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<h1 class="title toc-ignore">Writing</h1>
</div>
<p>The majority of my writing is in the form of co-authored journal
articles. I’ve made them available to download below.</p>
<p>I find the usual numbering-in-reverse-chronological-ordering of
journal articles to be rather boring and uninspiring, and so I’ve tried
to group my writing pieces into themes as you will find below. You are
of course welcome to view my <a
href="https://scholar.google.ca/citations?user=rFIqtwgAAAAJ&hl=en">Google
Scholar Profile</a> or my <a href="cv_brandon_edwards.pdf">CV</a> and
have them ordered by year, if you prefer.</p>
<div id="wildlife-monitoring-and-assessment" class="section level3">
<h3>Wildlife Monitoring and Assessment</h3>
<p><a
href="publications/smith-etal-2023-spatial.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
Smith AC, Binley A, Daly L, <strong>Edwards BPM</strong>, Ethier D, Frei
B, Iles D, Meehan TD, Michel NL, Smith PA. (2023) Spatially explicit
Bayesian hierarchical models improve estimates of avian population
status and trends. To appear in <em>Ornithological Applications</em>.
Preprint: <a href="https://doi.org/10.32942/X2088D"
class="uri">https://doi.org/10.32942/X2088D</a></p>
<p><a
href="publications/soroye-etal-2022-citsci.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
Soroye P, <strong>Edwards BPM</strong>, Buxton RT, Ethier JP,
Frempong-Manso A, Keefe H, Berberi A, Roach-Krajewski M, Binley AD,
Vincent JG, Cooke SJ, Bennett JR. (2022). The risks and rewards of
community science for threatened species monitoring. <em>Conservation
Science and Practice</em> 4(9), e12788. <a
href="https://doi.org/10.1111/csp2.12788"
class="uri">https://doi.org/10.1111/csp2.12788</a></p>
<p><a
href="publications/edwards-etal-2022-arboretum.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
<strong>Edwards BPM</strong>, Watson AP, Earley CG. (2022). The
University of Guelph’s Arboretum Winter Bird Count, 1980 –2022.
<em>Ontario Birds</em> 40(1):43-56.</p>
<p><a
href="publications/edwards-smith-2021-bbsBayes.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
<strong>Edwards BPM</strong>, Smith AC. (2021). bbsBayes: An R Package
for Hierarchical Bayesian Analysis of North American Breeding Bird
Survey Data. <em>Journal of Open Research Software</em> 9(1). <a
href="http://doi.org/10.5334/jors.329"
class="uri">http://doi.org/10.5334/jors.329</a></p>
<p><a
href="publications/smith-edwards-2021-gam.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
Smith AC, <strong>Edwards BPM</strong>. (2021). North American Breeding
Bird Survey status and trend estimates to inform a wide-range of
conservation needs, using a flexible Bayesian hierarchical generalized
additive model. <em>Ornithological Applications</em> 123(1). <a
href="https://doi.org/10.1093/ornithapp/duaa065"
class="uri">https://doi.org/10.1093/ornithapp/duaa065</a></p>
</div>
<div id="conservation-policy" class="section level3">
<h3>Conservation Policy</h3>
<p><a
href="publications/cooke-etal-2021-covid.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
Cooke SJ, Soroye P, Brooks JL, Clarke J, Jeanson AL, Berberi A, Piczak
ML, Reid CH, Desforges JE, Guay JD, Drake AK, Jardine AM, Ethier JP,
Keefe HE, Medd AM, <strong>Edwards BPM</strong>, et al. (2021). Ten
considerations for conservation policy makers for the post-COVID-19
transition. <em>Environmental Reviews</em> 29(999). <a
href="https://doi.org/10.1139/er-2021-0014"
class="uri">https://doi.org/10.1139/er-2021-0014</a></p>
