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Methodology for determining the sensitivity of swing leg toe clearance and leg length to swing leg joint angles during gait.

During the swing phase of gait, the effective length of the leg-distance from the hip joint center to the toe-must be made shorter than the distance from the hip to the floor to avoid toe-stubbing or tripping while walking. Critical toe clearance occurs approximately halfway through swing phase when the distance between the toe and the floor reaches a local minimum. Analytical techniques derived in this study were used to evaluate: (1) the sensitivity of toe clearance to the swing leg hip, knee, and ankle joint angles; and (2) the sensitivity of the hip-toe distance to the swing leg knee and ankle joint angles. The toe clearance, hip-toe distance, toe clearance sensitivity (TCS), and hip-toe distance sensitivity (HTDS) were calculated for each frame of data during the swing phase of 10 able-bodied subjects. A minimum toe clearance of 1.9+/-0.5cm occurred at about 51% of the swing phase during able-bodied gait. At that particular time, the toe clearance was found to be most sensitive to the angle of the ankle (17.1cm/rad), then the hip (9.5cm/rad), and lastly the knee (2.5cm/rad). The hip-toe distance was found to be about twice as sensitive to the angle of the ankle (-15.3cm/rad) than to that of the knee (-7.6cm/rad) at the time of critical toe clearance. The methodology developed here and the baseline information calculated for able-bodied subjects could be used to evaluate the effects that different gait pathologies have on swing-phase toe clearance and hip-toe distance.

Adult↗

Measurement of blood pressure in all toes in arterial occlusive disease of the leg.

In the present study, systolic blood pressure in all toes was measured by using a bladder-free cuff in 20 normal limbs and 106 limbs with arterial occlusive disease, and the clinical significance of blood pressure measurement in all toes was studied. In 97 of 106 limbs with arterial occlusion, all 5 toes showed a significantly decreased blood pressure, indicating that any toe can be used for the purpose of diagnosis of arterial occlusions. However, 41% of cases showed the difference in blood pressure of more than 15 mm Hg between any 2 toes. Great variations of blood pressure among 5 toes were observed especially in limbs with gangrene or with other skin ischemic symptoms such as cold sensitivity, numbness, or history of gangrene in the toes. In these cases, evaluation of hemodynamics in each toe is considered to be of use for prognostic study of gangrene, selection and evaluation of treatments, and follow-up study. In limbs with intermittent claudication, however, blood pressure measurement in all toes may have little value in clinical practice because of small variation among blood pressure values of 5 toes. In comparison of blood pressure values in each toe from limbs with gangrene, toes with gangrene showed a significantly lower blood pressure than toes without gangrene. However, even in these toes without gangrene, a significantly lower blood pressure was observed than in toes from limbs without gangrene. These findings indicate that severe damage to digital circulation due to an occlusive process proximal to the toes is a primarily indispensable condition for development of gangrene in arterial occlusive disease.

Adult↗

Fibrocartilages in the extensor tendons of the interphalangeal joints of human toes.

