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  • Background/Objectives: Accurate prediction of complex traits from high-dimensional genomic markers remains difficult in plant breeding. Linear models have limited capacity for non-linear interactions, and many deep learning models scale poorly on long marker sequences. This study introduces BiMSGP, a bidirectional Mamba-based model for scalable genomic prediction. Methods: BiMSGP extends a selective state space model with forward and backward processing so that each marker can integrate sequence context from both directions while retaining linear computational complexity; this is a modeling device for long-range marker dependencies, not a demonstration of biological epistasis. Regression was evaluated on Wheat599, Wheat2000, and SoyBase, and classification on SoyBase, using 10-fold cross-validation with shared fold assignments and no inner validation split; the held-out fold was used for checkpoint selection, learning-rate adjustment, and reporting. Ablation studies compared bidirectional and unidirectional stacks and different depths. Exploratory paired tests of fold-wise PCC differences were used to distinguish numerical rank from a paired difference under this protocol. Results: Under the reported evaluation protocol, BiMSGP attained the numerically highest mean Pearson correlation coefficient (PCC) in all four Wheat599 environments, six of eight Wheat2000 traits, and five of seven quantitative SoyBase traits. Several of these numerical ranks did not have exploratory pt<0.05 against the strongest baseline; GBLUP had a higher mean PCC for SoyBase oil (pt=0.025). Shallow bidirectional designs had higher mean PCC than deeper and unidirectional variants on Wheat599 Environment 1. Training cost was higher than that of lightweight baselines on larger datasets, but inference remained in the millisecond range. Conclusions: Under this protocol, bidirectional selective state space modeling yielded competitive mean scores with a higher training cost than lightweight baselines. The scores are exploratory and may be optimistic; they are not unbiased estimates of generalization. Evaluation that separates model selection from assessment, and tests in independent populations, years, or environments, remains future work.

    Genes

    20 September 2026

  • Skatole (3-methylindole) is a primary malodorous compound emitted from livestock manure, posing significant challenges for odor control in intensive animal production. In this study, a skatole-degrading bacterial strain, designated hhy901, was isolated from fresh cattle manure and identified as Bacillus pumilus through polyphasic taxonomy, including 16S rRNA and gyrB gene phylogeny, morphological characterization, biochemical profiling, and whole-cell fatty acid analysis. Under an initial skatole concentration of 100 mg/L in Bacillus liquid medium, strain hhy901 removed 87.2% of skatole within 96 h, as determined by high-performance liquid chromatography (HPLC). Whole-genome sequencing revealed a genome of approximately 3.60 Mb with a GC content of 41.91%, encoding 3564 predicted protein-coding genes. Functional genomic annotation identified 39 genes associated with xenobiotic biodegradation and metabolism, including putative catechol dioxygenase, aldehyde dehydrogenase, and cytochrome P450 genes, which together suggest a potential skatole catabolic pathway. Furthermore, the genome harbored a broad repertoire of genes associated with resistance to heavy metals, disinfectants, and multiple antibiotic classes, indicating a potential for environmental stress adaptation. Virulence factor profiling predominantly identified genes related to nutrient acquisition and microbial competition, with only a single invasion-associated factor detected, suggesting a relatively low invasive pathogenic potential. However, the presence of multiple antimicrobial resistance determinants warrants cautious interpretation, and phenotypic validation of both degradation function and biosafety is required before environmental application. These results establish B. pumilus hhy901 as a promising microbial candidate for further development of bio-deodorization strategies in livestock production, pending functional and safety validation.

    Curr. Issues Mol. Biol.

    20 September 2026

  • UAV multispectral imagery can support rice yield estimation, but spectral–yield relationships may change with cultivar and planting density. We evaluated three japonica rice cultivars under five planting-density treatments in a split-plot experiment and collected UAV multispectral imagery on 13 dates. We examined five vegetation indices: NDVI, RVI, NDRE, OSAVI, and CLRE. Cultivar significantly affected grain yield and yield components. Planting density had no significant main effect, while the cultivar × density interaction was significant for grain yield. Spectral–yield correlations were strongest during 19–25 August, which broadly matched reproductive development based on field observations. NDRE and CLRE showed the most consistent associations. A four-index PLSR model using 19 August data achieved an outer-LOOCV R2 of 0.773 and an RMSE of 530.28 kg ha−1. Tuned RF gave comparable performance (R2 = 0.783, RMSE = 518.60 kg ha−1). Adjustment for cultivar, planting density, and block substantially reduced the pooled mid-August correlations. However, the four-index spectral set still improved prediction beyond cultivar, planting density, and their interaction. Grouped validation changed little when density levels or cultivar × density combinations were withheld, but performance declined sharply when an entire cultivar was excluded. These results show that mid-August UAV observations were informative in this experiment, but wider use will require validation across more cultivars, years, and sites.