</div>
<div id="detectability" class="section level3">
<h3>Detectability</h3>
<p><a
href="publications/edwards-etal-2023-napops.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
<strong>Edwards BPM</strong>, Smith AC, Docherty TGS, Gahbauer MA,
Gillespie CR, Grinde AR, Harmer T, Iles DT, Matsuoka SM, Michel NL,
Murray A, Niemi GJ, Pasher J, Pavlacky Jr DC, Robinson BG, Ryder TB,
Sólymos P, Stralberg D, Zlonis EJ. (2023). Point Count Offsets for
Estimating Population Sizes of North American Landbirds. <em>Ibis</em>
165(2):482-503. <a href="https://doi.org/10.1111/ibi.13169"
class="uri">https://doi.org/10.1111/ibi.13169</a></p>
</div>
<div id="ecological-modelling" class="section level3">
<h3>Ecological Modelling</h3>
<p><a
href="publications/gillis-edwards-2019-joinpoint.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
Gillis D, <strong>Edwards BPM</strong>. (2019). The utility of joinpoint
regression for estimating population parameters given changes in
population structure. <em>Heliyon</em> 5(11), e02515. <a
href="https://doi.org/10.1016/j.heliyon.2019.e02515"
class="uri">https://doi.org/10.1016/j.heliyon.2019.e02515</a></p>
<p><a
href="publications/rose-etal-2017-eabm.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
Rose D, <strong>Edwards BPM</strong>, Kett R, Yodzis M, Angevaare J,
Gillis D. (2017). Exploring Anthropogenic Activities and Management
Decisions Using a Novel Environmental Agent Based Model. <em>2017 IEEE
Canada International Humanitarian Technology Conference (IHTC)</em>,
85-89. <a href="https://doi.org/10.1109/IHTC.2017.8058206"
class="uri">https://doi.org/10.1109/IHTC.2017.8058206</a></p>
</div>
<div id="natural-history-notes" class="section level3">
<h3>Natural History Notes</h3>
<p><a
href="publications/edwards-etal-2022-rwbl.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
<strong>Edwards BPM</strong>, Binley AD, English WB, Hudgins EJ, Snow
SS. (2022). A highly anomalous Red-winged Blackbird (Agelaius
phoeniceus) song. <em>Canadian Field-Naturalist</em> 136(1):1-4. <a
href="https://doi.org/10.22621/cfn.v136i1.2877"
class="uri">https://doi.org/10.22621/cfn.v136i1.2877</a></p>
<p><a
href="publications/edwards-bouman-2022-hybrid.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
<strong>Edwards BPM</strong>, Bouman M. (2022). A possible Canvasback X
Ruddy Duck hybrid. <em>Ontario Birds</em> 40(1):23-27.</p>
</div>
<div id="open-science" class="section level3">
<h3>Open Science</h3>
<p><a
href="publications/braga-etal-2023-github.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
Braga PHP, Hébert K, Hudgins EJ, Scott ER, <strong>Edwards BPM</strong>,
Sánchez-Reyes LL, Grainger MJ, Foroughirad V, Hilleman F, Binley AD,
Brookson CB, Gaynor KM, Sabet SS, Güncan A, Weierbach H, Gomes DGE,
Crystal-Ornelas R. (2023). Not Just for Programmers: How Github Can
Accelerate Collaborative and Reproducible Research in Ecology and
Evolution. <em>Methods in Ecology and Evolution</em> 14(6):1364-1380. <a
href="https://doi.org/10.1111/2041-210X.14108"
class="uri">https://doi.org/10.1111/2041-210X.14108</a></p>
<p><a
href="publications/binley-etal-2023-data.pdf"><svg viewBox="0 0 384 512" style="height:1em;position:relative;display:inline-block;top:.1em;" xmlns="http://www.w3.org/2000/svg">