The extensor tendons of the fingers and toes form part of the capsule of the interphalangeal joint and press against the proximal phalanx during flexion. Previous work on the fingers has shown that there is a "sesamoid" fibrocartilage on the deep surface of each tendon that labels immunohistochemically for a variety of glycosaminoglycans and collagens. However, we know little about the molecular composition of the tendon in the toes. This question is of special interest, because the mechanics of the interphalangeal joints differ in the upper and lower limbs-the toes balance the forefoot, distribute load during the gait cycle, and transmit the pull of larger muscles. This means that their extensor tendons are more often under higher tension than those in the fingers. Here, we report the presence of an equivalent fibrocartilage and compare its immunolabelling characteristics in all the toes. Six forefeet were removed from elderly cadavers, and the interphalangeal (IP) joints were fixed in 90% methanol. The extensor tendon and its enthesis were dissected out from the IP joint of the big toe and from the proximal interphalangeal (PIP) joint of all lesser toes, decalcified, cryosectioned, and immunolabelled with a panel of monoclonal and polyclonal antibodies for type I, II, III, and VI collagens; chondroitin 4 and 6 sulphates; and dermatan and keratan sulphate. Antibody binding was detected with the Vectastain ABC Elite avidin-biotin-peroxidase kit (Vector Laboratories, Burlingame, CA). The extensor tendon in all the toes had a metachromatic, sesamoid fibrocartilage on its deep surface that immunolabelled for all glycosaminoglycans and for type I, III, and VI collagens. Labelling for type II collagen was seen in the sesamoid fibrocartilage of all toes but was particularly characteristic of the 2nd through 5th toes. The immunolabelling patterns of the enthesis fibrocartilage were similar in all toes and to results reported previously for fingers. The normal occurrence of type II collagen in the sesamoid fibrocartilage of the 2nd through 5th toes is in contrast to our published data on the fingers. The finding can be related to the more constant loading of the tendon in the toes. The greater prominence of type II collagen in the sesamoid fibrocartilage of the 2nd through 5th toes could be related to a difference in joint position during walking between the 1st toe and the 2nd through 5th toes--the PIP joints of the latter are usually more flexed than the IP joint of the former.

Adult↗

Congenital curly toe of the fetus.

OBJECTIVES: To assess the prevalence, prenatal detection rate, and associated anomalies of congenital curly toe in an unselected obstetric population. METHODS: Between September 2001 and July 2002, 1167 singleton fetuses in the second and third trimesters underwent routine prenatal ultrasound at our hospital. Congenital curly toe was diagnosed when the fourth or fifth toe was not fully delineated on the axial image with medial and plantar flexion on the coronal image. All neonates underwent a physical examination within 3 days after delivery. Radiography was performed on those infants with curly toe. We assessed the prevalence, prenatal detection rate, and associated anomalies of the condition. RESULTS: There were 38 congenital curly toes among the 1167 neonates, yielding a total prevalence of 32.6 per 1000. In 26 of the 38 the fourth toe was curly and in 12 the fifth toe was curly. Of those in which the fourth toe was curly, 26.9% involved the right toe, 65.4% the left, and 7.7% involved both toes. For a curly fifth toe, these values were 25.0%, 16.7% and 58.3%, respectively. There was no associated structural anomaly, chromosomal abnormality, or syndrome in any case. Sixteen of the 38 curly toes were detected on prenatal ultrasound, including 13 of 26 with the fourth toe being curly and three of 12 with the fifth being curly. CONCLUSIONS: Congenital curly toe is not an uncommon condition, and can be detected on the prenatal ultrasound. Although it usually appears as an isolated finding without clinical significance, thorough ultrasound examination of the fetus should be recommended.

Female↗

Isolated third-toe transfer: indications, technique, and reliability.

BACKGROUND: Isolated third-toe transfer is a versatile and safe technique when indicated. METHODS: Between January of 1984 and January of 2003, 37 isolated third-toe transfers were performed in 31 patients. RESULTS: Only one partial loss was noted among 37 transfers. There were 24 male and seven female patients, with an average age of 27.4 years (range, 7 to 43 years). Twenty-five patients received additional toe transfers. Secondary surgery was performed in 17 toes of 15 patients to improve the functional and cosmetic results. Patients were followed for 2 to 180 months (average, 36 months) and no significant donor-site morbidity was seen. CONCLUSIONS: Basically, the indications for isolated third-toe transfer are evaluated in two groups. Third-toe transfer is absolutely indicated when it is necessary for restoring basic hand functions in multiple-finger amputations. It is indicated because both second toes are transferred or the remaining second toe is adjacent to the previously transferred great toe. The other absolute indication is the unavailability of second toes because of trauma or deformity. Third-toe transfer is indicated relatively if it is used for additional reconstruction when basic hand functions are regained or already exist. Another relative indication is its better size match for proposed reconstruction. Second and third dorsal and plantar metatarsal arteries can be used as the pedicle artery for third toe-transfer; however, if second-toe transfer has already been performed or is planned, the third plantar or dorsal metatarsal artery should be used. Isolated third-toe transfer is a useful and reliable technique, especially in multiple-finger amputation reconstruction.