    Agronomy

    20 September 2026

  • The facial muscles are crucial for nonverbal communication, physiological functions, and articulation. Unlike skeletal or masticatory muscles, they lack fascia, attach directly to the skin and function without joint-mediated movements or visual feedback. The aim of this study was to reconstruct the facial musculature using high-resolution computerised tomography (CT) and 3 Tesla magnetic resonance imaging (MRI) on 14 body donors, yielding segmented 3D datasets of the facial muscles, as well as bony and soft-tissue head structures. We hypothesise that the facial musculature comprises functional subunits with variable geometries that extend beyond classical anatomical definitions, with attachment points and three-dimensional positioning that differ from conventional descriptions. The most significant finding was that MRI could not resolve individual facial muscles as depicted in anatomical atlases. Instead, the musculature appeared as a single continuous sheet of muscle, embedded in fatty tissue and not attached to the bone. Whether the facial musculature is in fact continuous or consists of several muscles connected by connective tissue remains unclear. The difficulty of segmentation varied depending on the region; the zygomatic muscle was the easiest to separate, whilst the orbicularis oculi, frontalis and platysma muscles proved particularly difficult due to their thin, flat morphology.

    J. Imaging

    20 September 2026

  • The increasing use of generative artificial intelligence (GenAI) in university students’ academic writing is challenging established understandings of authorship, academic integrity, and learning. The study investigated how undergraduates negotiate authorship, responsibility and learning within these emerging writing practices. The study used a qualitatively driven mixed-methods design with undergraduate students enrolled in two sections of an academic writing course at an English-medium university in Cyprus. Data comprised 55 written reflections on students’ use of GenAI while completing a research paper and 27 responses to an anonymous post-course questionnaire. Reflections were analysed using thematic analysis, with questionnaire data providing additional descriptive and contextual evidence. Findings indicate that students positioned GenAI as legitimate support for brainstorming, organising ideas, language refinement and feedback while resisting its use as a substitute for intellectual engagement. Students constructed authorship through human judgement, locating ownership in verification, evaluation, decision-making, and accountability rather than sole textual production. Ethical GenAI use emerged as boundary work distinguishing assistance from substitution, while meaningful learning was associated with maintaining cognitive ownership of the thinking underpinning academic work. These findings suggest that GenAI can be integrated into academic writing while students continue to locate authorship, ethical responsibility, and meaningful learning in human judgement and intellectual engagement.

    Educ. Sci.

    20 September 2026

  • Impact of Climate Change on the Spatial Dynamics of Habitats Suitable for the Genus Clusia L. in Peru

    • Dennis Cieza-Tarrillo,
    • Jim J. Villena-Velásquez and
    • Alex J. Vergara
    • + 6 authors

    Climate change is expected to reshape the climatic suitability of Neotropical plant taxa, particularly in topographically complex regions such as the tropical Andes, yet no nationwide assessment exists for the genus Clusia L. (Clusiaceae) in Peru. We modeled its current and future potential distribution using MaxEnt, based on 245 spatially thinned occurrence records (GBIF) and bioclimatic variables from WorldClim 2.1 selected through Pearson correlation and variance inflation factor filtering. Model complexity was tuned with ENMeval using spatial block cross-validation, and future projections were generated under the SSP2-4.5 and SSP5-8.5 scenarios for 2041–2060, 2061–2080, and 2081–2100 across three Global Climate Models. The model showed acceptable, stable performance (training AUC = 0.824, test AUC = 0.825), with elevation and precipitation seasonality (Bio15) as the leading predictors, together with Bio19 and Bio3 accounting for over 80% of the total contribution. Currently, only 16.61% of Peru is climatically suitable (medium–high) for the genus, concentrated discontinuously along Andean slopes and inter-Andean valleys. Both future scenarios project progressive contraction and fragmentation of suitable habitat, most severe under SSP5-8.5, where high-loss areas reach 50.43% of the evaluated territory by 2081–2100; these projections should be interpreted as plausible scenarios rather than validated forecasts, given the absence of independent data for future periods. Habitat gains were restricted to higher elevations, consistent with an altitudinal range shift. These results provide a coarse-scale spatial baseline that highlights broad patterns of climatic vulnerability for the genus, intended to guide exploratory conservation attention and future species-level research in the Andean region, rather than site-specific management decisions.

