I have seen in several books and paper’s the principle of “Bottoms Up” Analysis. I have been told that it is this way because of a cognitive psychology concept that by examining things from the top down could lead to errors in the analysis and possibly to the conclusion of the examination so we must conduct our analysis in method leading from the bottom to the top (Substrate—Matrix—Deposition—Anatomical Features). Not being a Cognitive Psychiatrist I cannot speak of this principle but often wonder if it refers to a mental sequencing of events or does it actually represent a physical application of events (i.e. counting money we move from the larger denominations to the smaller).For example; when we attempt to analyze the unknown we examine a series of factors in a “bottom up” process. We examine the substrate, the matrix, elements of pressure distortion, clarity, etc. The analysis process requires us to examine the latent and interpret the information we see.
The following quotes are presented not as all aspects of the ‘bottom up’ or ‘top down’ principle but are only presented to perhaps spur those not familiar with the concepts to research the topic on their own.
Top-down and bottom-up processes in learning and thinking
In cognitive psychology and cognitive science, top-down and bottom-up processes refer to processes that flow from either the top or the bottom of the information processing hierarchy, respectively (Lindsay & Norman, 1972).The top of the hierarchy is assumed to contain high-level, abstract, and encompassing knowledge representations such as concepts, mental models, and schemata. On the other hand, the bottom of the hierarchy is assumed to contain low-level, concrete, and specific knowledge representations such as visual features, lexicons, and propositions (e.g., Bruning, Schraw, & Ronning, 1995; Kintsch, 1998). Cognitive psychologists and cognitive scientists believe that both top-down and bottom-up processes are indispensable to both human and machine thinking.
Bottom-up processing is said to occur when one draws from some particular examples, instances, cases, or events to a generalization, rule, or law to capture the commonality between the examples, instances, cases or events (e.g., Brown,Collins, & Duguid, 1989). Similarly, top-down processing is said to occur when one infers from a generalization, rule or law to conclude something about a particular example, instance, case, or event. Induction is an example of bottom-up processing, and deduction is an example of top-down processing.
(From ‘Top-down, Middle out, and Bottom-up Processes: A Cognitive Perspective of Teaching & Learning Economics’ by Ling-po Shiu, Chinese University of Hong Kong and Chor-yiu Sin, Hong Kong Baptist University)
From my POV the supposition that the assessment of latent prints must take the approach of Substrate—Matrix—Deposition—Anatomical Features has been at odds with the current way of doing assessments or analysis. From my POV most of the latent prints that I was analyzing the conclusion would not be affected by the substrate or matrix determination. It must be pointed out that yes there were some where the matrix, substrate or deposition was considered in the analysis but from my POV this might only account for a small number of latent prints (perhaps 3—4 %). I wanted to see if other LPE might be using the approach I was accustomed to or were they actually using the S-M-D-A approach to their assessment of latent prints.Top-Down Processing and Pattern Recognition
bottom-up processing or data-driven processing:
• stimulus information arrives from the sensory receptors (the bottom level of processing)
• the combination of bottom-level features allows us to recognized more complex, whole patterns
• feature analysis
top-down processing or conceptually-driven processing:
• our knowledge (memory) about how the world is organized helps in identifying patterns
psychologists believe both bottom-up and top-down processing are necessary to explain pattern recognition
(From ‘www.alleydog.com/cognotes under pattern recognition)
I had selected 6 latent prints that I assigned a level of difficulty as Simple, Moderate and Complex (2 of each). Over a period of several months I would take one of the latent prints and approach one of six latent print examiners and hand them the latent print and asked that they look at it (the total of examinations were 6 latent prints X 6 latent examiners equals 36 assessments). I noted what they looked at (the substrate information were on the opposite side of the lift card). I would then ask them what they looked at first. All responded with the ridge detail first. However I did notice in their examination that out of 36 assessments the substrate information was considered in only 4 assessments but only after looking at the friction ridge detail first.
Since in my POV ‘distortion effects’ only impacted a small percentage of latent prints being analyzed I then wanted to determine some type of hierarchy in the types of ‘distortion effects’ (disruption of friction ridges [scars, injuries, etc] were not considered at this time) that might be present. I selected 50 latent prints that were moderate or complex and determined that the majority dealt with deposition effects (movement, pressure, multiple impressions), with the matrix being the next most prevalent and last with the substrate being the least common (numbers varied as a number of latent prints were not representative of a single type of distortion effect but consisted of a combination and to a degree my interpretation of the effects). My ‘distortion effect’ hierarchy consisting of deposition, matrix, and then substrate.
The following proposal is a different perspective of how latent prints are assessed during the 1st phase of an examination. First one should image a pyramid. An information pyramid with the majority of the information is at the base and that information that is less prevalent moves up the pyramid. Keep in mind that just because information is less prevalent does not mean it is not important.
Taking from Dr. P.L. Kirk and H. Tuthill I suggest the first few bits of information should proceed from the class (gross) features or ridge flow and then next move on to that information that is needed to individualize. In other words observations move from the class to the individual. If during this assessment of class and individual features that one observes that the ‘effects of distortion’ is present and present in such a form that might impede a comparison then the ‘cause’ of the ‘effects’ of the distortion will be examined to determine what information may be derived from the ‘cause and effect’ of distortion. Moving up the information pyramid (hierarchy) one would examine the latent print for the effects of deposition, and then next to the matrix, and lastly the substrate. Keeping in mind that the majority of latent prints will not have to move up the information pyramid as comparison and decisions reaching a conclusion can be formed upon the majority of latent prints while only a few will require a full examination of the pyramid.
By approaching the analysis in this form one can still maintain the “bottom ups” approach since the hierarchy first derives from the anatomical features of class (ridge flow) to individualization features (2nd and 3rd LD), then moves to a consideration of distortion effects starting with Deposition, then to Matrix, and finally to Substrate.
In any event do you as a Latent Print Examiner start your analysis with determining the substrate and then moving to the matrix, and then to deposition and finally with the anatomical features on all of your examinations???
(Note: for the sake of this short presentation I am not including ‘Ridge Disruptions’ scars, injuries, disease or genetic aberrations as these are on the friction ridges before contact with a substrate. Also for the sake of brevity I am only referring to ‘Distortion Effects’ of which the causes are deposition (movement, pressure, multiples, etc); matrix (dirty, contaminants, amount, etc) or substrate (various). I acknowledge that others may have more varied and definitive terms.)