Adolescent↗

Toe-to-hand transfer for traumatic digital amputations in children and adolescents.

In the period from July of 1990 to August of 1994, 45 toe or toe tissue transfers were performed in 28 children and adolescents with traumatic amputation of digits. The average age at the time of transfer was 12 years (range, 3 to 16 years), and the median age was 10 years. The methods of reconstruction included transfer of 6 trimmed great toes, 2 great toe pulps, 24 second toes, 1 vascularized metatarsophalangeal joint from the second toe, 2 third toes, 4 combined second and third toes. and 1 combined third and fourth toes. All of the transferred toes, except one second toe, ultimately survived. Exploration and reanastomosis were required in three cases owing to arterial insufficiency. Partial pulp loss occurred in two digits. Follow-up ranged from 1 to 5 years (average, 3 years). Bony union occurred uneventfully in all patients. Two-point discrimination averaged 5 mm (static) and 6 mm (moving). Active range of the motion averaged 69, 38, and 13 degrees at the metaphalangeal proximal interphalangeal and distal interphalangeal joints of the reconstructed fingers, respectively, and 15 degrees at the interphalangeal joint of the reconstructed thumbs. None of the children required subsequent tenolysis. Pulp plasty was performed in nine digits in seven patients. Radiologically, the transferred phalanges showed the some growth as the non-transferred ones. Trimming the great toe before transfer did not result in premature physeal closure or growth retardation. The donor foot maintained a satisfactory appearance. None of the patients complained of difficulty in running or jumping. Toe-to-hand transfer in children, performed meticulously, can provide a valuable option for reconstruction of traumatic digit loss.

Adolescent↗

Radiographic analysis of growth in pediatric microsurgical toe-to-hand transfers.

Microsurgical toe-to-hand transfers may provide improved hand function in children with absent digits. To date, documentation of the growth potential of these transferred digits has not been performed. This study reviewed the authors' series of pediatric toe-to-hand transfers, with specific attention paid to measuring growth by radiographic analysis. From 1995 to 2000, 23 toe-to-hand transfers were performed in 18 children. Age at time of transfer ranged from 2.8 to 13 years. Indications included constriction band syndrome, transverse deficiency, longitudinal deficiency, traumatic amputation, and vascular malformation. The transfers were successful in 22 of 23 procedures (96 percent success rate). Radiographic analysis of growth was performed using three criteria: (1) appearance of open epiphyseal plates, (2) comparison with preoperative radiographs, and (3) comparison with radiographs of the contralateral control toe. Epiphyseal plates remained open on postoperative radiographs in 27 of 28 phalanges (96 percent) at a mean of 12 months' follow-up (range, 1 to 36 months). The preoperative foot radiographs were compared with serial radiographs of the transferred toe over time. In 10 toe transfers with follow-up greater than 6 months (mean, 21 months), nine patients had increased bony length in the transferred digit. In four patients, radiographs of the toe transfer were compared with radiographs of the corresponding toe on the opposite foot. With a mean follow-up of 29 months, all patients had equal length measurements of the toe transfer with the contralateral toe control. These data provide objective evidence that digital growth potential is preserved in toe-to-hand transfers. Furthermore, this bone growth is comparable with that of the corresponding toe on the contralateral foot. Therefore, microsurgical toe-to-hand transfers may provide children with extra digits that maintain growth and improve hand function.

Adolescent↗

The effect of voluntary toe-walking on body propulsion.