    Forests

    20 September 2026

  • Oregano essential oil (OEO) was tested as a natural botanical anesthetic for spotted sea bass (Lateolabrax maculatus) through a comprehensive evaluation of anesthetic efficacy, physiological homeostasis, tissue integrity, flesh texture and carvacrol residual dynamics. Gradient treatments (100–300 µL/L) revealed dose-dependent anesthetic performance, and 200 µL/L was validated as the optimal dosage, under which fish reached deep anesthesia within 3 min and regained normal swimming within 5 min, with zero mortality recorded 12 h post-anesthesia. Temporary stress and oxidative stress fluctuations occurred in serum biochemistry and antioxidant enzyme profiles, which approached control levels after 12 h depuration. Only slight histological changes appeared in liver and gill tissues without permanent pathological damage. Minor declines in partial texture attributes recovered completely within 12 h, whereas other muscle quality indicators remained unaffected. Carvacrol was detected in muscle immediately after OEO anesthesia but was below the detection limit at all subsequent sampling times. Functioning as an efficient natural anesthetic with minimal physiological disturbance, OEO shows potential as an alternative to synthetic anesthetics for spotted sea bass live transportation and delivers dependable technical guidance for aquaculture production.

    Fishes

    20 September 2026

  • Spontaneous imbibition is an important process in enhanced oil recovery, yet its accurate prediction in nanoscale pores remains a significant challenge due to the breakdown of continuum assumptions at the nanoscale. The classical Lucas-Washburn (L-W) equation, which suggests that imbibition length is proportional to the square root of time, fails to capture the complex early-time dynamics in nanopores. Therefore, in this work, coarse-grained molecular dynamics simulations were employed to systematically investigate two-phase imbibition across a range of pore sizes (1.85–7 nm), fluid types (C4–C20 alkanes), and wettability conditions. The results reveal a distinct transition from continuum-dominated to molecularly dominated flow as pore size decreases, with anomalous kinetics that originate from molecular-scale interactions in sub-2-nm pores. A refined imbibition model is proposed that explicitly incorporates an entrance resistance term in addition to the capillary and viscous forces. This new model successfully resolves the overestimated initial velocity by the L-W equation, revealing a dual-regime physics, including an early-time, almost linear regime influenced by entrance resistance, followed by the classical late-time L-W regime. The model demonstrates excellent agreement with molecular dynamics data for mesoscopic nanopores (r ≥ 3.5 nm), validating its physical basis. Although the proposed model is still not predictive due to the implicit inclusion of imbibition rate in the derivision, the findings provide a robust theoretical foundation for describing imbibition in nanopores and highlight the critical need for molecular-scale approaches in extreme nanoconfinement.

    Processes

    20 September 2026

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I argue that the emerging sciences of synthetic morphology and diverse intelligence suggest non-physicalist models of mind and show how they can be empirically investigated. Whence the anatomical, physiological, molecular-biological, and behavioral properties of engineered new beings that have never before existed, and do not have a history of selection? Understanding, predicting, and guiding new forms of life and mind requires characterizing a structured latent space of patterns. Developmental, synthetic, and behavioral biology should take seriously, and exploit, the kinds of non-physicalist ideas that are already a staple of Platonist mathematics. I propose the following hypotheses. (1) Patterns in this space span a highly variable degree of agency, comprising a spectrum ranging from static truths studied by mathematicians to active ones studied by behavioral scientists (i.e., some patterns on the same spectrum as mathematical truths are kinds of minds). (2) The relationship between mind and body is the same as the relationship between causally instructive mathematical facts and physics. (3) Living beings have no monopoly on the “free lunches” provided by the ingression of these patterns into the physical world. While traditional computationalist views of living and cognitive systems are insufficient, my framework erases artificial distinctions between organisms and machines, framing all physical constructs (natural or engineered) as being, to various degrees, in-formed by patterns from the latent space. I sketch a research program, already begun, inspired by these ideas. Such frameworks, while contradicting long-held assumptions of both mechanists and organicists, could have many implications for evolutionary biology, regenerative medicine, AI, and the ethics of synthbiosis with the forthcoming immense diversity of morally important beings.

