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External nares and olfactory perception.

Lower vertebrates have more widely separated external nares than higher forms and are thus better adapted to utilize olfactory tropotaxis, or stereolfaction, than higher vertebrates which, on account of their flexible necks, must utilize klinotaxis. Snakes and tubenosed bats break the rule on account of their specialized life styles.

Animals

Impairment of olfactory perception in male rats by treatment with p-chlorophenylalanine and hydrocortisone.

p-Chlorophenylalanine treatment eliminated the normal male rat preference for the female preputial gland odor. Oral administration of hydrocortisone had a similar effect on dimethyl sulfite preference, which slowly reappeared after the discontinuance of the treatment. These changes of behavior are discussed in relation to possible serotonin alterations resulting from the treatments.

Animals

Scopolamine: effects on fear or defense responses in the rat.

In previous research scopolamine reduced fear or defense responses of rats to a cat, and removal of the rats' olfactory bulbs had the same effect. This suggested that scopolamine might have affected defense responses by blocking olfactory perception of the stimulus cat. The present experiments studied this possibility and explored further the effects of scopolamine on defense responses of the hooded rat. In Experiment 1 rats treated with scopolamine were found to be responsive to olfactory cues from a cat. When cat smell, but not a cat, was present in the apparatus, scopolamine-treated rats showed a large and significant suppression of food consumption. In Experiment 2 the effects of scopolamine on defense responses were shown to be generalizable to an inanimate stimulus, mechanical robot. Scopolamine caused significantly less freezing and avoidance and significantly shorter latencies to drink in the presence of the robot. One of the primary findings of the present research is that scopolamine has now been shown to reduce the defensive response of freezing in a variety of stimulus situations. This finding was thought to have important implications for the literature relating anticholinergic drugs and avoidance behavior.

Animals

Comparative analysis of olfactory receptor repertoires reveals evolutionary dynamics and high-altitude adaptation in Schizopygopsis younghusbandi based on the chromosome-level genomes.

The olfactory receptor (OR) gene represent a significant multigene family in vertebrates, forming the core molecular basis of olfactory perception and playing a crucial role in the environmental adaptation of species. High-altitude ecosystems represent extreme habitats characterized by specific abiotic stresses, including low oxygen levels, low temperatures, and intense ultraviolet radiation. These environments also exhibit low aquatic biodiversity and a limited variety of odor molecules, factors that have influenced the adaptive evolution of the sensory systems in endemic species. However, the genetic mechanisms underlying olfactory adaptation in high-altitude freshwater fish remained inadequately understood. In this study, we performed comparative genomics analyses to reveal the evolutionary processes underlying the adaptive and functional evolution of OR genes in S. younghusbandi, a cyprinid fish endemic to the Qinghai-Xizang Plateau. The results indicated that, compared to their low-altitude relatives, S. younghusbandi possessed a significantly smaller number of OR genes, with only 98 genes, which revealed the contraction of the gene family. Phylogenetic analysis revealed that the OR genes of cyprinid fish could be categorized into two major lineages: type I and type II. The η and δ families, which perceive water-soluble odors, in S. younghusbandi underwent significant and specific expansion, while the ε family was completely absent. This pattern reflected adaptive changes in olfactory recognition to accommodate the simplified odor spectrum of high-altitude water bodies. Chromosomal localization analysis demonstrated that OR genes were clustered, and collinearity analysis confirmed the presence of conserved genomic fragments among species. Selection pressure analysis revealed that the Ka/Ks values of all homologous gene pairs were less than 1, indicating that the OR genes of S. younghusbandi underwent strong purifying selection as a group to preserve core olfactory function. A few genes exhibited relaxed selection characteristics, which may have facilitated the fine-tuning of adaptability to high-altitude environments. In conclusion, this study elucidated the evolutionary dynamics and adaptive characteristics of the OR gene in S. younghusbandi, offering a new perspective on the molecular mechanisms underlying olfactory adaptation at high altitudes and enriching the research on sensory evolution in vertebrates.

Schizopygopsis younghusbandi

Olfaction in the development of social preferences in the human neonate.

Olfactory perception in the human neonate has been largely ignored. The present experiments examine the possibility that neonates can use smell to locate a food source and that they can differentiate between their own mother and another mother on the basis of smell. Head-turning to breast pads was used in perference tests. Although the neonate did not appear to be able to use smell to localize a food source, significantly more babies spent more time turning towards their own mother's breast pad than towards a clean breast pad at five days of age. By six days of age babies were showing a differential response between their own mother's breast pad and another mother's breast pad, although this differentiation was not present at two days of age.