OBJECTIVE: We studied the kinetics of toe-walking by comparing the linear power flow from the leg to the upper-body. Our hypothesis was that toe-walking has no inherent biomechanical disadvantage with regard to upper-body propulsion and support. DESIGN: We studied healthy subjects capable of both heel-toe gait and voluntary toe-walking so that the two forms of gait could be directly compared. BACKGROUND: Ankle joint power at terminal stance is significantly reduced in toe-walking, which has been presumed to imply impaired propulsion and support. However, linear power analysis may be more appropriate for assessing this aspect of gait. METHODS: We compared the normal heel-toe gait of 10 healthy young adult subjects to their voluntary toe-walking gait using gait laboratory kinematic and kinetic data. Inverse dynamic analysis was performed to determine the net joint moments and joint linear powers. The contribution of each joint moment to the total hip linear power was also determined. RESULTS: Hip linear power for toe-walking was similar to that of heel-toe gait with no significant differences in the linear power peaks. The stance phase contributions of the knee and ankle moments were significantly altered in toe-walking only in early stance. CONCLUSIONS: Toe-walking does not inherently impair propulsion and support. RELEVANCE: Linear power analysis is a useful adjunct to clinical gait analysis, complementing joint power analysis. Understanding the inherent kinetics of toe-walking will enhance our analysis of pathological toe-walking and improve treatment design.

Adult↗

Energy cost and physiological responses of males snowshoeing with rotating and fixed toe-cord designs in powdered snow conditions.

The purpose of this study was to measure the energy cost and physiological responses of males while snowshoeing with two separate toe-cord designs (rotating toe-cord system vs. fixed toe-cord design) in powdered snow conditions. Eight males snowshoed at self-selected intensity for two, 1600 m trials in two snowshoes, with a rotating toe-cord system and a fixed-toe cord design. It was found that heart rate (HR) (140 vs. 134 beats min(-1)), oxygen consumption (VO(2)) (63.4 vs. 34.0 ml kg(-1)min(-1)), energy cost (56.0 vs. 52.4 kJ min(-1)), and ratings of perceived exertion (RPE) (13 vs. 12) were significantly (p < 0.05) higher while snowshoeing with the fixed toe-cord design than with the rotating toe-cord system. Snowshoeing with the rotating toe-cord system at an average speed of 3.96 km h(-1) produced mean VO(2) values that were 56% of VO(2) max, while snowshoeing with the fixed toe-cord design at 3.86 km h(-1) evoked mean VO(2) values that were 60% of VO(2) max. Mean HR while snowshoeing with the rotating toe-cord system was 70% of HR max, while the mean HR when snowshoeing with the fixed toe-cord design was 74% of HR max. These findings suggest that snowshoeing with a rotating toe-cord system results in lower cardiorespiratory strain in powdered snow conditions compared to snowshoeing with a fixed toe-cord design.

Energy Metabolism↗

Plantarflexion strength of the toes: age and gender differences and evaluation of a clinical screening test.

BACKGROUND: The toes play an important stabilizing role in weightbearing activities. However, the factors that influence toe plantarflexion strength are poorly understood, and there are no validated measures for assessing toe weakness in the clinical setting. Therefore, the objectives of this study were to determine whether plantarflexion strength of the toes differs according to age and gender and to evaluate the validity of a clinical screening test for assessing toe plantarflexor weakness (the paper grip test). METHODS: Plantarflexion strength of the hallux and lesser toes was measured in 40 young participants (20 men and 20 women, mean age 20.8 +/- 2.2 years) and 40 older participants (20 men and 20 women, mean age 74.6 +/- 5.7 years) using a pressure platform in conjunction with clinical assessment using the paper grip test. RESULTS: Older participants exhibited 32% less plantarflexion strength of the hallux and 27% less plantarflexion strength of the lesser toes compared to younger participants, and women exhibited 42% less hallux plantarflexor strength than men. Gender did not influence lesser toe plantarflexor strength. Participants who failed the paper grip test exhibited significantly reduced plantarflexion strength for both the hallux and lesser toes. The sensitivity and specificity of the paper grip test of the hallux to predict plantarflexor strength less than 2.6 kg was 80% and 79%, respectively, and the sensitivity and specificity of the paper grip test of the lesser toes to predict plantarflexor strength less than 2.2 kg was 75% and 74%, respectively. CONCLUSIONS: These findings indicate that aging is associated with reduced plantarflexion strength of the toes. The paper grip test may be a useful screening tool to detect toe weakness in the clinical setting.

