
DACTYLOGRAPHY OR THE STUDY OF FINGER-PRINTS
LIST OF ILLUSTRATIONS
CHAPTER I - INTRODUCTION: EARLY HINTS AND RECENT PROGRESS
CHAPTER II - SWEAT-PORES, RIDGES AND FURROWS
CHAPTER III - FINGER-PRINT PATTERNS
CHAPTER IV - SOME BIOLOGICAL QUESTIONS IN DACTYLOGRAPHY.
CHAPTER V - TECHNIQUE OF PRINTING AND SCRUTINIZING FINGER-PATTERNS
CHAPTER VI - PERSISTENCE OF PATTERNS
CHAPTER VII - THE SYLLABIC CLASSIFICATION OF FINGER-PRINTS
CHAPTER VIII - PRACTICAL RESULTS AND FUTURE PROSPECTS OF DACTYLOGRAPHY
This work opens a fascinating window onto the science of fingerprint analysis, tracing its roots from prehistoric hunters who read footprints in mud to modern investigators deciphering the unique ridges on our fingertips. The author weaves together anecdotes of ancient Mexicans, Babylonians, and Chinese who first recognized the value of hand and toe marks, showing how early peoples already appreciated the clues left by skin lineations.
Moving forward, the text explores how naturalists and paleontologists interpret ancient impressions preserved in stone and sand, linking those methods to today’s forensic techniques. Detailed illustrations accompany the discussion, from greasy smudges on wax seals to the microscopic structure of sweat glands, offering listeners a vivid sense of how these patterns have been studied across cultures and centuries. The first chapter sets the stage for a deeper dive into the classification, measurement, and practical applications of dactylography, inviting curiosity about the hidden stories our own hands can tell.
Language
en
Duration
~3 hours (181K characters)
Publisher of text edition
Project Gutenberg
Credits
Produced by Chris Curnow, Thiers Halliwell and the Online Distributed Proofreading Team at http://www.pgdp.net (This file was produced from images generously made available by The Internet Archive)
Release date
2015-01-08
Rights
Public domain in the USA.
Subjects

1843–1930
A Scottish doctor and missionary, he helped turn fingerprints into a practical tool for identifying people and solving crimes. His work in Japan and his sharp scientific curiosity helped shape one of forensic science’s most lasting methods.
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