Age Factors

The effect of olfactory training and odor exposure on visual selective attention.

Olfactory training (OT) is a well-established, non-invasive intervention that improves olfactory function by repeated, structured exposure to odorants. Beyond sensory outcomes, it also influences multiple aspects of cognition. Yet, its influence on attention, a fundamental process underlying many cognitive domains, remains unclear. This study examined the impact of a 12-week OT program on visual selective attentional performance and the effect of on-task odor exposure. Ninety-four healthy participants were initially included, and randomized into OT or placebo groups. Participants completed the d2 Test of Attention simultaneously with and without odor exposure in a randomized sequence at baseline, post-training, and a follow-up four weeks after stopping the training. The d2 test measures commission errors, omission errors, and concentration performance. Ninety-three participants (OT=51, placebo=42) completed baseline measurement, 74 (OT=39, placebo=35) returned for post-training session, and 57 participants (OT=29, placebo=28) returned for the follow-up appointment. Results showed that OT did not significantly improve d2 test performance. In the primary model, on-task PEA exposure reduced commission errors compared to the odorless condition, suggesting a possible transient effect of olfactory input on the inhibitory control in the context of the d2 attentional test. This effect, however, was no longer significant once the follow-up data were included and should be regarded as preliminary. Overall, these findings raise the possibility of a distinction between relatively long-term OT and short-term odor exposure: while OT did not improve visual selective attention, brief on-task odor exposure may transiently enhance inhibitory control during attentional tasks, a possibility that remains to be confirmed.

Humans

Molecular Drivers of Mutualistic Association Between Anemone and Anemonefish.

The anemone-anemonefish mutualism is one of the most iconic in the marine environment. While the evolution of this mutualistic relationship has contributed to the ecological success of both partners, the underlying molecular processes that establish and maintain it remain poorly understood, particularly how anemonefish tolerate anemone venom. Here, we characterize the transcriptional dynamics in both the anemonefish Amphiprion clarkii and its host anemone Entacmaea quadricolor 48 h after association, providing a rare insight into the coordinated molecular processes in both partners that underlie symbiosis establishment. Upon acclimation with an anemone, anemonefish showed differential regulation of sensory perception and memory genes in key brain regions, indicating activation of neural pathways that may facilitate host recognition and mutualism establishment. In the fish's skin, altered expression of genes involved in neurotransmitter release, cytoskeleton organization, and venom receptor proteins points to mechanisms of resistance to anemone venom. This resistance is particularly remarkable since anemone hosting fish exhibited increased expression of genes encoding mechanoreceptors, putative venom-associated proteins, and ion channels involved in nematocyst discharge, indicating the anemone does indeed mount an active response to their mutualistic partner. By simultaneously capturing the molecular responses of both symbiotic partners, our results reveal the complex, coordinated interplay of molecular events in both species that play a pivotal role in establishing this mutualistic relationship.

Symbiosis

Results of clinical olfactometric studies.

A modification of a flow olfactometer with a new application appartus, with which "quasi-free" nasal respiration allows the elimination of adaptation without a special testing room, subsequent results using this device to examine olfactory thresholds before and after septum operations, as well as reference to threshold increases in 57 post-operative cases of cheilognathopalatoschisis are reported. An esthesio-neuroblastoma as well as the deformity syndrome with cheilognathopalatoschisis and encephalodystrophy are used as examples for combined olfactory transmission and perception disorders. Studies of 55 smokers with primary neurosensory disorders demonstrated a threefold increase in the olfactory threshold and an up to 50% decrease "fatique-time". A mean acetone deviation factor of 1.93 was seen in 100 students from 20-27 years of age before and after eating. Correspondingly, after a substantial breakfast and lunch, the olfactory threshold attained its maximum daily value within 90 minutes, much more pronounced than after intake of 80 grams of glucose solution. In contrast to the literature, the olfactory threshold was seen to continuously increase, dependent on age. Studies of the perceptive and recognition threshold on 100 normal individuals and 28 patients with hyposmia exhibited with 3 sigma, a significant difference. In patients with hyposmia, the absolute values for the two threshold types vary greatly, however not their deviation factors. More importance should be attached to the sense of smell as the so-called lesser senses give us the greatest pleasures.

Adolescent

Maturational loss of thermotaxis prevented by olfactory lesions in golden hamster pups (Mesocricetus auratus).