Adult↗

Basic principles on toe-to-hand transplantation.

Within the last three decades, toe-to-hand transplantation has become a well-established method for function and appearance reconstruction after trauma and in congenital hand anomalies. An otherwise healthy and cooperative patient is the ideal candidate for toe transplantation after trauma. In such patient, even primary toe transplantation is possible, if the stump is clean and viable. If secondary reconstruction after completed wound healing is considered, emphasis should be laid on tissue sacrifice during the acute management of non-replantable amputations at the hand. Specific considerations regarding selection of toe(s) to be transplanted, technique of toe harvest and inset, sequence of transplantations if more than one digit is to be reconstructed such as in the metacarpal hand, and postoperative regimen are important to achieve satisfying functional and aesthetic results on both recipient and donor sites. A trimmed great toe is ideal for thumb reconstruction if the amputaiton is located at or distal to the middle metacarpal shaft. However, in more proximal amputations a second toe may be more suitable as it allows transmetatarsal harvest without increasing donor site morbidity. Distal finger reconstruction with partial toe or second toe warp around flap gives most gratifing result to those patients who are critically concerned about their body images and also those who need distal fingers for jobs or recreation activities. Combined second and third toe or third and fourth toe transplantations are particular useful in metacarpal hand reconstruction to provide tripod pinch. The role of toe-to-hand transplantation in the new millenium assuming progress in tissue engineering, gene transfer, and the development of new immunosuppressive drugs is discussed.

Amputation, Traumatic↗

Sixty cases of partial or total toe transfer for repair of finger losses.

Our experience with partial or total toe transfers for the reconstruction of finger deficits is presented. Sixty-one toes were transferred to reconstruct finger deficits in 60 patients. The transfers from the big toe consisted of 3 vascularized whole-nail grafts, 4 onychocutaneous flaps which included the nail and a skin flap from the toetip, 16 thin osteo-onychocutaneous flaps, 4 wrap-around flaps, and 3 combined wrap-around and dorsalis pedis flaps. The transfers from the second toe consisted of 6 trimmed toetips including the nail, 16 second toes, 1 combined second toe and a dorsalis pedis flap, and 1 second toe and third toe. The other transfers mainly consisted of other flaps, including a hemipulp flap and a first web space flap. Regarding the transfers from the big toe, vascularized nail grafts and onychocutaneous flaps were found to be most suitable for the treatment of total nail loss, thin osteo-onychocutaneous flaps for distal phalangeal loss of the thumb, wrap-around flaps with a vascularized iliac bone graft for thumb loss above the metacarpal joint, and the combined wrap-around and dorsalis pedis flaps for a total thumb deficit. Regarding the transfers from the second toe, the trimmed toetips including the nail were most suitable for claw nail deformities, the second toe was most suitable for finger loss except for the thumb with the proximal interphalangeal joint, and the combined second toe and dorsalis pedis flap was most applicable for a total thumb deficit including thenar skin loss.

Adult↗

Accelographic and mechanical post-tetanic count and train-of-four ratio assessed at the great toe.