<path d="M369.9 97.9L286 14C277 5 264.8-.1 252.1-.1H48C21.5 0 0 21.5 0 48v416c0 26.5 21.5 48 48 48h288c26.5 0 48-21.5 48-48V131.9c0-12.7-5.1-25-14.1-34zM332.1 128H256V51.9l76.1 76.1zM48 464V48h160v104c0 13.3 10.7 24 24 24h104v288H48zm250.2-143.7c-12.2-12-47-8.7-64.4-6.5-17.2-10.5-28.7-25-36.8-46.3 3.9-16.1 10.1-40.6 5.4-56-4.2-26.2-37.8-23.6-42.6-5.9-4.4 16.1-.4 38.5 7 67.1-10 23.9-24.9 56-35.4 74.4-20 10.3-47 26.2-51 46.2-3.3 15.8 26 55.2 76.1-31.2 22.4-7.4 46.8-16.5 68.4-20.1 18.9 10.2 41 17 55.8 17 25.5 0 28-28.2 17.5-38.7zm-198.1 77.8c5.1-13.7 24.5-29.5 30.4-35-19 30.3-30.4 35.7-30.4 35zm81.6-190.6c7.4 0 6.7 32.1 1.8 40.8-4.4-13.9-4.3-40.8-1.8-40.8zm-24.4 136.6c9.7-16.9 18-37 24.7-54.7 8.3 15.1 18.9 27.2 30.1 35.5-20.8 4.3-38.9 13.1-54.8 19.2zm131.6-5s-5 6-37.3-7.8c35.1-2.6 40.9 5.4 37.3 7.8z"></path></svg></a>
Binley AD, <strong>Edwards BPM</strong>, Dansereau G, Knight EC,
Momeni-Dehaghi I. (2023). Minimizing Data Waste: Conservation in the Big
Data Era. <em>Bulletin of the Ecological Society of America</em>
104(2):e02056. <a href="https://doi.org/10.1002/bes2.2056"
class="uri">https://doi.org/10.1002/bes2.2056</a></p>
<!-- ## Invited Symposia -->
<!-- **Edwards BPM**, Smith AC. (August 2020). Open, accessible, and customizable analysis of North American Breeding Bird Survey data using the R package bbsBayes. *7th North American Ornithological Conference* (Symposium: Back to the future of the breeding bird survey), Virtual Conference. -->
<!-- **Edwards BPM**, Smith AC, Hudson M-AR, Francis CM, Pardieck KL, Ziolkowski Jr DJ. (August 2019). bbsBayes: An R Package for Hierarchical Bayesian Modelling of Breeding Bird Survey Data. *Society of Canadian Ornithologists Annual Meeting* (Symposium: R for Ornithologists: Perspectives from UseRs to programmeRs), Quebec City, QC. -->
<!-- ## Select Conference Presentations -->
<!-- **Edwards BPM**, Smith AC, et al. (2022). NA-POPS: A collaborative effort to synthesize detection probabilities for North American landbirds. *Ecological Society of America/Canadian Society for Ecology and Evolution 2022 Joint Conference*, Montreal, Canada. -->
<!-- **Edwards BPM**, Solymos P, Stralberg D, Michel N, Robinson B, Gahbauer M, Grinde A, Hope D, Bennett J, Smith AC. (2022). A Bayesian hierarchical implementation of the QPAD framework for estimating detectability of landbirds. *International Statistical Ecology Conference 2022*, Cape Town, South Africa. -->
<!-- **Edwards BPM**, Smith AC, NA-POPS Team. (August 2021). Point count offsets for population sizes of North American landbirds. *American Ornithology 2021*, Virtual. (Paper) -->
<!-- **Edwards BPM**, Jacobs S, Gillis D. (June 2019). Risk Assessment of Great Lakes piping plovers using eABM: An R package to run Environment Agent-based Models. *American Ornithology 2019*, Anchorage, AK. (Paper) -->
<!-- **Edwards BPM**, Jacobs S, Gillis D. (August 2018). Assessing the effects of beach raking on piping plover reproductive success using an environmental agent-based model. *42nd Annual Waterbirds Society Meeting*, Vancouver, BC. (Paper) -->
<!-- **Edwards BPM**, Smith AC. (August 2018). Improved population trajectories for North American swallows, swifts, and nightjars with a hierarchical Bayesian GAM. *International Ornithological Congress 2018*, Vancouver, BC. (Poster) -->
<!-- **Edwards BPM**, Gillis D. (August 2017). Modelling habitat loss in Piping Plovers using an environmental agent-based model. *American Ornithology 2017*, Lansing, MI. (Poster) -->
<!-- Rose D, **Edwards BPM**, Kett R, Yodzis M, Angevaare J, Gillis D. (July 2017). Exploring Anthropogenic Activities and Management Decisions Using a Novel Environmental Agent Based Model. *IEEE International Humanitarian Technology Conference*, Guelph, ON. (Paper) -->
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