[Blindmath] Automated production of Braille math -- StepOne: Digitization
qubit
lauraeaves at yahoo.com
Tue Jul 19 01:20:48 UTC 2011
Nice little project to keep in mind.
As for matrix / linear algebra problems, I wonder if it would be easy to add
an "elision" feature that would elide the elements of a matrix that took
more space in Nemeth than it did in print, and clicking on that link would
cause it to expand into the full braille representation. Of course, the
rest of the code would remain the same unless overwritten, and the user
would have to elide the entry again before moving on. Obviously this would
be for use with a display and not an embosser.
This sounds straightforward to do.
Anyway, just a thought.
--le
----- Original Message -----
From: "Ken Perry" <kperry at blinksoft.com>
To: "'Blind Math list for those interested in mathematics'"
<blindmath at nfbnet.org>
Sent: Saturday, July 16, 2011 6:37 PM
Subject: Re: [Blindmath] Automated production of Braille math -- StepOne:
Digitization
Even having the math text in electronic form doesn't make it possible to
easily make it work in Braille. For example If a matrix problem only takes
up half a page in regular electronic form converting it to nemeth may make
it rap and thus not line up columns so that the problem makes little since.
A good document about some of the problems in the conversion is found here :
http://www.cse.ohio-state.edu/~gurari/proposal/nsf-02.html
-----Original Message-----
From: blindmath-bounces at nfbnet.org [mailto:blindmath-bounces at nfbnet.org] On
Behalf Of Susan Jolly
Sent: Saturday, July 16, 2011 3:07 PM
To: blindmath at nfbnet.org
Subject: [Blindmath] Automated production of braille math -- Step One:
Digitization
Several people have recently pointed out that producing braille math
textbooks
can be very expensive and time-consuming. I'd like to explore some of the
reasons.
There can be two steps to automated production of braille. Unless the
original document
is "born digital," the first step is converting a paper document to
an electronic format. Once an electronic document is available, it is
potentially possible to automatically
transcribe that document to braille. I'm going to discuss digitization in
this email and address automated transcription
later. I suggested that any feedback recognize this distinction as well.
(Note that my impression is that many sighted braille transcribers still
find it easier to mentally transcribe and directly enter braille math rather
than using automated tools. I'm guessing this approach accounts for part of
the current cost.)
There is no getting around the fact that it does cost something to convert a
technical document
available only in printed on paper form to an accurate electronic format, be
it LaTeX or MathML or some other format.
However, there are many commercial organizations which are experts in this
process and
there are many places where one can outsource the conversion of paper
documents
to electronic format. One good company is River Valley Technologies, located
in Kerala, India, which uses tex4ht in their workflow. (By the way, this is
the
same software that Michael W. recently posted instructions on the use of and
River Valley
is probably the world expert in tex4ht.) http://river-valley.com/
Another good company, which is here in the US, is Data Conversion
Laboratory.
http://www.dclab.com/
By the way, I've named particular commercial organizations for two reasons.
First, I've gotten the
impression that the poor quality of some NIMAS files may have led to the
impression that producing accurate electronic documents isn't feasible
whereas I don't think that is true. Second, the names could be a useful
starting point for research by producers of accessible materials.
An alternative to outsourcing is to do one's own scanning and to use
InftyReader for math OCR to either LaTeX or MathML. I don't have any
experience with InftyReader so don't have any estimates as to how long it
would take a properly-trained person to prepare an acceptable electronic
document using this software. (I realize that different content would take
different times.)
I should point out here that the efficiency of digitization has recently
been increasing dramatically because so many libraries are digitizing their
entire collections. There are now scanners that can automatically scan
entire books either without damaging valuable fragile books or by first
chopping a paper copy that has no intrinsic value. There is also commercial
software such as the oXygen XML editor that makes it easy to add and edit
markup as well as compare marked-up files. (A copy of this software for
academic or non-commercial use can be obtained for $64.)
To summarize, there is a growing amount of expertise in converting printed
technical documents to electronic format that is likely not being leveraged
in the production of braille materials. So this issue needs to be addressed.
I don't see much value to addressing the cost of artifacts of less than
optimal solutions. For example, someone mentioned that a braille version of
a book might be an older edition. However, if there were an accurate
electronic source document for this older edition, it might be possible to
update that electronic document more cheaply than to digitize the entire new
edition of the printed book.
Note that there should be opportunities for cost-sharing among entities that
might want to utilize a given electronic format for other purposes than
braille production. If so, this has the potential to significantly reduce
the contribution of the cost of digitization to the cost of braille
production.
Susan
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