We examined post-tetanic count (PTC) and train-of-four (TOF) ratios at the great toe assessed accelographically or mechanically and compared these with post-tetanic count and train-of-four ratios evaluated mechanically at the thumb in 24 patients who were given vecuronium. An acceleration transducer was attached to the right great toe, a force transducer to the left great toe and another force transducer to the thumb of the left hand. In the PTC group (n = 12) and TOF group (n = 12), post-tetanic count and train-of-four ratios were simultaneously recorded using the two great toes and the thumb of the left hand respectively. Accelographic post-tetanic count at the great toe was greater than the post-tetanic count at the thumb; however, mechanical post-tetanic count at the great toe was lower than the mechanical post-tetanic count at the thumb. Accelographic and mechanical train-of-four ratios at the great toe were greater than the mechanical train-of-four ratios at the thumb. But mechanical train-of-four ratios at the great toe became similar to mechanical train-of-four ratios at the thumb as the degree of neuromuscular block lessened. In conclusion, the mechanical post-tetanic count at the great toe is lower than the mechanical post-tetanic count at the thumb. In contrast, mechanical train-of-four ratios at the great toe are greater than the mechanical train-of-four at the thumb. Nevertheless, as the mechanical train-of-four ratios at the great toe became comparable with the mechanical train-of-four ratios at the thumb, mechanical assessment of the train-of-four ratio at the great toe may be useful for the evaluation of residual neuromuscular block.

Adult↗

The foot in ballet dancers: the importance of second toe length.

Ballet dancers are prone to foot injuries. Our hypothesis was that the length of the second toe in relation to the big toe affected the distribution of stresses on the foot, correlating with calluses, injuries, and pain. Fifty-nine ballet dancers were examined for second toe length with respect to great toe, calluses, and metatarsophalangeal inflammation. Daily foot pain, limitation of work hours because of this, injuries, age, sex, and rank in the company were considered. The dancers' feet had an incidence of shorter, equal, or longer second toes which was comparable to a non-ballet-dancing cohort (N = 60). In female dancers (N = 34), total callus counts and pain scores were significantly lower in the group with shorter second toes versus those with equal or longer second toes. Counts were unrelated to age or rank. Longer second toes were related to hallux rigidus. Limitation of practice hours, ankle sprains, and foot/ankle fractures and sprains were comparable across the groups. The male dancers (N = 25) had significantly fewer calluses than did the women, but had equal pain scores and number of injuries. There were no significant differences among the males in total callus counts, pain scores, limitation of practice hours, or injuries between groups based on toe length, age, or rank. We conclude that there is no significantly more ideal pattern of toe lengths for male ballet dancers, but females with shorter second toes have fewer calluses and less daily foot pain. Those with a longer second toe had a higher incidence of hallux rigidus and correspondingly increased pain scores.

Adult↗

A new surgical method for treating lateral ray polydactyly with brachydactyly of the foot: lengthening the reconstructed fifth toe.

Lateral ray polydactyly is the most common anomaly of the foot. However, when both the fifth and sixth toes are markedly shorter than a normal toe, reconstruction of a normal-length fifth toe has not been performed, because the toe rarely serves a functional purpose. The authors devised a new method whereby the fifth toe could be lengthened using the excess toe as a composite flap. Fifteen patients (15 toes) underwent our procedures and were evaluated in this study. The stepladder island flap is used. The decision as to which toe to use as the flap was made preoperatively based on nail size, and its morphologic and radiographic conditions. Stepladder incision lines were designed on the dorsal and plantar sides of the duplication. Care was taken to preserve the neurovascular bundle with the subcutaneous pedicle and osteotomies were made at the middle phalanx of the flap and the distal or middle phalanx of the recipient in almost all cases. The elevated composite toe flap was advanced and the bone was fixed rigidly for 1-2 months after the operation. During our follow-up periods, the reconstructed toes grew normally, and good aesthetic results had been achieved apart from the bulkiness of the reconstructed toes. There was no deficiency in circulation or function for walking, running, or shoe-fitting in this series.

Child↗

Skin perfusion pressure of the foot is a good substitute for toe pressure in the assessment of limb ischemia.

