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Mapping the Urban Green Network:

Integrating Structural and Functional Connectivity Analysis in San Juan and Mandaluyong
Evangelista, S.J., Cotia D.J., Arellano, A.C.
2026年8月7日
WTA Labs

Abstract

Urbanization drives biodiversity loss across tropical Southeast Asia, yet Philippine urban planning still treats green space as a matter of area rather than functional connectivity. This study asks how urban wildlife movement can guide ecological interventions in San Juan and Mandaluyong, two of Metro Manila's most densely populated, fully built-out cities. Using Philippine urban woodland birds as surrogate taxa, it integrates Morphological Spatial Pattern Analysis, graph-theoretic patch and linkage prioritization (Conefor), a hexagonal bivariate policy-zone classification, Getis-Ord Gi* hotspot analysis, and circuit-theoretic modeling (Omniscape), the first such pipeline applied to a Philippine urban setting. Results show only 12.3% of the study area retains canopy, with just 1.86% qualifying as Core habitat against 74.14% fragmented Islets. Patch area and importance are strongly correlated overall (ρ = 0.857), yet the single largest patch is not the single most important one, a reversal driven by connection breadth rather than size. Over two-thirds of potential links carry no measurable connectivity, with a single corridor holding roughly 39% of the network's remaining value, indicating severe non-redundancy. Two-thirds of the area is functionally inert, with movement density, though not tree cover, differing significantly between cities. Degraded areas cluster into large zones while valuable cells remain scattered. Major arterials, particularly EDSA, combine high structural significance with the lowest ecological function. These findings show built-out cities must shift planning from expansion toward triage, offering a replicable regional template. Keywords: landscape connectivity, urban green infrastructure, Morphological Spatial Pattern Analysis, circuit theory, graph theory, Metro Manila, urban avifauna, ecological network planning

Keywords:

landscape connectivity, urban green infrastructure, Morphological Spatial Pattern Analysis, circuit theory, graph theory, Metro Manila, urban avifauna, ecological network planning

Introduction

Biodiversity holds the foundation of ecosystem processes. It supports pollination, nutrient cycling, carbon sequestration, climate regulation, and the structural integrity of food webs. In urban contexts, biodiversity performs additional functions that directly affect human welfare: trees and vegetation reduce ambient temperatures, attenuate stormwater runoff, improve air quality, and provide psychosocial benefits to residents. Rich bird diversity, in particular, has been repeatedly associated with positive physical and mental health outcomes for urban populations. The loss of biodiversity, therefore, is not merely an ecological concern but a threat to human wellbeing and urban resilience.


Despite its significant importance, biodiversity is under unprecedented global threat, driven primarily by land-use change and urban expansion. Urbanization is now the most pervasive and fastest-growing form of land transformation worldwide, converting diverse natural ecosystems into impervious surfaces, fragmenting habitats and replacing ecologically complex communities with a homogeneous assemblage of disturbance-tolerant species [6, 7]. By 2050, urban populations are projected to grow by 2.5 billion people, with roughly 90% of this growth concentrated in Asian and African regions, where it extensively overlaps with global biodiversity hotspots [8, 9]. Urban development thus puts direct pressure on the very landscapes that harbor the highest biological richness on Earth.


As natural cover is replaced by built environments, habitat is reduced to small, isolated fragments surrounded by an inhospitable urban matrix of roads, buildings, and impervious surfaces. This fragmentation severs ecological connections, interrupts species movement, reduces gene flow, and ultimately erodes local biodiversity through the extinction of habitat specialists and the proliferation of generalist and non-native species. For island nations with endemic-rich biota and limited land area such as the Philippines, these dynamics are especially significant, because species have no continental refuge as urban pressures intensify.

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