–1869) and his instruments for microscopic research in the field of neuroscience , 2017, Journal of the history of the neurosciences.
[58] Maria Cornelissen,et al. Evaluation of virtual microscopy in medical histology teaching , 2013, Anatomical sciences education.
[59] Kehoe Ra. The education of physicians for industry; introduction. , 1956, Journal of medical education.
[60] Mark Goldszmidt,et al. Flipped classrooms and student learning: not just surface gains. , 2016, Advances in physiology education.
[61] R. Mayer,et al. Multimedia Learning: Frontmatter , 2001 .
[62] Jacob W. Neumann. Teaching to and Beyond the Test: The Influence of Mandated Accountability Testing in One Social Studies Teacher's Classroom , 2013, Teachers College Record: The Voice of Scholarship in Education.
[63] David M. Irby,et al. Educating Physicians: A Call for Reform of Medical School and Residency , 2010 .
[64] Bipasha Choudhury,et al. Virtual reality anatomy: Is it comparable with traditional methods in the teaching of human forearm musculoskeletal anatomy? , 2011, Anatomical sciences education.
[65] Samal Nauhria,et al. Randomized cross-over study and a qualitative analysis comparing virtual microscopy and light microscopy for learning undergraduate histopathology , 2019 .
[66] R S Weinstein,et al. Prospects for telepathology. , 1986, Human pathology.
[67] D A Silage,et al. Digital image tiles: a method for the processing of large sections , 1985, Journal of microscopy.
[68] Nassir Navab,et al. Personalized augmented reality for anatomy education , 2015, Clinical anatomy.
[69] T. Gillingwater,et al. Development of a supported self‐directed learning approach for anatomy education , 2012, Anatomical sciences education.
[70] Susan M. Martinelli,et al. A systematic review of the effectiveness of flipped classrooms in medical education , 2017, Medical education.
[71] T. Gillingwater. The importance of exposure to human material in anatomical education: A philosophical perspective , 2008, Anatomical sciences education.
[72] G. Norman,et al. Virtual reality and brain anatomy: a randomised trial of e‐learning instructional designs , 2007, Medical education.
[73] J. Pickering. Anatomy drawing screencasts: Enabling flexible learning for medical students , 2015, Anatomical sciences education.
[74] Jorie M. Colbert-Getz,et al. Measuring the impact of the flipped anatomy classroom: The importance of categorizing an assessment by Bloom's taxonomy , 2017, Anatomical sciences education.
[75] N. Wissozky. Ueber das Eosin als Reagens auf Hämoglobin und die Bildung von Blutgefässen und Blutkörperchen bei Säugethier- und Hühnerembryonen , 1877 .
[76] Liron Pantanowitz,et al. Augmented Reality Technology Using Microsoft HoloLens in Anatomic Pathology. , 2018, Archives of pathology & laboratory medicine.
[77] Kalderon Ae. The evolution of microscope design from its invention to the present days. , 1983 .
[79] F. Zito,et al. Quicktime virtual reality technology in light microscopy to support medical education in pathology , 2004, Modern Pathology.
[80] Thomas J. Fuchs,et al. Clinical-grade computational pathology using weakly supervised deep learning on whole slide images , 2019, Nature Medicine.
[81] A. Parwani. Next generation diagnostic pathology: use of digital pathology and artificial intelligence tools to augment a pathological diagnosis , 2019, Diagnostic Pathology.
[82] D. Swanson,et al. Retention of Basic Science Information by Senior Medical Students , 2008, Academic medicine : journal of the Association of American Medical Colleges.
[83] A. Khurana,et al. The anatomy of anatomy: A review for its modernization , 2010, Anatomical sciences education.
[84] T. Duffy. The Flexner Report ― 100 Years Later , 2011, The Yale journal of biology and medicine.
[85] R. Seymour,et al. Formaldehyde: A simple compound with many uses , 1992 .
[86] T. L. Lewis,et al. Anatomy education for the YouTube generation: Technical, ethical, and educational considerations , 2016, Anatomical sciences education.
[87] James Duncan,et al. Integrated approach to teaching and testing in histology with real and virtual imaging , 2002, The Anatomical record.
[88] Thomas Andrew Knight,et al. Account of Some Experiments on the Descent of the Sap in Trees , 1801 .
[89] R. Ahmed,et al. Light Microscopy for Teaching-Learning in Histology Practical in Undergraduate Medical Education of Bangladesh-a Teachers’ Perspective , 2018, South-East Asian Journal of Medical Education.
[90] James D Pickering,et al. A holistic model for evaluating the impact of individual technology-enhanced learning resources , 2016, Medical teacher.