Philosophies

9 September 2026

58,049 Views
Bodies and minds self-assemble from single cells as a process of alignment and autopoiesis. (A) Most complex biological forms begin as one cell—a fertilized oocyte, commonly thought to be well-described by the laws of physics and chemistry. (B) A gradual, slow process of developmental morphogenesis results in the final form of the organism, which may have complex structure and a mind which may not believe it is a “machine”. Our transformation from a chemical soup into an active embodied mind is continuous but heterogeneous: (C) while we commonly think of ourselves as a unified intelligence with a “centralized” brain, the fact is that even the pineal gland, of which there is only one in the brain, is made of cells (C′) and those cells in turn are made of myriad other active components (C″)—we are a collective intelligence at all scales. (D) The creation of an “individual” out of an excitable medium such as an embryonic blastoderm with hundreds of thousands of cells is a dynamic process that is not hardwired: scratches made in that blastoderm would result in independent self-organization in each island, resulting in multiple embryos forming. This reveals the potentiality for some non-pre-determined number of minds to arise out of the same substrate. Images in (A,B,D) courtesy of Jeremy Guay of Peregrine Creative, used previously in [29]. Image (B) used with permission from [30]. Image in (C′) courtesy of Jose Calvo, Science Photo Library. Image in (C″) courtesy of Evan Ingersoll and Gaël McGill. Image (D) used with permission from [31].

Insulin resistance (IR) represents one of the most pressing problems in contemporary public health. Its estimated global prevalence ranges from approximately 15.5% to over 61%, depending on the population studied, the diagnostic criteria applied, and the method used for its assessment. Despite the scale of the problem, IR remains underrecognized and lacks formal definition as a distinct disease entity, even as a growing number of clinicians and researchers worldwide describe it as such. Its asymptomatic or mildly symptomatic course allows it to remain undetected for years, during which it makes a significant contribution to the development of type 2 diabetes, cardiovascular disease (CVD) and metabolic dysfunction-associated steatotic liver disease (MASLD, formerly NAFLD), and has been increasingly linked to cellular senescence, certain cancers, neuropsychiatric disorders, and other metabolic conditions. The aim of this review was to summarize current knowledge on the pathophysiology, diagnosis, and clinical implications of insulin resistance, to discuss current challenges in its diagnosis, and to evaluate whether available scientific evidence supports its recognition as a distinct disease entity. This narrative review is based on clinical, epidemiological, and mechanistic data retrieved from PubMed and Google Scholar. Meta-analyses, systematic reviews, clinical and observational studies, clinical guidelines, and expert position statements were analyzed. Animal studies were excluded to maintain a focus on human public health implications. The diagnostic gold standard—the hyperinsulinemic-euglycemic clamp—was discussed, along with surrogate methods used in clinical practice (HOMA-IR, OGTT with insulin measurements, the TyG index, and the TG/HDL-C ratio). Factors potentially contributing to the pathogenesis of IR were examined, including hyperinsulinemia (HI), high-carbohydrate diets, inflammation, stress, and sleep disturbances, as well as conditions in which IR occurs physiologically. The findings indicate that current evidence supports the need for a clearer clinical and diagnostic framework for insulin resistance and suggest that its recognition as a distinct disease entity could facilitate earlier diagnosis, improve the standardization of clinical management, and enable earlier metabolic intervention. Given the steadily rising prevalence of metabolic disease, systemic efforts directed at the early identification and treatment of IR may be a key component of strategies aimed at reducing the population-level burden of metabolic disease and its negative consequences.