Five-day-old golden hamster pups were tested preoperatively on a thermal gradient, subjected to bilateral or unilateral olfactory bulbectomy or control dorsal cortical removal, and then tested on Days 6-15. Locomotion and rectal or belly temperature were monitored throughout the 2-min test. Control pups became quiescent in the hot end of the gradient on Days 5-7 but after Day 8 chose cooler regions and increased their activity. Both unilaterally and bilaterally bulbectomized pups spent more time in the heat throughout testing. They were also less active and allowed their temperature to rise more rapidly than controls. Percentage of time in the heat was elevated in all bulbectomized pups, although some retained the ability to make an olfactory discrimination. Enhanced thermal behavior is apparently not due to anosmia per se. Altered thermal perception or responsitivity may result from loss of "nonspecific" olfactory projections that normally would mature at the beginning of the second week.

Animals

[Spatial perception of stimuli during unilateral exclusion of the temporal portion of the neocortex by cold].

Behavioral reaction of twelve cats were studied in conditions of inactivation by cold of the temporal area (AI, AII, Ep and partly I-T) of one hemisphere. A typical vestibular ataxy was observed: deflection of the cats when walking, circular movements in the direction of the inactivated temporal area. Orienting reactions both to acoustic and photic stimuli persisted, but their spatial localization was completely lost. In every case the animals exhibited a clear orienting reaction towards the inactivated hemisphere, regardless of the localization of the source of signal. Reactions ot pain and olfactory stimulations likewise proceded in one direction. such a one-sided perception of sounds in the case of inactivation by cold of the temporal neocortex of one hemispheres is apparently due to the functional elimination of contralateral auditory structures. Disturbance of adequate spatial perception of photic, pain and olfactory stimuli under similar conditions results from a sharp drop in the tone predominantly of the ipsilateral hemisphere.

Animals

Perceptual factors in the design of environments for the mentally ill.

Administrators and others responsible for the design of environments for the mentally ill must be aware that what might be considered irrelevant minutiae of design can have traumatic effects on patients. Because of patients' heightened sensitivity to sensory stimuli and their lessened ability to filter out or adjust to the effects of such stimuli, they are much more likely to be affected by their surroundings than are healthier people, and their social relationships are correspondingly affected. The author describes several kinds of visual, auditory, olfactory, and other stimuli that lead to distorted perceptions of oneself and others and of time and space. He recommends not a bland and stimulus-free environment, but one whose elements are unobtrusive and unambiguous.

Environment Design

Bilateral sensory neglect following midsagittal reticular formation lesions in cats.

We have observed that midsagittal reticular formation lesions in cats produce bilateral deficits in attention to and localization of various sensory modalities. To correlate these changes with previously reported changes following lesions in other areas of the brain, we propose the existence of two interdependent inhibitory pathways which originate in the frontal lobes.

Animals

Discrimination of odors in olfactory bulb, pyriform-amygdaloid areas, and orbitofrontal cortex of the monkey.

In the orbitofrontal olfactory area (LPOF) which was delineated in a previous paper, the capacity for odor discrimination was studied and compared with that in the anterior pyriform cortex (AP), the medial portion of the amygdala (MA), and the olfactory bulb (OB). Unanesthetized monkeys were used and eight odors were applied. 1. In the OB, 12.5% of the cells responded to only one odor, and the cells which responded to five odors were most numerous (25%). The total of the cells which responded to two, three, and four odors was 52%, which was less than the total of the cells responding to three, four, and five odors (67.5%). A small number oc cells responded to all eight odors (2.5%). The responses were classified as an increase (+type), a decrease (-type), or no change (no-type) in the rate of spike discharge. 2. In the AP and MA, no difference in the response patterns was found. The cells which responded to only one odor were 12.3% of the total, and the cells which responded to three different kinds of odors were most numerous (34.3%). The total of the cells responding to two, three, and four odors was 80%, much more than that in the OB. In addition, no cell responded to all eight odors. Concerning the response types, an increase followed by a decrease, or vice versa, in the rate of spike discharges (mixed-type) was observed which did not appear in the OB. Thus, an advance was found in the processing of olfactory information when compared with the OB. 3. A most striking finding in the LPOF was that 50% of the cells responded to only one odor. The cells which responded to two, three, and four odors decreased in this order, and no cell responded to more than five odors. These cells never responded to light or sound. 4. Using three very similar odors and five very different odors, it was apparent that the ability to discriminate odors of the same category is far more advanced in the LPOF than in the lower olfactory areas; and, in contrast, the lower olfactory areas also play a significant role in the discrimination of odors which belong to different categories. 5. It was concluded that the capacity for odor discrimination definitely improves along the olfactory nervous system from the lower to the higher areas. It is highly probable that a fine and sepcific discrimination of odors is performed in the LPOF.

Amygdala