PURPOSE: Noninvasive measurements of limb systolic pressures are used routinely in the assessment of the severity of peripheral arterial disease, including the evaluation for critical limb ischemia. However, ankle pressures cannot be measured reliably in patients with medial calcification, which is especially common among patients with diabetes. Skin lesions on the toes or previous digital amputations may preclude the measurement of toe pressures. Measurements of skin perfusion pressure (SPP) are not subject to such limitations and were shown to be useful in the assessment of the severity of peripheral arterial disease. Because toe pressure is often used in the evaluation of severity of arterial disease and in the assessment for critical ischemia, we undertook to study whether there is a sufficient correlation between toe pressure and foot SPP that would allow the use of SPP measurements when toe pressures cannot be measured. METHODS: Measurements were carried out in 85 limbs of 71 patients referred to the vascular laboratory for evaluation for peripheral arterial disease. Diabetes mellitus was present in 43 patients. Each patient had foot SPP and toe pressure measurements. Toe pressures measured with photoplethysmography were correlated with foot SPP measured with laser Doppler scanning. RESULTS: There was a strong linear correlation between SPP and toe pressure (r = 0.87; P <.01). Also, significant correlation was found in both the patients with diabetes and the patients without diabetes (r = 0.85 and 0.93, respectively; P <.01 in both cases). CONCLUSIONS: We concluded that SPP measured in the foot correlates well with toe pressure and can be substituted for toe pressure measurement in patients in whom toe pressures cannot be measured.

Adult↗

Toe flexor forces in dancers and non-dancers.

Toe flexor force (hallux and second toe) was determined in the right and left feet of 24 dancers and 29 non-dancers (sitting and standing positions) using a commercially-available pressure sensor connected to a voltmeter. For the hallux and second toe combined (all trials combined), average toe flexor force was slightly greater for dancers than non-dancers (dancers, 7 +/- 4 N; non-dancers, 6 +/- 4 N; P<0.049). For dancers and non-dancers combined (all trials), the average toe flexor force of the hallux was more than twice that of the second toe (hallux, 9 +/- 4 N; 2nd toe, 4 +/- 1 N; P<0.0001); average toe flexor force was slightly greater in standing than sitting positions (standing, 7 +/- 4 N; sitting, 6 +/- 3 N; P<0.0001); and the average toe flexor force was slightly greater for the right than left foot (right, 7 +/- 4 N; left, 6 +/- 4 N; P<0.012). The average toe flexor force was greatest for the first repetition and slightly decreased for the second and third repetitions (first repetition, 7 +/- 4 N; second and third repetitions each, 6 +/- 4 N; P<0.0013). Toe flexor force measurement may potentially be applicable to clinical practice as a guide to rehabilitation after injury or as a screening parameter for readiness to advance dance or other athletic training, performance, or competition.

Adult↗

The development of foot deformities and ulcers after great toe amputation in diabetes.

OBJECTIVE: Our aim was to compare the prevalence and severity of foot deformities and the development of ulcerations in patients after a great toe amputations. RESEARCH DESIGN AND METHODS: We evaluated the presence of deformities of the toes and metatarsophalangeal joints (MTPJs) in patients with a great toe amputation who had an intact unamputated contralateral foot. The contralateral foot served as the patient's own control. We used a binomial test for paired data to compare the presence of deformity and ulcer formation and Fisher's exact test to compare joint flexibility in toes and MTPJs with foot deformities. RESULTS: There were more deformities of the second (P = 0.012) and third (P = 0.002) toes and lesser MTPJs (P < 0.05) and more rigid deformities of the second (P = 0.002) and third (P = 0.016) toes and second MTPJs (P = 0.035) in feet with great toe amputations. New ulcers were more common in feet that had an amputation (P = 0.002). CONCLUSIONS: We concluded that amputation of the great toe contributes to the development of deformities of the second and third toes and lesser MTPJs and new ulcer formation in patients with diabetes. When deformities were present, the second and third toes and second MTPJ were more severe in feet with a great toe amputation.

Amputation, Surgical↗