Nutrients

14 August 2026

15,170 Views
Physiological insulin resistance.
  • Communication
  • Open Access

Background/objectives: Melatonin has circadian, antioxidant, mitochondrial, and immunomodulatory functions, but human data linking relative melatonergic status to coordinated systemic biomarker burden remain limited. We examined this association and tested its internal robustness to alternative score construction, outlier handling, and missing-data assumptions. Methods: We performed an adult-only cross-sectional secondary analysis of a deidentified biomarker dataset. Of 322 source records, six participants younger than 18 years and two records without age were excluded, yielding 314 adults. Plasma melatonin and 24 h urinary aMT6s were converted to within-cohort rank percentiles and averaged to form a relative melatonergic-axis score. Equal-weight z-score composites represented inflammation, oxidative damage, antioxidant deficit, and biological aging/biological injury; their mean was the integrated systemic biomarker-burden score. Analyses included Kruskal–Wallis tests; Spearman correlations with bootstrap confidence intervals; standardized regression adjusted for age, sex, and BMI; robust covariance estimates; principal component analysis (PCA), winsorization, leave-one-domain/marker-out analyses, and missing-BMI sensitivity models. Results: The lower, intermediate, and higher relative melatonergic tertiles included 105, 104, and 105 adults, respectively. The melatonergic-axis score correlated inversely with integrated systemic burden (Spearman ρ = −0.944; 5000-resample bootstrap 95% CI, −0.953 to −0.931; p < 0.001). In age-, sex-, and BMI-adjusted complete-case models (N = 250), each 1 SD higher axis score was associated with a 0.95 SD lower integrated burden (β = −0.949; HC3 95% CI, −0.983 to −0.915; p < 0.001). Results were similar for separate plasma melatonin and aMT6s models, winsorized composites, a PCA-derived score (PC1 explained 75.5% of marker variance; ρ = −0.947), leave-one-domain/marker-out analyses, and missing-BMI sensitivity models. Conclusions: Lower relative melatonergic status was associated with a highly coordinated adverse systemic biomarker pattern. The exceptional magnitude of the association requires audit of primary assay provenance and independent external replication. Because cancer, microbiome, and liquid biopsy endpoints were not measured, oncology implications remain untested prospective hypotheses.

Cancers

12 August 2026

14,618 Views
Study design, measured variables, analytic workflow, and interpretation boundary. Solid arrows denote derivation steps. The bidirectional symbol identifies the cross-sectional association tested; no causal direction is inferred. Variables listed in the interpretation-boundary box were not measured in the source dataset.

Animal material culture is most often discussed in relation to tool use and foraging, while non-foraging object use remains poorly documented in many taxa. This study reports opportunistic observations of a novel object-directed behavior in the critically endangered pygmy raccoon (Procyon pygmaeus), an island-endemic species restricted to Cozumel, Mexico. During fieldwork on tourism effects between January and February 2026, researchers used direct observation, site assessment, photography, videography, and interviews to document raccoon behavior at several sites. At one beach club, two juvenile female siblings were observed retrieving paper waste, dipping it in water, rolling and compacting it with sand, and using the resulting balls in play. One juvenile first performed the full sequence while the other observed and then attempted the behavior; the second juvenile later completed the sequence independently after her sister had been removed from the site. However, at a comparable tourism site with juvenile raccoons and access to paper and water, this behavior was not observed. These observations provide potential evidence of socially mediated material engagement in pygmy raccoons. The findings expand the known behavioral repertoire of the species and support continued field-based behavioral monitoring, especially where tourism, waste exposure, and juvenile development overlap.

Wild

25 August 2026

10,240 Views
Paper transformation behavior in two juvenile pygmy raccoons: (a) Juvenile 1 making a paper ball. (b) Juvenile 2 observing and approaching. (c) Juvenile 2 retrieves paper from the trash and attempts to make a ball without success. Juvenile 1 watches this attempt. (d) Juvenile 1 takes the paper from Juvenile 2 and begins to make a ball while Juvenile 2 plays with Juvenile 1’s first ball. (e) After the illness and subsequent removal of Juvenile 1, Juvenile 2 is seen turning a hamburger wrapper into a ball.

Editor's Choice Articles

The reserves of non-refractory gold ores are continuously declining, while refractory gold ore deposits remain abundant. Therefore, developing more efficient technologies to utilize these ores is crucial for gold-related industries. Oxidation roasting is commonly used to eliminate the adverse effects of sulfur- and arsenic-bearing minerals, but its underlying mechanisms are still not fully understood. To address this gap, the present study investigated the effect of oxidation roasting on gold leaching rate. A combination of roasting–leaching experiments, X-ray diffraction (XRD), pore structure analysis, and scanning electron microscopy (SEM) was employed to examine the evolution of surface pore structures and their impact on leaching performance. The gold leaching rate of the raw material was only 10.13%, due to the encapsulation of gold particles within pyrite. Under optimal roasting conditions—600 °C for 2 h—the gold leaching rate reached a peak value of 88.06%. At this temperature, the dense surface of pyrite decomposed, forming a highly porous structure that allowed the JinChan lixiviant to fully contact the gold particles. However, increasing the roasting temperature or extending the roasting time promoted the formation of CaSO4 and Mg2SiO4. These newly formed phases may have contributed to pore blockage on the hematite surface, which could explain the more compact structure and the subsequent decline in gold extraction. Based on these observations, a possible mechanism is proposed linking pore structure evolution and phase transformation during roasting to the leaching performance.