[91] T. Buskirk,et al. Traditional and virtual microscopy compared experimentally in a classroom setting , 2007, Clinical anatomy.
[92] D. Herbert,et al. Transition of a dental histology course from light to virtual microscopy. , 2009, Journal of dental education.
[93] P. Peplow. Self‐directed learning in anatomy: incorporation of case‐based studies into a conventional medical curriculum , 1990, Medical education.
[94] R. Coleman. Can histology and pathology be taught without microscopes? The advantages and disadvantages of virtual histology. , 2009, Acta histochemica.
[95] Nancy Stern. The BINAC: A Case Study in the History of Technology , 1979, Annals of the History of Computing.
[97] Eva Dakich,et al. Social media, learning and connections for international students: The disconnect between what students use and the tools learning management systems offer , 2019 .
[98] John R Davis,et al. An array microscope for ultrarapid virtual slide processing and telepathology. Design, fabrication, and validation study. , 2004, Human pathology.
[99] Gloria Bueno García,et al. Critical Comparison of 31 Commercially Available Digital Slide Systems in Pathology , 2006, International journal of surgical pathology.
[100] R. Mayer,et al. Nine Ways to Reduce Cognitive Load in Multimedia Learning , 2003 .
[101] B F Boyce,et al. An update on the validation of whole slide imaging systems following FDA approval of a system for a routine pathology diagnostic service in the United States , 2017, Biotechnic & histochemistry : official publication of the Biological Stain Commission.
[102] R. Drake,et al. National survey on anatomical sciences in medical education , 2018, Anatomical sciences education.
[103] T. Crawford,et al. Viewing another person's eye movements improves identification of pulmonary nodules in chest x-ray inspection. , 2010, Journal of experimental psychology. Applied.
[104] Abraham Flexner,et al. Medical education in the United States and Canada : a report to the Carnegie Foundation for the Advancement of Teaching by Abraham Flexner , 2003 .
[105] Juho Hamari,et al. Why do people watch others play video games? An empirical study on the motivations of Twitch users , 2017, Comput. Hum. Behav..
[106] John Lough,et al. Complete and rapid switch from light microscopy to virtual microscopy for teaching medical histology. , 2005, Anatomical record. Part B, New anatomist.
[107] D. Heylings,et al. Anatomy 1999–2000: the curriculum, who teaches it and how? , 2002, Medical education.
[108] J R Cotter,et al. Laboratory instruction in histology at the University at Buffalo: Recent replacement of microscope exercises with computer applications , 2001, The Anatomical record.
[109] Lisa M J Lee,et al. The virtual microscopy database—sharing digital microscope images for research and education , 2018, Anatomical sciences education.
[110] Leslie J Day. A gross anatomy flipped classroom effects performance, retention, and higher‐level thinking in lower performing students , 2018, Anatomical sciences education.
[111] M. Stuart,et al. Survey of clinicians' attitudes to the anatomical teaching and knowledge of medical students , 2005, Clinical anatomy.
[112] Judy R Harris,et al. Evaluation of usage of virtual microscopy for the study of histology in the medical, dental, and veterinary undergraduate programs of a UK University , 2014, Anatomical sciences education.
[113] C. Letocha. The origin of spectacles. , 1986, Survey of ophthalmology.
[114] R. Insausti,et al. Gross anatomy dissections and self‐directed learning in medicine , 2005, Clinical anatomy.
[115] W. Pawlina,et al. Medical education in the anatomical sciences: The winds of change continue to blow , 2009, Anatomical sciences education.
[116] Douglas J. Gould,et al. Educational Implications of a Social Networking Application, Twitter™, for Anatomical Sciences , 2014 .
[117] G. O’Keeffe,et al. Anatomy education for the YouTube generation , 2015, Anatomical sciences education.
[118] G. Smythe,et al. Self‐directed learning in gross human anatomy: Assessment outcomes and student perceptions , 2008, Anatomical sciences education.
[119] D. McAndrew,et al. Review of anatomy education in Australian and New Zealand medical schools , 2010, ANZ journal of surgery.
[120] D. J. Lowrie,et al. An evaluation of outcomes following the replacement of traditional histology laboratories with self‐study modules , 2017, Anatomical sciences education.
[121] C. Hennessy,et al. The Rapidly Changing Landscape of Student Social Media Use in Anatomy Education , 2019, Anatomical sciences education.
[122] Mark W. Braun,et al. Improved learning efficiency and increased student collaboration through use of virtual microscopy in the teaching of human pathology , 2008, Anatomical sciences education.