Minerals

31 August 2026

Mineral composition maps of gold flotation concentrate determined by AMICS.

Technological advancements have transformed the ways in which individuals interact with digital platforms, giving rise to data-driven ecosystems in which interface design plays a central role. Within these environments, dark patterns and manipulative and deceptive design techniques shape user behaviour in ways that undermine privacy, autonomy, and informed consent. This paper develops a harm-based analytical framework for privacy dark patterns by deriving a typology of privacy-relevant design mechanisms through a structured consolidation of four independently produced taxonomies. It then constructs a harm typology by combining an injury-based framework with the harm categories developed by regulatory authorities and maps each design mechanism to the harms it is structurally apt to produce. Finally, it identifies the provisions of EU law that each mechanism engages, across the GDPR, consumer protection law, the Digital Services Act, the Digital Markets Act, the Data Act and the AI Act. The analysis finds that the GDPR engages every mechanism identified, that coverage by post-GDPR instruments is uneven, and that one mechanism—the exploitation of relational and third-party data—engages no post-GDPR instrument squarely. The deficiency in the EU framework therefore lies not in the substance of its prohibitions but in the coordination of enforcement and in the evidentiary architecture through which non-material harm must be established.

Platforms

3 September 2026

Cloud platforms must hold utilisation and latency targets while demand shifts and attack traffic arrive together. Reactive threshold scaling meets neither pressure, and an autoscaler blind to attacks funds the load an adversary requested. Recent work shows adversaries can drive this loop into economic denial of sustainability, so the controller sits inside the attack surface. No prior orchestrator couples workload forecasting, unsupervised anomaly detection and learned scaling in one loop, and none reports multi-seed significance testing. This article extends SARO, presented at IMCOM 2026, to close that gap. We formalise the problem as a Markov decision process with a corrected multi-objective reward, and replace the tabular agent with SARO-DQN, a continuous-state controller trained by three-step Double Q-learning. Across ten held-out days and five seeds, SARO-DQN reaches the highest composite reward (200.1 ± 16.5) and the highest utilisation (68.2%) against eight alternatives, and every reward difference is significant under Welch tests (p<0.05). Ablations attribute 23.6 reward points to the detector ( ) and 8.9 to the forecast (p=0.016). On UNSW-NB15, the detector attains an AUC of 0.888. Two principles follow. Detectors must consume exogenous traffic-shape signals, and detector and policy must be trained as a coupled system.

Electronics

31 August 2026

Feasibility Study on Non-Invasive Methods for Bladder Biomechanics During Voiding Using Uro-Dynamic MRI

  • Juan P. Gonzalez-Pereira,
  • Evan J. Turner and
  • Alejandro Roldan-Alzate
  • + 2 authors

Background: Uro-Dynamic MRI is a non-invasive protocol used to evaluate/analyze bladder contraction. Regionalized anatomical measurements and multi-variate linear regression models (MVLRM) were used to establish a methodology to evaluate bladder contraction. Methods: In this exploratory study, five healthy subjects and six LUTS patients underwent Uro-Dynamic MRI during voiding. Bladders were segmented at each time point during the void. Volume (V) and surface area (SA) were recorded, resulting in urinary flow rate (Q) and sphericity index (SI) curves. Regionalized anatomical measurements were tracked and linearly correlated with Q, while symptom scores from the International Prostate Symptom Score Survey (IPSS) were correlated using MVLRM. Results: Healthy subjects exhibited high linear correlation of contraction with Q; the opposite was observed in LUTS patients. The occurrence of SImax coincided within two time points of Qmax for 80% of healthy subjects and 50% of LUTS patients. MVLRM identified SI, transverse and anteroposterior lengths as correlates of LUTS diagnosis and urinary frequency. Conclusions: This methodology revealed distinct, biphasic patterns of bladder contraction during voiding and showed associations between symptomatic behavior and anatomical measurements. This exploratory study demonstrated a comprehensive methodology to non-invasively quantify patient-specific bladder contraction patterns during voiding that could provide physicians with relevant information on symptom-specific treatment.

Bioengineering

28 August 2026