[123] F. Paulsen,et al. Virtual microscopy-The future of teaching histology in the medical curriculum? , 2010, Annals of anatomy = Anatomischer Anzeiger : official organ of the Anatomische Gesellschaft.
[124] Fred D. Davis,et al. User Acceptance of Computer Technology: A Comparison of Two Theoretical Models , 1989 .
[125] Thomas H. Flowers. The Design of Colossus (foreword by Howard Campaigne) , 1983, Annals of the History of Computing.
[126] A. Raikos,et al. How useful is YouTube in learning heart anatomy? , 2014, Anatomical sciences education.
[127] J E F Fitzgerald,et al. Are we teaching sufficient anatomy at medical school? The opinions of newly qualified doctors , 2008, Clinical anatomy.
[128] E. Rosen,et al. The invention of eyeglasses. I. , 1956, Journal of the history of medicine and allied sciences.
[129] S. Piña‐Oviedo,et al. Hematoxylin: Mesoamerica’s Gift to Histopathology. Palo de Campeche (Logwood Tree), Pirates’ Most Desired Treasure, and Irreplaceable Tissue Stain , 2018, International journal of surgical pathology.
[130] Ronald A. Howard,et al. Knowledge Maps , 1989 .
[131] Wasiu Gbolahan Balogun,et al. Using Electronic Tools and Resources to Meet the Challenges of Anatomy Education in Sub‐Saharan Africa , 2018, Anatomical sciences education.
[132] Craig J. Daly,et al. The future of education? Using 3D animation and virtual reality in teaching physiology , 2018, Physiology News.
[133] W. Pawlina,et al. An update on the status of anatomical sciences education in United States medical schools , 2014, Anatomical sciences education.
[134] Justin Scott Giboney,et al. Examining the learning effects of live streaming video game instruction over Twitch , 2017, Comput. Hum. Behav..
[135] J. Edmonstone,et al. Consolidation of pathology services in England: have savings been achieved? , 2018, BMC Health Services Research.
[136] M. Rendi,et al. NDER: A Novel Web Application for Teaching Histology to Medical Students. , 2017, Academic pathology.
[137] H. van Mameren,et al. Do students have sufficient knowledge of clinical anatomy? , 2005, Medical education.
[138] Esther M. Bergman,et al. Influences on anatomical knowledge: The complete arguments , 2014, Clinical anatomy.
[139] Duncan Cole,et al. Using social media to support small group learning , 2017, BMC Medical Education.
[140] J. Kooloos,et al. Actual drawing of histological images improves knowledge retention , 2016, Anatomical sciences education.
[141] Madeleine J. Marsland,et al. Ask an anatomist: Identifying global trends, topics and themes of academic anatomists using twitter , 2018, Anatomical sciences education.
[142] C. Singer. The Dawn of Microscopical Discovery , 1915 .
[143] Chao-Jin Xu. Is virtual microscopy really better for histology teaching? , 2013, Anatomical sciences education.
[144] J. Zuylen. The microscopes of Antoni van Leeuwenhoek , 1981 .
[145] Fred R. Dee. Virtual microscopy in pathology education. , 2009, Human pathology.
[146] N. Borcherding,et al. Application of flipped classroom pedagogy to the human gross anatomy laboratory: Student preferences and learning outcomes , 2018, Anatomical sciences education.
[147] Christopher P. Niemiec,et al. Autonomy, competence, and relatedness in the classroom , 2009 .
[148] Harry R Goldberg,et al. The positive impact of team-based virtual microscopy on student learning in physiology and histology. , 2007, Advances in physiology education.
[149] Abigail J Lowe. E‐learning in medical education: One size does not fit all , 2018, Anatomical sciences education.
[150] F. Paulsen,et al. The attitudes of medical students in Europe toward the clinical importance of histology , 2017, Clinical anatomy.
[151] Harry Polachek,et al. Before the ENIAC , 1997, IEEE Ann. Hist. Comput..
[152] Fred R. Dee,et al. Implementation of virtual microscope slides in the annual pathobiology of cancer workshop laboratory. , 2003, Human pathology.
[153] Jens Rittscher,et al. Precision immunoprofiling by image analysis and artificial intelligence , 2018, Virchows Archiv.
[154] M. Lundin,et al. Five years of experience teaching pathology to dental students using the WebMicroscope , 2011, Diagnostic pathology.
[155] G. Finn,et al. The Next Generation: How medical students use new Social Media to support their learning , 2019, MedEdPublish.
[156] Michael A. Kolitsky. 3D Printed Tactile Learning Objects: Proof of Concept Full Article , 2014 .